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通过电泳沉积(EPD)制备的大面积、导电且柔性的还原氧化石墨烯(RGO)膜。

Large-area, conductive and flexible reduced graphene oxide (RGO) membrane fabricated by electrophoretic deposition (EPD).

作者信息

Wang Mei, Duong Le Dai, Oh Joon-Suk, Mai Nguyen Thi, Kim Sanghoon, Hong Seungchul, Hwang Taeseon, Lee Youngkwan, Nam Jae-Do

机构信息

Department of Energy Science, Sungkyunkwan University , Suwon, 440-746, South Korea.

出版信息

ACS Appl Mater Interfaces. 2014 Feb 12;6(3):1747-53. doi: 10.1021/am404719u. Epub 2014 Jan 27.

Abstract

A large-area, conductive, and flexible membrane made from the stabilized aqueous solution of reduced graphene oxide (RGO) is successfully fabricated using an electrophoretic deposition (EPD) method. A low-voltage operation of EPD (∼3 volts) allows a robust consolidation of RGO layers desirably aligned in the in-plane direction through the cohesive electrophoretic squeezing force near the current collector. Transferring the deposited RGO layers to arbitrary substrates or achieving as a free-standing form, two methods of "chemical etching" and "electrochemical etching" are developed to detach the RGO layers from the EPD current collector without damaging the deposited RGO. Further reducing the free-standing RGO membrane by thermal annealing up to 1000 °C, a graphite-like architecture is restored (d-spacing at 3.42 Å with C/O ratio at 16.66) and the electrical conductivity increases as high as 5.51 × 10(5) S/m. The tightly-consolidated and securely-detached RGO membrane allows the free-standing and flexible features and highly conductive characteristics, which are further developed during thermal treatment. Because of the facile scale-up nature of the EPD process and RGO solution, the developed methodology has a considerable potential to be applied to various energy storage devices, flexible conductive coatings, and other electrochemical systems.

摘要

采用电泳沉积(EPD)法成功制备了一种由还原氧化石墨烯(RGO)稳定水溶液制成的大面积、导电且柔性的薄膜。EPD的低电压操作(约3伏)通过集电器附近的内聚电泳挤压力,使RGO层在面内方向上理想地排列并牢固地固结。为了将沉积的RGO层转移到任意基板上或制成独立形式,开发了“化学蚀刻”和“电化学蚀刻”两种方法,以将RGO层从EPD集电器上分离,而不损坏沉积的RGO。通过在高达1000℃的温度下进行热退火进一步还原独立的RGO膜,恢复了类似石墨的结构(d间距为3.42 Å,C/O比为16.66),电导率提高到高达5.51×10(5) S/m。紧密固结且牢固分离的RGO膜具有独立和柔性的特性以及高导电特性,这些特性在热处理过程中进一步发展。由于EPD工艺和RGO溶液易于放大的性质,所开发的方法在应用于各种能量存储装置、柔性导电涂层和其他电化学系统方面具有相当大的潜力。

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