Titanium nanosheet/graphene-based heating film

An alkenyl-based heating film, titanium nanotechnology, applied in nanotechnology, nanotechnology, nanotechnology for materials and surface science, etc., can solve the problems of poor circuit continuity, poor heat resistance, large resistance, etc. The effect of preventing leakage and high efficiency of photothermal conversion
CN112004274AInactive Publication Date: 2020-11-27北京康烯科技创新研究有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
北京康烯科技创新研究有限公司
Publication Date
2020-11-27
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention provides a titanium nanosheet / graphene-based heating film which comprises a first transparent insulating layer, an electrode, a second transparent insulating layer and a titanium nanosheet / graphene-based fiber membrane, wherein the first transparent insulating layer covers one surface of the titanium nanosheet / graphene-based fiber membrane; the second transparent insulating layer covers the other surface of the titanium nanosheet / graphene-based fiber membrane, one end of the electrode is electrically connected with the titanium nanosheet / graphene-based fiber membrane, and the other end of the electrode extends out of the first transparent insulating layer or the second transparent insulating layer. According to the titanium nanosheet / graphene-based heating film, by means of the efficient photo-thermal conversion efficiency and electro-thermal conversion efficiency of the titanium nanosheet / graphene-based fiber film, the electro-thermal and photo-thermal diversified heat production functions are achieved.
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Description

technical field

[0001] The invention relates to the technical field of graphene heating devices, in particular to a flexible titanium nanosheet / graphene-based heating film. Background technique

[0002] Graphene is a two-dimensional nanomaterial with a hexagonal honeycomb lattice structure formed by carbon atoms through sp2 hybrid orbitals and only one layer of carbon atoms thick. The unique structure of graphene endows it with many excellent properties, such as high theoretical specific surface area (2630m 2 / g), ultra-high electron mobility (~200000cm2 / v.s), high thermal conductivity (5300W / m.K), high Young's modulus (1.0TPa) and high light transmittance (~97.7%), etc. With its structure and performance advantages, graphene has great application prospects in energy storage and conversion devices, nanoelectronic devices, multifunctional sensors, flexible and wearable electronics, electromagnetic shielding, anti-corrosion and other fields. In view of the flexibility and co...

Claims

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