Tristrontium silicate(Sr3SiO5) (203677)

$482.00
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Product 

Tristrontium silicate(Sr3SiO5) (203677)

CAS No.

12712‑63‑9

Appearance

Powder

Purity

≥99%,  ≥99.9%,  ≥95%

(Other purities are also available)

APS

  <30um (Size Can be customized), Ask for other available size ranges.

Ingredient

N/A

Molecular Weight

N/A

Melting Point

N/A

Boiling Point

N/A

Density

~4.74 g/cm³ (as tristrontium silicate is termed Sr₃[SiO₄]O

Product Codes

NCZ-2608K

Praseodymium (Pr) Sputtering Targets, Purity: 99.9%, Size: 3”, Thickness: 0.250”

$201.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered.

The target material's composition may be ascertained and even very low concentrations of contaminants can be found with the aid of the sputtering target.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

Niobium Oxide (Nb2O5) Sputtering Targets, Purity: 99.5%, Size: 4”, Thickness: 0.125”

$442.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered.

The target material's composition may be ascertained and even very low concentrations of contaminants can be found with the aid of the sputtering target.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

Lead Zirconium Titanate/PZT (O5PbTiZr) Sputtering Targets, Purity: 99.9%, Size: 1”, Thickness: 0.250”

$842.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered. By helping of the sputtering target, the composition of the target material may be evaluated and even extremely tiny amounts of contaminants are recognized. There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering. An inorganic substance is lead zirconium titanate. This ceramic perovskite material has a strong piezoelectric effect, which means that when an electric field is applied, the compound changes shape. Lead zirconium titanate is employed in a number of practical applications such as ultrasonic transducers and piezoelectric resonators.  

Indium Zinc Oxide/IZO (InZnO) Sputtering Targets, Purity: 99.99%, Size: 2”, Thickness: 0.125”

$357.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered.

The target material's composition may be ascertained and even very low concentrations of contaminants can be found with the aid of the sputtering target.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

Chromium (Cr) Sputtering Targets, Purity: 99.95%, Size: 6”, Thickness: 0.125”

$455.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered.

The target material's composition may be ascertained and even very low concentrations of contaminants can be found with the aid of the sputtering target.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

Silvery, shiny, hard, and brittle, chromium is a metal that resists corrosion and has a high mirror polish. The automotive industry finds extensive use for chromium sputtering targets. Chromium sputtering targets work well as a shiny coating for bumpers and wheels. Chromium sputtering targets can be employed in a variety of vacuum applications, such as automotive glass coatings.

Carbon (C) Sputtering Targets, indium, Purity: 99.999%, Size: 1”, Thickness: 0.125”

$339.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered.

The target material's composition may be ascertained and even very low concentrations of contaminants can be found with the aid of the sputtering target.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

Bismuth Ferrite (BiFeO3) Sputtering Targets, Purity: 99.9%, Size: 6”, Thickness: 0.250”

Bismuth Ferrite (BiFeO3) Sputtering Targets Purity: 99.9%, Size: 6”, Thickness: 0.250” Sputtering is a well-established technique that can deposit thin

Barium Zirconate (BaZrO3) Sputtering Targets, Purity: 99.99%, Size: 4”, Thickness: 0.250”

Barium Zirconate (BaZrO3) Sputtering Targets Purity: 99.99%, Size: 4”, Thickness: 0.250” Sputtering is a well-established technique that can deposit thin

Barium Zirconate (BaZrO3) Sputtering Targets, Purity: 99.99%, Size: 3”, Thickness: 0.250”

Barium Zirconate (BaZrO3) Sputtering Targets Purity: 99.99%, Size: 3”, Thickness: 0.250” Sputtering is a well-established technique that can deposit thin

Antimony Telluride (Sb2Te3) Sputtering Targets, Purity: 99.999%, Size: 1”, Thickness: 0.250”

$585.00

Applications of Sputtering Targets;

Film deposition is accomplished using sputtering targets. A technique for sputtering thin films is called "deposition made by sputter targets," which entails eroding material from a "target" source onto a "substrate" like a silicon wafer. Etching of the target is done using semiconductor sputtering targets. When selectivity is not an issue and a high degree of etching anisotropy is required, sputter etching is the method of choice. By removing the target material through etching, sputter targets are also utilized for investigation. In secondary ion spectroscopy (SIMS), one example is when the target material is sputtered at a steady pace. Mass spectrometry is used to quantify the concentration and identity of spewed atoms as the target is sputtered. With the sputtering target's assistance, the

It is possible to identify the target material and even detect incredibly tiny impurity amounts.

There is also an application area for sputtering targets in space. One type of space weathering that alters the chemical and physical characteristics of airless worlds like the Moon and asteroids is sputtering.

The chemical formula for antimony telluride, an inorganic molecule, is Sb2Te3. It has a layered structure and is a grey crystalline solid. Weak van der Waals forces hold the layers together. They are made up of three atomic sheets of tellurium and two atomic sheets of antimony.

Nitinol Shape Memory Alloy Sheet, Thickness: 0,5 mm, AF: 35-40°C

Price range: $6.85 through $230.75
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1cm x 1cm/  6,85  €                     2 cm x 2cm/   16 €    

Stainless Steel Three-Electrode Split Test Cell

$1,228.00
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Application:

Stainless steel Three-Electrode Split Test Cell for R&D, Hi-Voltage Battery - 15 mm Diameter Cell

304SS Coin Cell Conical Spring for CR2032, Diameter: 15.4 mm, Height: 1.1 mm, Thickness: 0.25 mm

Price range: $50.00 through $154.00
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Applications:

304SS Coin Cell Conical Spring For CR2032 for Battery Research

304 Stainless Steel Wave Spring (Belleville Washers) for CR2032, Diameter: 15.4 mm, Thickness: 0.2 mm, Height: (1.2±0.03) mm

Price range: $42.00 through $154.00
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Applications:

304 Stainless Steel Wave Spring (Belleville Washers) for CR2032 for Battery Research

Meshed Lithium Air CR2032 Coin Cell Case with 304SS, Diameter: 20 mm, Height: 3.2 mm

Price range: $495.00 through $1,571.00
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Applications:

Meshed Lithium Air CR2032 Coin Cell Case with 304SS is widely used for developing Zinc/Lithium Air battery.

316SS Coin Cell Conical Spring for CR2032, Diameter: 15.4 mm, Height: 1.2 mm, Thickness: 0.25 mm

Price range: $71.00 through $274.00
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Applications:

316SS Coin Cell Conical Spring For CR2032 for Battery Research

CR2325 Coin Cell Cases with 316SS (Positive+Negative Cases), Diameter: 23 mm, Height : 2.5 mm

Price range: $240.00 through $1,860.00
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100 set: 240€ 500 set: 1040€ 1000 set:1860€ Technical Properties: Diameter 23 mm Height 2.5 mm Material 316SS

CR2325 Coin Cell Cases with 304SS (Positive+Negative Cases), Diameter: 23 mm, Height : 2.5 mm

Price range: $182.00 through $1,238.00
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100 set:182€ 500 set: 800€ 1000 set:1238€ Technical Properties: Diameter 23 mm Height 2.5 mm Material 304SS  

CR2450 Coin Cell Cases with 316SS (Positive+Negative Cases), Diameter: 24 mm, Height : 5 mm

Price range: $238.00 through $1,863.00
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100 set:238€ 500 set: 1038€ 1000 set:1863€ Technical Properties: Diameter 24 mm Height 5 mm Material 316SS

CR2450 Coin Cell Cases with 304SS (Positive+Negative Cases), Diameter: 24 mm, Height : 5 mm

Price range: $190.00 through $1,240.00
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100 set: 190€ 500 set: 800€ 1000 set: 1240€ Technical Properties: Diameter 24 mm Height 5 mm Material 304SS

CR2016 Coin Cell Cases with 316SS (Positive+Negative Cases), Diameter: 20 mm, Height : 1.6 mm

Price range: $238.00 through $1,863.00
Select options This product has multiple variants. The options may be chosen on the product page
100 set:238€ 500 set: 1038€ 1000 set:1863€ Technical Properties: Diameter 20 mm Height 1.6 mm Material 316SS

CR2016 Coin Cell Cases with 304SS (Positive+Negative Cases), Diameter: 20 mm, Height : 1.6 mm

Price range: $182.00 through $1,238.00
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100 set:182€ 500 set: 800€ 1000 set:1238€ Technical Properties: Diameter 20 mm Height 1.6 mm Material 304SS

Stainless Steel Two-Electrode Split Test Cell

Price range: $557.00 through $2,475.00
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APPLICATIONS
  • Suitable for experiments such as battery charging and discharging AC impedance
  • Can be used for two-electrode or gel experiments
  • It is beneficial to the analysis of electrode materials, with less solution, constant pressure and good reproducibility
  • Fully sealed device, easy to disassemble and clean

Hand-Held Disc Cutter with Ring Cutting Dies, ID: 8,15,18,20 mm

Price range: $307.00 through $1,532.00
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APPLICATIONS

Hand-held disc cutter with 1 set of cutting dies, each set includes 4 types of dies (ID: 8, 15, 18, 20 mm). It is a ideal and cost-effective tool for cutting battery separator. It is easy to change the cutter via a permanent magnet holder and good for operating in a glovebox.

Hand-Held Disc Cutter with Ring Cutting Dies, ID: 8,15,18,20 mm

Price range: $307.00 through $1,532.00
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 1 set: 307 Euro   5 set: 1532 Euro APPLICATIONS Hand-held disc cutter with 1 set of cutting dies, each set

CR2032 Coin Cell Cases with 316SS, Diameter: 20 mm, Height: 3.2 mm

Price range: $210.00 through $648.00
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Applications:

CR2032 Coin Cell Cases with 316SS is excellent for developing new rechargeable battery and battery electrodes

316 Stainless Steel Wave Spring (Belleville Washers) for CR2032, Diameter: 15.8 mm, Thickness: 0.5 mm

Price range: $58.00 through $207.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

316 Stainless Steel Wave Spring (Belleville Washers) for CR2032 for Battery Research

CR2032 Coin Cell Cases with 304SS, Diameter: 20 mm, Height: 3.2 mm

Price range: $155.00 through $544.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

CR2032 Coin Cell Cases with SS304 is excellent for developing new rechargeable battery and battery electrodes

304SS Coin Cell Battery Spacer, Diameter: 15.8 mm, Thickness: 0.5 mm

Price range: $57.00 through $207.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

304 Stainless Steel Coin Cell Battery Spacer (15.8 mm Dia x 0.5 mm) for Battery Research

316SS Coin Cell Battery Spacer, Diameter: 15.8 mm, Thickness: 0.5 mm

Price range: $63.00 through $232.00
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Applications:

316 Stainless Steel Coin Cell Battery Spacer (15.8 mm Dia x 0.5 mm) for Battery Research

CR2032 Coin Cell Case (Negative Case, Cone Spring, Spacer, Positive Case)

Price range: $248.00 through $719.00
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Applications:

CR2032 Coin Cell Case (Negative Case, Cone Spring, Spacer, Positive Case) for Battery Research CR2032 Coin Cell Cases (20d x 3.2t mm) with O-rings for Battery Research

Lithium Chips for Coin Cell Materials, Diameter: 16 mm, Thickness: 0.6 mm, 1500 pieces

Price range: $1,118.00 through $4,232.00
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Applications:

Lithium Chips for Coin Cell Materials can be used in lithium ion battery, reactor carrier and organic synthetic vitamins, synthetic rubber, medicine, pharmacy, etc.

Lithium Iron Phosphate (LiFePO4) Coated Aluminum Foil

Price range: $198.00 through $844.00
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Product Specification   Item Specification Product Name Lithium Iron Phosphate (LiFePO4) Coated Aluminum Foil Substrate Aluminum Foil Substrate Thickness 20μm Foil

Lithium hydroxide monohydrate (Trace Metals basis, LiOH.H2O), Purity: 99.995%

Price range: $48.00 through $493.00
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APPLICATIONS
Lithium hydroxide monohydrate is an inorganic compound (LiOH•H2O), which is a white crystalline powder and is strongly alkaline. Battery-grade lithium hydroxide is mainly used to produce the cathode material of high-energy lithium-ion batteries for applications such as electric vehicles, electric bicycles, power tools, and energy storage systems.

Lithium Cobalt Oxide (LiCoO2) Coated Aluminum Foil

Price range: $198.00 through $845.00
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Product Specification Item Specification Product Name Lithium Cobalt Oxide (LiCoO2) Coated Aluminum Foil Substrate Aluminum Foil Substrate Thickness 20μm Foil Substrate

Carbon-Coated Aluminum Foil

Price range: $198.00 through $844.00
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Product Specification Item Specification Product Name Carbon-Coated Aluminum Foil Substrate Aluminum Foil Substrate Thickness 20μm Foil Substrate Width 210±0.5mm Foil Substrate Length

Lithium Hydroxide, Monohydrate (Battery Grade, LiOH.H2O), Purity: ≥ 99.0%

Price range: $22.00 through $248.00
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APPLICATIONS
Lithium hydroxide monohydrate is an inorganic compound (LiOH•H2O), which is a white crystalline powder and is strongly alkaline. Battery-grade lithium hydroxide is mainly used to produce the cathode material of high-energy lithium-ion batteries for applications such as electric vehicles, electric bicycles, power tools, and energy storage systems.

Lithium Carbonate (Battery Grade, Li2CO3) Purity ≥99.5%

Price range: $43.00 through $684.00
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APPLICATION AREAS Lithium carbonate is a lithium salt with the chemical formula Li2CO3. Battery-grade lithium carbonate is primarily used to produce Li-ion battery cathode materials, such as lithium cobalt oxide (LCO), lithium manganate oxide (LMO), lithium iron phosphate (LFP), NMC111, NMC442, NMC532, NMC622, as well as alkaline batteries. Battery-grade lithium carbonate is also a key material in LIB electrolytes. Lithium carbonate is widely used in Li-ion batteries, pharmaceuticals, aluminum production, and the processing of metal oxides. In the glass industry, lithium carbonate is used to reduce the melting point of silica used in ovenware glass. In the ceramics industry, lithium carbonate is used to render color and shine.

Lithium Nickel Cobalt Aluminum Oxide (NCA) (LiNi0.8Co0.15Al0.05O2) Powder for High Power Li-ion Battery Cathode Application

Price range: $94.00 through $482.00
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Product Information Product Name Lithium Nickel Cobalt Aluminum Oxide (NCA) (LiNi0.8Co0.15Al0.05O2) Powder for High Power Li-ion Battery Cathode Application Product

Lithium Nickel Manganese Cobalt Oxide (LiNiCoMnO2) Powder for High Power Li-ion Battery Cathode Application, (Ni:Mn:Co=5:3:2) NMC 532

Price range: $60.00 through $432.00
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100 grams/60 €                      500 grams/248 €             

Aluminum Foil for Battery Cathode Substrate, Size: 350 m*280 mm*15 µm

Price range: $263.00 through $5,313.00
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1 piece/263 € 5 pieces/1182 € 25 pieces/5313 € Please contact us for quotes on larger quantities !!! Aluminum Foil for Battery Cathode Substrate

Lithium Cobalt Oxide (LiCoO2) Powder for Li-ion Battery Cathode Application

Price range: $68.00 through $367.00
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100 grams/68 €                     500 grams/245 €               

Lithium Nickel Manganese Oxide (LMNO) for Li-Ion Cathode Material, LiNi0.5Mn1.5O4

Price range: $44.00 through $209.00
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100 grams/44 €                     500 grams/123 €               

Silicon (Si) Nanopowder for Battery Applications

Price range: $115.00 through $2,028.00
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5 grams/115 € 25 grams/234 €                        100 grams/708 €       

PVDF Binder for Li-ion Battery Electrodes (set: 80g )

Price range: $95.00 through $2,035.00
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Applications:

PVDF Binder for Li-ion Battery Electrodes 80g/bag PVDF (Polyvinylidene fluoride ) binder is for mixing together with cathode powder to prepare Li-ion battery electrode 80g/bag, vacuum sealed in plastic bag.

C-NERGY SUPER C45 Conductive Carbon Black (set: 80 g)

Price range: $30.00 through $557.00
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Applications:

C-NERGY SUPER C45 Conductive Carbon Black as Conductive Additive for Lithium-Ion Batteries 80g/bag - EQ-Lib-SuperC45

Nickel Tabs, Width: 3 mm

Price range: $47.00 through $144.00
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Applications:

Nickel Tabs for use as the Negative Terminal of Polymer Li-ion Batteries

Nickel Tab with Adhesive Polymer Tape as Negative Terminal for Pouch Cell, Width: 4 mm

Price range: $55.00 through $212.00
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Applications:

4 mm Wide Nickel Tabs for use as the Negative Terminal of Polymer Li-ion Batteries

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

Conductive Acetylene Black for Li-ion Battery Anode/Cathode

Price range: $75.00 through $138.00
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Applications:

Conductive Acetylene Black for Li-ion Battery Anode/Cathode is used for preparing Li-ion battery electrode material and conducting material, for example: Cathode: Cathode Active+Acetylene Black (Conductive)+PVDF+NMP Anode: Anode Active+Acetylene Black (Conductive)+PVDF+NMP (or SBR+CMC)

N-Methyl-2-Pyrrolidone (NMP) Solvent for Lithium Battery Cathode Materials, Purity: 99.90%

Price range: $119.00 through $494.00
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Applications:

N-Methyl-2-Pyrrolidone (NMP) Solvent for Lithium Battery Cathode Materials

Boron Doped Graphene Nanopowder (B/G)

Price range: $269.00 through $1,765.00
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100 gram: 269€ 5 grams: 1080€                          10 grams:

PVDF Binder for Li-ion Battery Electrodes (set: 80g )

Price range: $95.00 through $2,035.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

PVDF Binder for Li-ion Battery Electrodes 80g/bag PVDF (Polyvinylidene fluoride ) binder is for mixing together with cathode powder to prepare Li-ion battery electrode 80g/bag, vacuum sealed in plastic bag.

C-NERGY SUPER C45 Conductive Carbon Black (set: 80 g)

Price range: $30.00 through $557.00
Select options This product has multiple variants. The options may be chosen on the product page

Applications:

C-NERGY SUPER C45 Conductive Carbon Black as Conductive Additive for Lithium-Ion Batteries 80g/bag - EQ-Lib-SuperC45

C-NERGY Super P Conductive Carbon Black, 1 bag: 40 g

Price range: $35.00 through $123.00
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Applications:

C-NERGY Super P Conductive Carbon Black is mainly used as black pigment, UV stabilizer, rubber reinforcement, etc.

C-NERGY SUPER C65 Conductive Carbon Black

Price range: $47.00 through $85.00
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Applications:

  Applications: C-NERGY Super C65 Conductive Carbon Black as Conductive Additive for Lithium-Ion Batteries

Platinum Foil, Purity 99.95%, Thickness: 0.5mm, 1×1 cm

Price range: $228.00 through $1,079.00
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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

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

Price range: $2,016.00 through $9,759.00
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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