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Water-based conductive paste
Water-based conductive paste has the following advantages in terms of performance: (1) The decomposition temperature of water-based conductive paste is higher than 270℃ and has good thermal stability; (2) In terms of processing stability, compared with conventional emulsions, water-based conductive paste has good freeze-thaw resistance and will not demulsify under high-speed shearing. It has excellent grinding stability and is very suitable for mechanical dispersion with powder;...
Products Description

Water-based conductive paste has the following advantages in terms of performance:

(1) The decomposition temperature of water-based conductive paste is higher than 270℃ and has good thermal stability;

(2) In terms of processing stability, compared with conventional emulsions, water-based conductive paste has good freeze-thaw resistance and will not demulsify under high-speed shearing. It has excellent grinding stability and is very suitable for mechanical dispersion with powder;

(3) In terms of storage and transportation stability, conventional emulsions will demulsify and solidify after the temperature drops below the freezing point, while water-based conductive paste will not demulsify even when the temperature is below the freezing point. When the temperature returns to above the freezing point, the fluidity is restored and it can continue to be used;

(4) In terms of processing, it breaks through the limitation of low efficiency of solvent-based adhesives, greatly improves the production efficiency of coating, and its compaction density is comparable to that of traditional oil-based PVDF.

TANFENG Technology's carbon nanotube conductive paste is at the industry leading level in terms of viscosity, carbon nanotube content, and conductive properties. The company has strong independent research and development capabilities and maintains its competitiveness through product iteration; in addition, the company is actively exploring the application of carbon nanotubes in markets other than lithium batteries, such as conductive plastics and chips.