material characteristics: Graphene oxide is an oxide of graphene whose unique structure gives it outstanding physical and chemical properties. Small-size high-purity graphene oxide has a higher specific surface area and more abundant active sites, which enable it to play an important role in batteries. the application in batteries: High energy dens1
The application of ultra-pure single-layer graphene oxide in batteries is mainly reflected in the following aspects: Efficient charge and discharge: Because graphene oxide has a high specific surface area and rich functional groups on the surface, it can provide a larger electrode surface area when used as an electrode material, so that lith1
Lithium-sulfur battery is the next generation of high energy density electrochemical energy storage device, the carbon and sulfur composite positive electrode double-sided electrode plate is the key component to improve its performance. This electrode sheet uses advanced carbon-sulfur composite technology to effectively compound highly conductive c1
Vacuum film coating machine is widely used in various high temperature coating process, such as ceramic film, crystal film, battery electrode, special nano film
description: The battery coating machine is a device specially used for uniformly coating the surface of the positive and negative electrode materials of the battery. It enables precise control of coating thickness and speed to ensure the stability of coating quality and performance. In the lithium battery production process, the battery coating ma1
A new LV-SSR Brinell rotary viscometer adopts high performance stepping motor and driver, which runs accurately and smoothly according to the program setting, and the motor runs through the torque sensor to drive the rotor to rotate at constant speed. When the rotor is subjected to viscous resistance in the measured liquid, the force is fed back to1
MSK-SFM-9-5L dual dispersing shaft vacuum planetary mixer is an efficient mixing device that integrates low-speed mixing and high-speed dispersion. It combines orbital and rotational motion to achieve thorough mixing of materials.
Lithium battery PE separator is made of polypropylene as the base material and forms a uniform microporous structure through processes such as biaxial stretching.
The functional film mainly made of polyethylene (PE) plays a key role in physically isolating the positive and negative electrodes to prevent short circuits.
The coating forms a dense barrier through high-temperature sintering, enabling the separator to withstand temperatures above 1800℃. This effectively blocks heat conduction during thermal runaway.