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Graphene is called "magic material" because of its excellent properties such as high electrical conductivity, high thermal conductivity and high strength. It may change a large number of applications, such as light bulbs, chips, batteries, touch screens, smart phones and new energy vehicles. There are countless fields in which graphene can be competent. Let's take a look at the various uses of graphene!
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Three questions take you to know the "king of new materials"-graphene!
First of all, it is composed of carbon atoms, which have the characteristics of graphite and olefin. Graphite is a hexagonal three-dimensional layered structure, and olefin is a two-dimensional plane symmetrical structure. The comprehensive authoritative definition is: graphene (Graphene) is a kind of two-dimensional carbon nanomaterial composed of carbon atoms with sp ² 2; Hybrid orbitals form hexagonal honeycomb lattice.
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The application of graphene is divided into three kinds, the first belongs to the primary application, the field is mainly consumer electronics products; the second belongs to the advanced application, the field is mainly ultra-high frequency transmitter and other device products; the third belongs to the advanced application, the field is mainly chip and so on.
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The combination of silica gel and graphene: feasibility and application prospect
Silicone is an excellent elastic material, which is widely used in industrial production. Graphene is a material composed of a single layer of carbon atoms, which has excellent electrical conductivity and mechanical properties. Can the combination of silica gel and graphene produce better results?
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Graphene and rubber "strong combination", new materials make shoes full of imagination
Rubber has unique high elasticity at room temperature. As an important strategic material, it is widely used in the fields of national economy, high-tech, national defense and military industry. However, unreinforced rubber has low strength, low modulus, poor wear resistance, poor fatigue resistance, and no practicality. Therefore, filling and reinforcement are required for most rubbers.
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