Jul 22, 2019 Pageview:575
Guo-zhong han nan university research team in the graphene machining, omitted the necessary transfer process, using titanium developed a new type of high quality large area at low temperature the graphene synthesis technology. The results of the study is published in the international academic journal in the field of nanometer. Guo-zhong han nan university research team in the graphene machining, omitted the necessary transfer process, using titanium developed a new type of high quality large area at low temperature the graphene synthesis technology.The results of the study is published in the international academic journal in the field of nanometer.
Illustrated with diagrams
according to South Korea the website of Asia's economic "guo-zhong han nan university research team in the graphene machining, omitted the necessary transfer process, using titanium developed a new type of high quality large area at low temperature the graphene synthesis technology. The results of the study are published in international journals in the field of nano "., according to South Korea the website of Asia's economic "guo-zhong han nan university research team in the graphene machining, omitted the necessary transfer process, using titanium developed a new type of high quality large area at low temperature the graphene synthesis technology. The results of the study are published in international journals in the field of nano ".
The conductivity of the graphene and good thermal conductivity, high mechanical strength, flexibility and transparency is very good also. Therefore, can be widely applied in the second The battery, display and other fields. Through the general chemical vapor deposition method in the synthesis of graphene, need to be done in other substrate transfer project, but the process will appear many problems, for example, to overcome the internal combination, and the substrate bonding problem on the surface of the graphene crystallization area size and control interface, and because of the graphene surface produce the problem such as fold, leading to feature is low. The conductivity of the graphene and good thermal conductivity, high mechanical strength, flexibility and transparency is very good also. Therefore, can be widely used in the secondary battery, display, and other fields. Through the general chemical vapor deposition method in the synthesis of graphene, need to be done in other substrate transfer project, but the process will appear many problems, for example, to overcome the internal combination, and the substrate bonding problem on the surface of the graphene crystallization area size and control interface, and because of the graphene surface produce the problem such as fold, leading to feature is low.
Team found that titanium and graphene has the same crystalline structure, and the adhesion strength of the carbon element is very powerful. The research achievements of using titanium removing graphene fold, on the thick layer of titanium developed graphene synthesis techniques.The technology in low temperature conditions, can synthesize high quality graphene, significantly improve the efficiency of engineering and applied. Team found that titanium and graphene has the same crystalline structure, and the adhesion strength of the carbon element is very powerful. The research achievements of using titanium removing graphene fold, on the thick layer of titanium developed graphene synthesis techniques. The technology in low temperature conditions, can synthesize high quality graphene, significantly improve the efficiency of engineering and applied.
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