Large Automatic Film Coater

Price range: $11,328.00 through $62,031.00
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Applications:

Large Automatic Film Coater with 12"W x 24"L Vacuum Chuck and 250 mm Adjustable Doctor Blade - MSK-AFA-II-VC

Platinum Foil, Purity 99.95%, Thickness: 0.5mm, 10×10 cm

Price range: $10,838.00 through $52,800.00
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Applications

  • Dental veneers
  • Fabrication of electrochemically stable microelectrode arrays
  • A counter electrode for the fabrication of supercapacitors
  • An enzyme electrode probe for potential usage in biosensors
  • Arc-casting, hot-pressing, machining, vacuum-arc melting, casting, custom-alloying, extruding, rolling, cutting, vacuum-sealing, and bonding.
  • Electronics industry for electrical contacts which might be subject to high temperatures
  • Make weights and measure standards

Tantalum Carbide (TaC) Powder (99%)

Price range: $1,304.00 through $37,198.00
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Product Tantalum Carbide (TaC) Powder (99%)
CAS No. 12070-06-3
Appearance Gray to black crystalline
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 1–10µm (Size Can be customized),  Ask for other available size range.
Ingredient TaC
Molecular Weight 192.96 g/mol
Melting Point 3880 °C
Boiling Point N/A
Density 3.5–5.0 g/cm³
Product Codes NCZ-551I
 

Platinum Foil, Purity 99.95%, Thickness: 0.5mm, 10×10 cm

Price range: $6,485.00 through $34,125.00
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Applications

  • Dental veneers
  • Fabrication of electrochemically stable microelectrode arrays
  • A counter electrode for the fabrication of supercapacitors
  • An enzyme electrode probe for potential usage in biosensors
  • Arc-casting, hot-pressing, machining, vacuum-arc melting, casting, custom-alloying, extruding, rolling, cutting, vacuum-sealing, and bonding.
  • Electronics industry for electrical contacts which might be subject to high temperatures
  • Make weights and measure standards

Three Roll Mill Lab Model

$16,248.75
1 piece/16,248.75 € Please contact us for quotes on larger quantities !!! Three Roll Mill Lab Model Three roll mills can serve

High Quality Natural Agate Mortar and Pestle, Size: 4″

Price range: $930.00 through $14,000.00
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Applications:

4" High Quality Natural Agate Mortar and Pestle

Platinum (Pt) Sputtering Target

Price range: $0.00 through $12,410.00
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Product 

Platinum (Pt) Sputtering Target

CAS No.

 7440-05-3

Appearance

Powder

Purity

≥99%,  ≥99.9%,  ≥95%

(Other purities are also available)

APS

 NA (Size Can be customized), Ask for other available size ranges.

Ingredient

N/A

Molecular Weight

195.08 g/mol

Melting Point

1,768.3 °C

Boiling Point

3,825 °C

Density

21.45 g/cm³

Product Codes

NCZ-1301K

Platinum Foil, Purity 99.95%, Thickness: 0.5mm, 5×5 cm

Price range: $2,490.00 through $12,175.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications

  • Dental veneers
  • Fabrication of electrochemically stable microelectrode arrays
  • A counter electrode for the fabrication of supercapacitors
  • An enzyme electrode probe for potential usage in biosensors
  • Arc-casting, hot-pressing, machining, vacuum-arc melting, casting, custom-alloying, extruding, rolling, cutting, vacuum-sealing, and bonding.
  • Electronics industry for electrical contacts which might be subject to high temperatures
  • Make weights and measure standards

Thulium (Tm) Micron Powder, Purity: 99.5 %, Size: 325 mesh

Price range: $180.00 through $11,375.00
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Applications:

Thulium is the least abundant element of the rare earth metals. It is moderately stable in air but should be avoided moisture. It emits blue upon excitation. Thulium is used in the manufacturing of optoelectronics. It is used in the manufacturing of flat panel screens. It is also used to create laser lights. 

Platinum Foil, Purity 99.95%, Thickness: 0.5mm, 5×5 cm

Price range: $2,016.00 through $9,759.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications

  • Dental veneers
  • Fabrication of electrochemically stable microelectrode arrays
  • A counter electrode for the fabrication of supercapacitors
  • An enzyme electrode probe for potential usage in biosensors
  • Arc-casting, hot-pressing, machining, vacuum-arc melting, casting, custom-alloying, extruding, rolling, cutting, vacuum-sealing, and bonding.
  • Electronics industry for electrical contacts which might be subject to high temperatures
  • Make weights and measure standards

Potassium Iodide (KI) 99.0% High Purity Powder

Price range: $240.00 through $9,365.00
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Product Potassium Iodide (KI) 99.0% High Purity Powder
CAS No. 7681-11-0
Appearance White or colorless, odorless
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 50–150µm (Size Can be customized),  Ask for other available size range.
Ingredient KI
Molecular Weight 166.00 g/mol
Melting Point 681 °C
Boiling Point N/A
Density 3.13 g/cm³
Product Codes NCZ-497I

Hydraulic Crimping Machine for All Coin Cells

Price range: $2,425.00 through $9,225.00
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Application:

Hydraulic Crimping Machine for All Coin Cells: CR2016, CR2025, CR2032 & Optional CR1220, CR2325 or CR2450 etc

Silver Nanowires Suspension in Ethanol, Purity: > 99 wt%, Diameter : 50 nm

Price range: $490.00 through $8,590.00
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Applications:

Recently, the usage areas of silver nanowires are  listed as;

Air and water purification Antimicrobial applications (e.g., bandages, coatings for medical devices, antibacterial fabrics) Catalysts Compact logic gates E-paper EMI shielding films and paints Fillers for high performance conductive adhesives Flexible antennas Flexible displays Light-emitting diodes (LEDs), OLED devices, OLED lighting Liquid crystal displays Medical imaging Optical limiters Sensors and detectors Solar cells, solar panels, thin film photovoltaics Surface enhanced spectroscopy (SERS) Touch screens for smartphones, tablets, and wearable electronics Waveguides

Shape Memory Polymer NGP2510, Potting Type

Price range: $2,482.00 through $8,588.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGP3510, Potting Type

Price range: $2,482.00 through $8,588.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGP5510, Potting Type

Price range: $2,482.00 through $8,588.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGP4510, Potting Type

Price range: $2,482.00 through $8,588.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Thulium (Tm) Micron Powder Purity: 99.5 %, Size: 325 mesh

Price range: $129.00 through $8,207.00
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1 gram/115 € 5 grams/480 € 25 grams/1985 € 100 grams/7280 € 

Li-Ion Battery Separator Film, Length: 800 m, Width: 85 mm, Thickness: 25 μm

Price range: $557.00 through $8,025.00
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Applications:

It can be used as li-ion battery separator in battery R&D. The need for electric energy storage systems are in increasing demand. Lithium-ion batteries represent the best option for many applications such as hybrid and electric vehicles which require high energy density, cycle durability and charge/discharge efficiency. Li-ion batteries have been used in many electronic devices since their production in 1990. The components of the cell are primarily the positive and negative electrodes and the electrolyte. The positive electrode is a metal oxide, negative electrode is made of carbon and the electrolyte is a lithium salt in organic solvent. The improvement in the performance of the battery can be done by the introduction of new materials with superb properties. Graphene which is one of the best materials discovered by humans has opened new possibilities in the field of lithium ion battery materials due to its light weight, high electrical conductivity, superior mechanical flexibility, and chemical stability. Graphene can be used in both positive and negative electrodes of the battery. In the positive electrode, the cathode, it is used as a lithium metal oxide-graphene composites which enhance the electrochemical properties of the battery by increasing the diffusion kinetics of the lithium ion and improve the stability across a wide voltage range in crystalline oxide-graphene composites. In the negative electrode, the anode, the addition of graphene to anode materials has led to superior electrical conductivity, high surface area (2620 m2/g), high surface-to-volume ratio, and ultra-thin thickness. These excellent properties can shorten the diffusion distance of ions, structural flexibility, thermal and chemical stability which guarantee its durability in harsh environments1.

Shape Memory Polymer NGM3520, Ether Type

Price range: $603.75 through $7,633.75
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Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

3N 99.9% Purity, Iron (Fe) Powder

Price range: $308.00 through $7,608.00
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Product 3N 99.9% Purity, Iron (Fe) Powder
CAS No. 7439-89-6
Appearance Gray to dark gray
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 1-2um (Size Can be customized),  Ask for other available size range.
Ingredient Fe
Molecular Weight 55.845 g/mol
Melting Point 1538 °C
Boiling Point 2862 °C
Density 7.87 g/cm³
Product Codes NCZ-161I
 

Silicon Nanowires, Dia: 100-200nm, Length: >10um, Purity: 99%

Price range: $1,935.00 through $7,470.00
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1 gram/1935 € 5 grams/7470 € Product Information Product Name Silicon Nanowires Diameter 100-200nm Length >10um Purity 99% Product No

Silicon Nanowires, Dia: 100-200nm, Length: >10um, Purity: 99%

Price range: $1,935.00 through $7,470.00
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1 gram/1935 € 5 grams/7470 € Product Information Product Name Silicon Nanowires Diameter 100-200nm Length >10um Purity 99% Product No

Holmium (III) Oxide (Ho2O3) 99.9999% 6N Powder

Price range: $788.00 through $7,244.00
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Product Holmium (III) Oxide (Ho2O3) 99.9999% 6N Powder
CAS No. 12055-62-8
Appearance Very pale yellow to off-white
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 100nm (Size Can be customized),  Ask for other available size range.
Ingredient Ho2O3
Molecular Weight 377.86 g/mol
Melting Point N/A
Boiling Point N/A
Density 8.41 g/cm³
Product Codes NCZ-418I
 

Indium Phosphide (InP) Wafers, Size: 4”, Thickness: 625± 25 μm, Orientation: 100, Single Side Polished, EPI-Ready

Price range: $1,536.00 through $7,176.00
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Indium Phosphide (InP) Wafers Size: 4”, Thickness: 625± 25 μm, Orientation: 100 Technical Properties: Size (inch)  4” Thickness (μm)  625±

Indium Phosphide (InP) Wafers, Size: 4”, Thickness: 625± 25 μm, Orientation: 111, Single Side Polished, EPI-Ready

Price range: $1,536.00 through $7,176.00
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Indium Phosphide (InP) Wafers Size: 4”, Thickness: 625± 25 μm, Orientation: 111 Technical Properties: Size (inch)  4” Thickness (μm)  625±

Gallium Antimonide (GaSb) Wafers, Size: 4”, Thickness: 1000± 25 μm, Orientation: 100, EPI-Ready

Price range: $1,699.00 through $7,041.00
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Gallium Antimonide (GaSb) Wafers Size: 4”, Thickness: 1000± 25 μm, Orientation: 111 Technical Properties: Quality  EPI-Ready Size (inch)  4” Thickness

Gallium Antimonide (GaSb) Wafers, Size: 4”, Thickness: 1000± 25 μm, Orientation: 111, EPI-Ready

Price range: $1,699.00 through $7,041.00
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Gallium Antimonide (GaSb) Wafers Size: 4”, Thickness: 1000± 25 μm, Orientation: 111 Technical Properties: Quality  EPI-Ready Size (inch)  4” Thickness

Palladium (Pd) Sputtering Target

Price range: $0.00 through $7,030.00
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Product 

Palladium (Pd) Sputtering Target

CAS No.

 7440-05-3

Appearance

Powder

Purity

≥99%,  ≥99.9%,  ≥95%

(Other purities are also available)

APS

 NA (Size Can be customized), Ask for other available size ranges.

Ingredient

N/A

Molecular Weight

106.42 g/mol

Melting Point

 1,554.9 °C

Boiling Point

2,963 °C

Density

12.02 g/cm³

Product Codes

NCZ-1300K

Borophene Ethanol Dispersion 1 mg/mL

Price range: $595.00 through $6,870.00
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DESCRIPTION Borophene is known as atomically thin, two-dimensional sheets of boron. Borophene has remarkable properties like, high electrical conductivity, flexibility

Glassy Carbon Foam for Battery and Supercapacitor Research, Purity: 95+%, Size: 100 mm x100 mm x 10 mm

Price range: $1,647.00 through $6,844.00
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APPLICATIONS
Because of its high porosity and conductivity, porous carbon foam is widely used in many fields.
  • High temperature heat capacity material
  • Substrate for catalysis, battery and supercapacitor research
Carbon foam also can be used for gas / chemical absorption, water treatment and thermal management.

Indium Phosphide (InP) Wafers, Size: 4”, Thickness: 625± 25 μm, Orientation: 100, Single Side Polished, EPI-Ready

Price range: $1,420.00 through $6,638.00
Select options This product has multiple variants. The options may be chosen on the product page
1 piece/1280  5 pieces/5980                            Please contact us for quotes on larger quantities !!!

Indium Phosphide (InP) Wafers

Size: 4'', Thickness: 625± 25 μm, Orientation: 100

Technical Properties:

Size (inch)  4”
Thickness (μm)  625± 25
Dopant  Sulphur (N type)
Polished  Single Side
Mobility (1.5-3.5)E3
Orientation  100
EPD  ≤5000
Growth method  VGF
OF Length  32.5±2
IF Length   18±1

Fields of Application for Indium Phosphide (InP)

Indium phosphide (InP) is a binary semiconductor composed of indium and phosphorus. Indium phosphide (InP) has started to be developed at the beginning of 1980s. Indium phosphide (InP) which used in a high power and high frequency electronics, has superior electron velocity. Indium phosphide (InP) has a direct bandgap by contrast with many semiconductors. This makes indium phosphide (InP) useful for optoelectronics and laser diodes. Indium phosphide (InP) is a crucial material for production of laser signals, determination and conversion of those signals back to electronic form. Indium Phopshide (InP) is a binary semiconductor composed of Indium (In) and Phosphorus (P), belonging to a group of materials commonly known as III-V Semiconductors. InP is used in high power and high-frequency electronics and boasts a superior electron velocity in comparison to more common semiconductors such as Silicon and Gallium Arsenide. Indium Phosphide has a face-centred cubic crystal structure almost identical to that of GaAs and most of the lll-V semiconductors. InP wafers must be prepared prior to device fabrication, all III-V wafers must be lapped to remove surface damage that occurs during the slicing process. Wafers are then Chemically Mechanically Polished/Plaranrized (CMP) for the final material removal stage allowing for the attainment of super-flat mirror like surfaces with a remaining roughness on an atomic scale. The wafer is then ready for device fabrication.
  • Indium phosphide (InP) is used in modulators.
  • Indium phosphide (InP) is used in photo-detectors.
  • Indium phosphide (InP) is used in LEDs.
  • Indium phosphide (InP) is used in fiber communications components.
  • Indium phosphide (InP) is used in semiconductor optical amplifiers.

Indium Phosphide (InP) Wafers, Size: 4”, Thickness: 625± 25 μm, Orientation: 111, Single Side Polished, EPI-Ready

Price range: $1,420.00 through $6,638.00
Select options This product has multiple variants. The options may be chosen on the product page
1 piece/1280  5 pieces/5980                            Please contact us for quotes on larger quantities !!!

Indium Phosphide (InP) Wafers

Size: 4'', Thickness: 625± 25 μm, Orientation: 111

Technical Properties:

Size (inch)  4”
Thickness (μm)  625± 25
Dopant  Sulphur (N type)
Polished  Single Side
Mobility (1.5-3.5)E3
Orientation  111
EPD  ≤5000
Growth method  VGF
OF Length  32.5±2
IF Length   18±1

Fields of Application for Indium Phosphide (InP)

Indium phosphide (InP) is a binary semiconductor composed of indium and phosphorus. Indium phosphide (InP) has started to be developed at the beginning of 1980s. Indium phosphide (InP) which used in a high power and high frequency electronics, has superior electron velocity. Indium phosphide (InP) has a direct bandgap by contrast with many semiconductors. This makes indium phosphide (InP) useful for optoelectronics and laser diodes. Indium phosphide (InP) is a crucial material for production of laser signals, determination and conversion of those signals back to electronic form. Indium Phopshide (InP) is a binary semiconductor composed of Indium (In) and Phosphorus (P), belonging to a group of materials commonly known as III-V Semiconductors. InP is used in high power and high-frequency electronics and boasts a superior electron velocity in comparison to more common semiconductors such as Silicon and Gallium Arsenide. Indium Phosphide has a face-centred cubic crystal structure almost identical to that of GaAs and most of the lll-V semiconductors. InP wafers must be prepared prior to device fabrication, all III-V wafers must be lapped to remove surface damage that occurs during the slicing process. Wafers are then Chemically Mechanically Polished/Plaranrized (CMP) for the final material removal stage allowing for the attainment of super-flat mirror like surfaces with a remaining roughness on an atomic scale. The wafer is then ready for device fabrication.
  • Indium phosphide (InP) is used in modulators.
  • Indium phosphide (InP) is used in photo-detectors.
  • Indium phosphide (InP) is used in LEDs.
  • Indium phosphide (InP) is used in fiber communications components.
  • Indium phosphide (InP) is used in semiconductor optical amplifiers.

Germanium (Ge) Micron Powder, Purity: 99.99 %, Size: 100 mesh

Price range: $315.00 through $6,290.00
Select options This product has multiple variants. The options may be chosen on the product page
25 grams/280 € 100 grams/880 € 500 grams/3550 € 1000 grams/5580 €
Please contact us for quotes on larger quantities !!!

Germanium (Ge) Micron Powder

Purity: 99.99 %, Size: 100 mesh

Aluminum Laminated Film, Width: 400 mm, Length: 7.5 m

Price range: $295.00 through $6,238.00
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Aluminum Laminated Film, Width: 400 mm, Length: 7.5 m

Price range: $295.00 through $6,238.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Aluminum Laminated Film for Pouch Cell Case, 400 mm W x 7.5 m, L - EQ-alf-400-7.5M

Shape Memory Polymer NGS2520, Solution Type

Price range: $432.00 through $6,232.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGM2520, Ether Type

Price range: $495.00 through $6,175.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Diamond (C) Nanopowder/Nanoparticles, Purity: >98.3%, Size: 3.5-11 nm

Price range: $107.00 through $6,102.00
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Diamond (C) Nanopowder/Nanoparticles

Purity: >98.3%, Size: 3.5-11 nm

Technical Properties:

Bulk Density (g/cm3) 0,16-0,20
True Density (g/cm3) 3,2
Color gray
Shape spherical
Ash Content (%) 1,12
Tdecomposition (oC) 615
Toxidation (oC) 530
Average Particle Size (nm) 3.5-11
Specific Surface Area (m2/g) 275,2
Resistivity (Ω.cm) 0,2-1,8
Magnetic Susceptibility (m3/kg) 1,0x10-8
Elemental Analysis C H N O Fe Ca Others
98,5 (98,3 % diamond) 0,15 0,02 0,83 0,03 0,005 ≤0.001

Shape Memory Polymer NGM4520, Ether Type

Price range: $475.00 through $6,094.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGM5520, Ether Type

Price range: $457.00 through $6,057.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGM6520, Ether Type

Price range: $450.00 through $6,032.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGM7520, Ether Type

Price range: $432.00 through $5,988.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Gold Nanostars, Size: 40-45 nm

Price range: $438.00 through $5,982.00
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Gold Nanostars, 40-45 nm Gold Nanostars are gold nanoparticles having multiple sharp and pointed branches in a genuine star-shaped. This unique

Shape Memory Polymer NGM9020, Ether Type

Price range: $425.00 through $5,963.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGS3520, Solution Type

$5,800.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGS4520, Solution Type

$5,800.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Shape Memory Polymer NGS5520, Solution Type

$5,800.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

Shape Memory Polymer (SMP) has myriad of advanced applications in different fields from daily life uses like textile to biomedicals. These applications include smart catheter, drug-delivery systems, biosensors, auto-repairing automobile parts, smart textile, self-healing materials, smart suture, artificial organs like muscles, and so on.

Selenium (Se) Nanopowder/Nanoparticles, Purity: 99.5+%, Size: < 100 nm

Price range: $1,577.69 through $5,770.00
Select options This product has multiple variants. The options may be chosen on the product page
Description 25 grams/1390 €                        100 grams/4380 € Please contact us for

Indium Arsenide (InAs) Wafers, Size: 3”, Thickness: 625± 25 μm, Orientation: 100, EPI-Ready

Price range: $1,209.00 through $5,702.00
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Indium Arsenide (InAs) Wafers Size: 3”, Thickness: 625± 25 μm , Orientation: 100 Technical Properties: Quality  EPI-Ready Size (inch)  3” Thickness (μm)

Gold Nanostars, Size: 40-45 nm

Price range: $414.00 through $5,660.00
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Gold Nanostars, 40-45 nm   Gold Nanostars are gold nanoparticles having multiple sharp and pointed branches in a genuine star-shaped. This unique shape enables them to have several thermoplasmonic and electromagnetic properties. Because gold nanoparticles have easy surface functionalization with biorecognition molecules, they are very suitable to use in biosensing studies and applications. Also, because gold nanoparticles are ultrafine in size, they are used diversely in the medical field in areas such as immunosensing, biolabels and drug delivery. These properties are valuable considering their use in disease diagnosis, treatment and prevention. Its application areas include usage in COVID-19 researches, biosensors, medical diagnostics, plasmon-enhanced or tip-enhanced spectroscopy, cancer therapies, and other biomedical and optical applications.

Silicon on Insulator (SOI) Wafers, Size: 8”, Device Thickness: 600 nm, P type

Price range: $1,210.00 through $5,633.00
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Silicon on Insulator (SOI) Wafers Size: 8”, Device Thickness: 600 nm, P type Technical Properties: Size (inch)  8” Thickness (μm)

Polyhydroxylated Fullerene (Fullerenols)/ C60, (-OH) Functionalized, Dry powder

Price range: $1,225.00 through $5,600.00
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Applications:

1. Pharmaceutical: Diagnostic reagents, super drugs, cosmetics, nuclear magnetic resonance (NMR) with the developer. DNA affinity, anti-HIV drugs, anti-cancer drugs, chemotherapy drugs, cosmetics additives and scientific research. 2. Energy: Solar battery, fuel cell, secondary battery. 3. Industry: Wear resistant material, flame retardant materials, lubricants, polymer additives, high-performance membrane, catalyst, artificial diamond, hard alloy, electric viscous fluid, ink filters, high-performance coatings, fire retardant coatings, manufacturing bioactive materials , memory materials, embedded molecular and other characteristics, composite materials etc. 4. Information industry: Semiconductor record medium, magnetic materials, printing ink, toner, ink, paper special purposes. 5. Electronic parts: Superconducting semiconductor, diodes, transistors, inductor.  , 6. Optical materials, electronic camera, fluorescence display tube, nonlinear optical materials. 7. Environment: Gas adsorption, gas storage.

Polyhydroxylated Fullerene (Fullerenols)/ C60, (-OH) Functionalized, Dispersed in Water, 4000 ppm Dry powder

Price range: $525.00 through $5,600.00
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Applications:

1. Pharmaceutical: Diagnostic reagents, super drugs, cosmetics, nuclear magnetic resonance (NMR) with the developer. DNA affinity, anti-HIV drugs, anti-cancer drugs, chemotherapy drugs, cosmetics additives and scientific research. 2. Energy: Solar battery, fuel cell, secondary battery. 3. Industry: Wear resistant material, flame retardant materials, lubricants, polymer additives, high-performance membrane, catalyst, artificial diamond, hard alloy, electric viscous fluid, ink filters, high-performance coatings, fire retardant coatings, manufacturing bioactive materials , memory materials, embedded molecular and other characteristics, composite materials etc. 4. Information industry: Semiconductor record medium, magnetic materials, printing ink, toner, ink, paper special purposes. 5. Electronic parts: Superconducting semiconductor, diodes, transistors, inductor. 6. Optical materials, electronic camera, fluorescence display tube, nonlinear optical materials. 7. Environment: Gas adsorption, gas storage.

Magnesium (Mg) Micron Powder, Purity: 99.9%, Size: 0-100 µm

Price range: $332.00 through $5,569.00
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  1 kg/295 € 5 kg/1280 € 25 kg/4940 €                          Please contact us for quotes on larger quantities !!!

Magnesium (Mg) Micron Powder

Purity: 99.9%, Size: 0-100 µm

Technical Properties:

CAS Number 7439-95-4
Molecular Weight (g) 24.31
Average Particle Size (µm) 0-100
Apparent Density (g/cm3) 0.55 – 0.70
Appearance gray
Tmelting (oC) 650
Tboiling (oC) 1090
Electrical Resistivity (@ 20 °C) 4.45 microhm-cm
Thermal Conductivity (@ 298.2 K) 1.56 W/cm/K

Applications:

Magnesium is one of the lightest metals. This property gives Mg a wide range of applications from aircraft and automobile parts to material handling equipments, pyrotechnic, metallurgy, welding.  

Sodium Beta Alumina Solid Electrolyte Powder, 99.9% Purity, 1um Size

Price range: $645.00 through $5,485.00
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Product Sodium Beta Alumina Solid Electrolyte Powder, 99.9% Purity, 1um Size
CAS No. 1302-74-5
Appearance White or off-white fine
Purity ≥99%,  ≥99.9%,  ≥95%(Other purities are also available)
APS 1um (Size Can be customized),  Ask for other available size range.
Ingredient NaAl₁₁O₁₇
Molecular Weight 1,950 °C
Melting Point N/A
Boiling Point N/A
Density 3.26 g/cm³
Product Codes NCZ-527I

Impending Self-Help Transfer Nickel Graphene Foam, Thickness: 1±0.1 mm, Size: 5×10 cm

Price range: $1,373.00 through $5,472.00
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1 piece/ 1373 € 5 pieces/ 5472 €  Contact us for tailored quotes on larger quantities & experience exceptional solutions from our experts.

Cubic Boron Nitride Nanopowder, Cubic, Size: <200 nm Purity: 99.9%

Price range: $54.00 through $5,434.00
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gram:48 € 5 gram:138 € 25 gram:395€ 100 gram:785 € 500 gram:2975€ 1000 gram:4790€
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Cubic Boron Nitride (BN) Nanopowder Purity: 99.9% Size: 200 nm Cubic boron nitride has a crystal structure analogous to that of diamond. Consistent with diamond being less stable than graphite, the cubic form is less stable than the hexagonal form, but the conversion rate between the two is negligible at room temperature, as it is for diamond. The cubic form has the sphalerite crystal structure, the same as that of diamond, and is also called β-BN or c-BN.

PREPARATION OF CUBIC BORON NITRIDE

Synthesis of c-BN uses same methods as that of diamond: Cubic boron nitride is produced by treating hexagonal boron nitride at high pressure and temperature, much as synthetic diamond is produced from graphite. Direct conversion of hexagonal boron nitride to the cubic form has been observed at pressures between 5 and 18 GPa and temperatures between 1730 and 3230 °C, that is similar parameters as for direct graphite-diamond conversion.  The addition of a small amount of boron oxide can lower the required pressure to 4–7 GPa and temperature to 1500 °C. As in diamond synthesis, to further reduce the conversion pressures and temperatures, a catalyst is added, such as lithium, potassium, or magnesium, their nitrides, their fluoronitrides, water with ammonium compounds, or hydrazine.Other industrial synthesis methods, again borrowed from diamond growth, use crystal growth in a temperature gradient, or explosive shock wave. The shock wave method is used to produce material called heterodiamond, a superhard compound of boron, carbon, and nitrogen. Low-pressure deposition of thin films of cubic boron nitride is possible. As in diamond growth, the major problem is to suppress the growth of hexagonal phases (h-BN or graphite, respectively). Whereas in diamond growth this is achieved by adding hydrogen gas, boron trifluoride is used for c-BN. Ion beam deposition, plasma-enhanced chemical vapor deposition, pulsed laser deposition, reactive sputtering, and other physical vapor deposition methods are used as well. Applications of CBN Cubic boron nitride (CBN or c-BN) is widely used as an abrasive. Its usefulness arises from its insolubility in iron, nickel, and related alloys at high temperatures, whereas diamond is soluble in these metals. Polycrystalline c-BN (PCBN) abrasives are therefore used for machining steel, whereas diamond abrasives are preferred for aluminum alloys, ceramics, and stone. When in contact with oxygen at high temperatures, BN forms a passivation layer of boron oxide. Boron nitride binds well with metals, due to formation of interlayers of metal borides or nitrides. Materials with cubic boron nitride crystals are often used in the tool bits of cutting tools. For grinding applications, softer binders, e.g. resin, porous ceramics, and soft metals, are used. Ceramic binders can be used as well. Commercial products are known under names "Borazon" (by Diamond Innovations), and "Elbor" or "Cubonite" (by Russian vendors). Contrary to diamond, large c-BN pellets can be produced in a simple process (called sintering) of annealing c-BN powders in nitrogen flow at temperatures slightly below the BN decomposition temperature. This ability of c-BN and h-BN powders to fuse allows cheap production of large BN parts. Similar to diamond, the combination in c-BN of highest thermal conductivity and electrical resistivity is ideal for heat spreaders. As cubic boron nitride consists of light atoms and is very robust chemically and mechanically, it is one of the popular materials for X-ray membranes: low mass results in small X-ray absorption, and good mechanical properties allow usage of thin membranes, thus further reducing the absorption.

Gallium Antimonide (GaSb) Wafers, Size: 4”, Thickness: 1000± 25 μm, Orientation: 100, EPI-Ready

Price range: $1,301.00 through $5,392.00
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1 piece/1180 € 5 pieces/4890 €                           Please contact us for quotes on larger quantities !!!

Gallium Antimonide (GaSb) Wafers

Size: 4”, Thickness: 1000± 25 μm, Orientation: 111

Technical Properties:

Quality  EPI-Ready
Size (inch)  4”
Thickness (μm)  1000± 25
Polished  Single Side
Dopant  Tellurium ( N type )
Orientation  100
Mobility  2000-3500
EPD  ≤2000
Growth method  VGF
OF Length  32.5±2
IF Length   18±1

Fields of Application for Gallium Antimonide (GaSb)

The intermetallic compound of gallium antimonide (GaSb) was first prepared in 1926 by Victor Goldschmidt. Gallium antimonide (GaSb) is a semiconductor made of gallium and antimony of the group III-V compounds. Gallium antimonide (GaSb) is supplied in polished wafer form. Gallium antimonide (GaSb) wafers are produced from polycrystalline ingots with using Czochralski method to obtain a single crystal with perfect purity. Supplied in polished wafer form, gallium antimonide has a very high accuracy of orientation. Thickness and orientation of these wafers can be modified with additives. Czochralski method is used to provide the growh of pure gallium and antimonide elements. The natural low-defect structure of GaSb makes it a perfect material for epitaxial growth. They are supplied in polished 1 side or 2 sides and cut forms.
  • Gallium antimonide (GaSb) is used for infrared detectors.
  • Gallium antimonide (GaSb) is used for infrared LEDs.
  • Gallium antimonide (GaSb) is used for transistors.
  • Gallium antimonide (GaSb) is used for lasers.
  • Gallium antimonide (GaSb) is used for thermophotovoltaic systems.

Gallium Antimonide (GaSb) Wafers, Size: 4”, Thickness: 1000± 25 μm, Orientation: 111, EPI-Ready (No reviews yet)

Price range: $1,301.00 through $5,392.00
Select options This product has multiple variants. The options may be chosen on the product page
1 piece/1180 € 5 pieces/4890 €                         Please contact us for quotes on larger quantities !!!

Gallium Antimonide (GaSb) Wafers

Size: 4”, Thickness: 1000± 25 μm, Orientation: 111

Technical Properties:

Quality  EPI-Ready
Size (inch)  4”
Thickness (μm)  1000± 25
Polished  Single Side
Dopant  Tellurium ( N type )
Orientation  111
Mobility  2000-3500
EPD  ≤2000
Growth method  VGF
OF Length  32.5±2
IF Length   18±1

Fields of Application for Gallium Antimonide (GaSb)

The intermetallic compound of gallium antimonide (GaSb) was first prepared in 1926 by Victor Goldschmidt. Gallium antimonide (GaSb) is a semiconductor made of gallium and antimony of the group III-V compounds. Gallium antimonide (GaSb) is supplied in polished wafer form. Gallium antimonide (GaSb) wafers are produced from polycrystalline ingots with using Czochralski method to obtain a single crystal with perfect purity. Supplied in polished wafer form, gallium antimonide has a very high accuracy of orientation. Thickness and orientation of these wafers can be modified with additives. Czochralski method is used to provide the growh of pure gallium and antimonide elements. The natural low-defect structure of GaSb makes it a perfect material for epitaxial growth. They are supplied in polished 1 side or 2 sides and cut forms.
  • Gallium antimonide (GaSb) is used for infrared detectors.
  • Gallium antimonide (GaSb) is used for infrared LEDs.
  • Gallium antimonide (GaSb) is used for transistors.
  • Gallium antimonide (GaSb) is used for lasers.
  • Gallium antimonide (GaSb) is used for thermophotovoltaic systems.