Graphene clothing materials are obtained by fusion of b […]
Graphene clothing materials are obtained by fusion of biomass graphene and natural fibers through advanced technology. In addition to the characteristics of general fibers, it also has strong low-temperature far-infrared and UV protection functions, activates immune cells, enhances body functions, and improves micro Recycling, antibacterial and antibacterial, antistatic, warming and heat preservation, it is at the forefront of the world in the field of graphene functional clothing and textiles.
It can be made of thinner materials and is also the strongest material, with a fracture strength 200 times higher than the best steel. At the same time, it has good elasticity, and the stretching range can reach 20% of its own size.
The most potential application of graphene currently is to become a substitute for silicon and to manufacture ultra-micro transistors for the production of future supercomputers. Using graphene to replace silicon, computer processors will run hundreds of times faster.
In addition, graphene is almost completely transparent, absorbing only 2.3% of light. On the other hand, it is very dense and cannot penetrate even the smallest gas atoms (hydrogen atoms). These characteristics make it very suitable as a raw material for transparent electronic products, such as transparent touch screens, light-emitting panels and solar panels.
As a new type of nanomaterial with the thinnest, strongest, and strongest electrical and thermal conductivity discovered so far, graphene is called "black gold" and is the "king of new materials". Scientists even predict that graphene will "completely change the 21st century." ". It is very likely to set off a disruptive new technology and new industrial revolution sweeping the world.
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