Conductive paste
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The SAL-O4 is based on the array of carbon nanotubes as the main material, NMP as the solvent. The product uses a new array of carbon nanotubes, diameter 4-11nm, average 7nm, purification process using high temperature purification. The slurry itself has the characteristics of very low metal impurity content, good fluidity and easy dispersion. Compared with the pure array carbon nanotube slurry, this product can significantly improve the rate performance and cycle performance of lithium ion batteries.
Product Features
1. Using a new array of carbon nanotubes, smaller diameter, better conductivity;
2. Very low metal impurity content;
3. High fluidity, viscosity less than 2000mpa · s (measured by rheometer 101/s);
4. Compared with ordinary array carbon nanotubes, the cycle performance and rate performance of the product can be significantly improved.
product morphology
Technical parameters
Use recommendations
It is recommended to use in NCM and LCO systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The NFLR-O5 is based on iron-based wound carbon nanotubes as the core and NMP as the solvent. The product uses winding carbon nanotubes, diameter 10-25nm, average 20nm, purification process using acid washing purification, part of the carbon tube is not purified. The slurry has the characteristics of high cost performance, good fluidity and easy dispersion.
Product Features
1. Good conductivity, high cost performance;
2. Good liquidity and easy dispersion.
product morphology
Technical parameters
Use recommendations
It is recommended to use in NCM and LCO systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
GSLF-O10 is a conductive carbon black, carbon nanotubes and graphene composite conductive paste, NMP as solvent. Multi-conductive agent compound, build point-point, electric-line, point-surface multi-level conductive channel, with the minimum content of conductive components to play the best conductive effect, reduce the amount of conductive agent, improve energy density. At the same time, this product is a high solid content product with high cost performance advantages, which can solve performance problems for customers while reducing cost pressure.
Product Features
1. Multi-conductive agent composite, long-range conductivity and short-range conductivity, better conductivity;
2. High solid content, low cost, high cost performance;
3. Improve the battery charge and discharge rate and cycle performance, improve energy density;
4. Improve safety performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in the LFP system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The GNLN-O5 is based on the nickel series coarse carbon nanotubes as the core, NMP as the solvent, adding a certain amount of graphene composite conductive paste. The addition of the appropriate proportion of graphene increases the flexibility of the pole, the high thermal conductivity of graphene, improves the heat transfer in the lithium-ion battery, and improves the safety performance. At the same time, the use of carbon nanotubes and graphene excellent electrical conductivity, can be in the whole material system to form efficient line surface contact, constitute a three-dimensional conductive network, can effectively reduce the battery internal resistance, improve the battery charge and discharge rate and cycle performance.
Product Features
1. Production of graphene by mechanical stripping method, high conductivity;
2. Reduce the amount of conductive agent and binder used, improve the battery density;
3. The slurry has stable viscosity, good leveling, easy dispersion and easy coating;
4. Improve the battery charge and discharge rate and cycle performance;
5. Improve safety performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in the LFP system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The GNLC-O5 is based on cobalt carbon nanotubes as the core, NMP as the solvent, adding a certain amount of graphene composite conductive paste. The addition of the appropriate proportion of graphene increases the flexibility of the pole, the high thermal conductivity of the ink, improves the heat transfer in the lithium-ion battery, and improves the safety performance. At the same time, the use of carbon nanotubes and graphene excellent electrical conductivity, can be in the whole material system to form efficient line surface contact, constitute a three-dimensional conductive network, can effectively reduce the battery internal resistance, improve the battery charge and discharge rate and cycle performance.
Product Features
1. Production of graphene by mechanical stripping method, high conductivity;
2. Reduce the amount of conductive agent and binder used, improve the battery density;
3. The slurry has stable viscosity, good leveling, easy dispersion and easy coating;
4. Improve battery charge and discharge rate and cycle performance;
5. Improve safety performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in the LFP system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The GNLA-O4 is based on the array of carbon nanotubes as the core, NMP as the solvent, adding a certain amount of graphene composite conductive paste. The addition of the appropriate proportion of graphene increases the flexibility of the pole, the high thermal conductivity of the ink, improves the heat transfer in the lithium-ion battery, and improves the safety performance. At the same time, the excellent conductivity of the array carbon nanotubes and graphene can form an efficient line-to-surface contact in the entire material system to form a three-dimensional conductive network, which can effectively reduce the internal resistance of the battery and improve the charge-discharge rate and cycle performance of the battery. This product is a composite product with better conductive performance of the company. With the replacement of the company's array carbon tubes, according to customer needs, we can provide customers with composite products with better performance.
Product Features
1. Production of graphene by mechanical stripping method, high conductivity;
2. Reduce the amount of conductive agent and binder used, improve the battery density;
3. The slurry has stable viscosity, good leveling, easy dispersion and easy coating;
4. Improve battery charge and discharge rate and cycle performance;
5. Improve safety performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in the LFP system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The FAL-O4 is based on ultrafine, high aspect ratio, high conductive array carbon nanotubes as the core, NMP as the solvent, the preparation of carbon nanotube conductive paste. Carbon tube excellent array of vertical arrangement, less entanglement, easy to disperse. At the same time, the use of carbon nanotubes ultra-high conductivity, can form a highly efficient conductive network in the entire material system, low addition in the case, can effectively reduce the internal resistance of the battery, improve its charge and discharge rate and cycle performance.
Product Features
1. Ultra-fine, high aspect ratio, excellent conductivity;
2. The array orientation is good, less entanglement, easy to disperse;
3. Reduce the internal resistance of the battery;
4. Low dosage, high charge-discharge rate and cycle performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in ternary systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The FAL-O3 is based on ultrafine, high aspect ratio, high conductive array carbon nanotubes as the core, NMP as the solvent, the preparation of carbon nanotube conductive paste. Carbon tube excellent array of vertical arrangement, less entanglement, easy to disperse. At the same time, the use of carbon nanotubes ultra-high conductivity, can form a highly efficient conductive network in the entire material system, low addition in the case, can effectively reduce the internal resistance of the battery, improve its charge and discharge rate and cycle performance.
Product Features
1. Ultra-fine, high aspect ratio, excellent conductivity;
2. The array orientation is good, less entanglement, easy to disperse;
3. Reduce the internal resistance of the battery;
4. Low dosage, high charge-discharge rate and cycle performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in ternary systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The NCL-H5 is based on winding carbon nanotubes as the core, H2O as the solvent. The product uses wound carbon nanotubes, diameter 10-25nm, average 20nm, purification process using acid cleaning purification. The slurry has the characteristics of high cost performance, good fluidity and easy dispersion.
Product Features
1. Good conductivity, high cost performance;
2. Good liquidity and easy dispersion;
3. The product process is stable and has been used by foreign customers for a long time.
product morphology
Technical parameters
Use recommendations
Recommended for use in graphite and silicon-based anode systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The NAL-H3 is based on the array of carbon nanotubes as the core, water as the solvent, the preparation of carbon nanotube conductive paste. Using the excellent conductive properties of carbon nanotubes, an efficient conductive network can be formed in the entire material system, which can effectively reduce the internal resistance of the battery and improve its charge-discharge rate and cycle performance.
Product Features
1. Array carbon nanotubes, excellent conductivity;
2. Reduce the amount of conductive agent and binder used, improve the battery density;
3. Reduce the internal resistance of the battery;
4. Improve the battery charge and discharge rate and cycle performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in graphite and silicon-based anode systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.
NNL-HV3 is easy to disperse carbon nanotubes as the main material, NMP as solvent. The product uses easily dispersed carbon nanotubes, diameter 10-70nm, average 40nm, purification process using acid washing purification. At present, the product is under development and can provide experimental samples. The first generation product of this slurry adopts high pressure resistant dispersant, which can ensure that the slurry does not have side reactions at 4.4V. The second generation of products based on the first generation of products based on the addition of film-forming stabilizers, can ensure the stability of the surface performance of the positive electrode material CEI film, and thus improve the stability of lithium-ion batteries under high power conditions. Compared with the traditional carbon nanotube slurry, this product can be used under the condition of 4.4V high voltage. Compared with the traditional SUPERP, it has the advantages of less adding amount and easy dispersion under the condition of high voltage.
Product Features
1. The use of high pressure resistant dispersant, can ensure the normal use of 4.4V conditions;
2. Contains stabilizing additives to make the material preferentially film at high voltage and make the cycle more stable;
3. Apply high charge-discharge rate, strong polarization conditions to improve the electrochemical performance of lithium-ion batteries.
product morphology
Technical parameters
Use recommendations
It is recommended to use high-power NCM system, high-power LCO system, energy-type high-voltage LCO system, and high-voltage lithium-rich manganese-based system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The HAL-O4 is based on the array of carbon nanotubes as the core, NMP as the solvent. The product uses array carbon nanotubes, diameter 4-16nm, average 11nm, purification process using acid washing purification compound high temperature purification array carbon nanotubes. The slurry has the characteristics of relatively low metal impurity content, good fluidity and easy dispersion. Compared with the traditional pure carbon nanotube slurry, the product can significantly improve the rate performance and cycle performance of lithium ion batteries.
Product Features
1. Using array carbon nanotubes, the diameter of the tube is relatively smaller, and the conductivity of carbon nanotubes is better by pickling purification process;
2. Metal impurities are relatively low and cost-effective;
3. Compared with traditional carbon nanotubes, it can significantly improve the cycle performance and rate performance of lithium-ion batteries.
product morphology
Technical parameters
Product Name
Appearance
Solid content
Content of conductive agent
Metal content of main impurities
Pipe diameter
HAL-O4
Black paste
5.0±0.2%
4.0±0.15%
Fe≤10ppm
Co≤1ppm
4-16nm
Use recommendations
Recommended for use in the LFP system.
Packing method
Available in 25kg, 200kg or 1000kg packages.
The NAL-O4 is based on the array of carbon nanotubes as the core, NMP as the solvent, the preparation of carbon nanotube conductive paste. Using the excellent conductive properties of carbon nanotubes, an efficient conductive network can be formed in the entire material system, which can effectively reduce the internal resistance of the battery and improve its charge-discharge rate and cycle performance.
Product Features
1. Ultra-high cost-effective array carbon nanotube conductive paste;
2. Reduce the internal resistance of the battery, improve the battery charge and discharge rate and cycle performance.
product morphology
Technical parameters
Use recommendations
Recommended for use in ternary systems.
Packing method
Available in 25kg, 200kg or 1000kg packages.