GNLA-O4 conductive paste
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  • GNLA-O4 conductive paste

GNLA-O4 conductive paste

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.

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Product Introduction

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

v 产品介绍  GNLA-O4是以阵列碳纳米管为核心,NMP为溶剂,添加一定量的石墨烯复合导电浆料。适当比例石墨烯的加入增加极片柔韧性,墨烯高热导率,改善锂离子电池中的热传输,提升安全性能。同时,利用阵列碳纳米管和石墨烯优异的导电性能,可在整个材料体系中形成高效的线面接触,构成三维立体导电网络,能够有效的降低电池内阻,提高电池充放电倍率及循环性能。此款产品为公司导电性能较优的复合型产品,随着公司阵列碳管的更新换代,根据客户需求,可为客户提供性能更优的复合型产品。  v 产品特点  1. 采用机械剥离法生产石墨烯,高导电性;  2. 降低导电剂和粘结剂的使用量,提升电池密度;  3. 合浆浆料粘度稳定,流平性良好,易于分散,易于涂布;  4. 提升电池充放电倍率和循环性能;  5. 提升安全性能。  v 产品形貌  v 技术参数  v 使用建议  建议使用在LFP体系中。  v 包装方式  可提供25千克、200千克或1000千克包装。v 产品介绍  GNLA-O4是以阵列碳纳米管为核心,NMP为溶剂,添加一定量的石墨烯复合导电浆料。适当比例石墨烯的加入增加极片柔韧性,墨烯高热导率,改善锂离子电池中的热传输,提升安全性能。同时,利用阵列碳纳米管和石墨烯优异的导电性能,可在整个材料体系中形成高效的线面接触,构成三维立体导电网络,能够有效的降低电池内阻,提高电池充放电倍率及循环性能。此款产品为公司导电性能较优的复合型产品,随着公司阵列碳管的更新换代,根据客户需求,可为客户提供性能更优的复合型产品。  v 产品特点  1. 采用机械剥离法生产石墨烯,高导电性;  2. 降低导电剂和粘结剂的使用量,提升电池密度;  3. 合浆浆料粘度稳定,流平性良好,易于分散,易于涂布;  4. 提升电池充放电倍率和循环性能;  5. 提升安全性能。  v 产品形貌  v 技术参数  v 使用建议  建议使用在LFP体系中。  v 包装方式  可提供25千克、200千克或1000千克包装。

 

Technical parameters

黑龙江省石墨谷产业集团

 

Use recommendations

Recommended for use in the LFP system.

 

Packing method

Available in 25kg, 200kg or 1000kg packages.

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