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Reel-to-reel graphene preparation apparatus

A graphene, roll-to-roll technology, applied in graphene, gaseous chemical plating, coating and other directions, can solve the problem of hindering the development of industrialization, unable to realize the rapid preparation of large-area, high-quality graphene, rapid preparation of large-area, The method of high-quality graphene has not achieved breakthroughs and other problems to achieve the effect of preventing damage

Active Publication Date: 2015-04-15
CHONGQING GRAPHENE TECH
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  • Abstract
  • Description
  • Claims
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Problems solved by technology

After extensive research in recent years, several methods for preparing graphene have been developed, such as mechanical exfoliation, epitaxial growth, chemical reduction of graphite oxide, chemical vapor deposition (CVD), etc. Most of these graphene preparation methods can be Graphene samples for laboratory use are obtained under specific conditions, but there has been no breakthrough in the rapid preparation of large-area, high-quality graphene, which greatly limits the efficiency, output and cost of graphene preparation, hindering its further development. Industrialization development
[0005] Although South Korea has produced a 30-inch (diagonal about 76cm) graphene film with large-scale CVD equipment, due to equipment limitations, the preparation process still requires reloading the sample to prepare the next time after the preparation is completed. Achieve continuous and rapid preparation of large-area, high-quality graphene

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Embodiment Construction

[0027] The specific implementation manners of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0028] Such as figure 1 Shown is a schematic structural diagram of an embodiment of the roll-to-roll graphene preparation equipment of the present invention. The roll-to-roll graphene preparation equipment of the present embodiment comprises an airtight vacuum chamber 1, which is provided with a roller system for driving the movement of the graphene growth foil belt 2 in the vacuum chamber 1, and the roller system includes a guide for the graphene growth foil belt 2 The driving roller 3, the growth roller 4 for growing graphene on the graphene growth foil strip 2 and the winding roller 5 for winding the graphene growth foil strip 2 after the graphene preparation is completed. The number of drive rollers 3 can be set in multiples according to actual needs, and play a guiding and driving role during the movement of the graphene g...

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Abstract

The invention discloses a reel-to-reel graphene preparation apparatus which comprises a closed vacuum chamber, wherein a roll system for driving a graphene growing foil belt to move is arranged in the vacuum chamber; the roll system comprises a driving roll for guiding the graphene growing foil belt, a growing roll for growing graphene on the graphene growing foil belt and a winding roll for winding the graphene growing foil belt after the graphene preparation is finished; a heating device for heating the graphene growing foil belt, corresponding to the growing roll, is arranged in the vacuum chamber; a quick cooling device for cooling the graphene growing foil belt on which the graphene is grown is arranged behind the growing roll along the moving direction of the graphene growing foil belt; a gas path system for introducing gas required for graphene preparation is arranged in the vacuum chamber; and a vacuum pump set for vacuumizing the vacuum chamber is arranged outside the vacuum chamber. The reel-to-reel graphene preparation apparatus disclosed by the invention can realize the quick, continuous and large-scale industrial production of graphene.

Description

technical field [0001] The invention relates to a graphene production equipment, in particular to a roll-to-roll graphene production equipment capable of rapid, continuous and large-scale industrial production of graphene. Background technique [0002] Graphene is a two-dimensional crystal with a hexagonal honeycomb structure composed of carbon atoms based on sp2 hybridization and only one atomic layer thick. Although single-layer graphene was first obtained by mechanical exfoliation of graphite in experiments in 2004, it has aroused the interest of countless scientific researchers due to its unique properties, and has been extensively studied in the past few years. Andre Geim and Konstantin Novoselov also won the 2010 Nobel Prize in Physics for their pioneering work on graphene. [0003] Graphene is currently the thinnest and hardest nanomaterial in the world. It is almost completely transparent and only absorbs about 2.3% of light in the full band; its thermal conductivit...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C23C16/00C01B31/04C01B32/184C01B32/188
Inventor 李占成史浩飞张为国杜春雷
Owner CHONGQING GRAPHENE TECH
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