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使用环烷酸铜作为石墨烯器件应用的抗蚀剂,直接图案化高导电性的石墨烯@铜复合材料。

Direct patterning of highly-conductive graphene@copper composites using copper naphthenate as a resist for graphene device applications.

机构信息

School of Physics and Electronics, State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, China.

出版信息

Nanoscale. 2017 Nov 9;9(43):16755-16763. doi: 10.1039/c7nr05779b.

Abstract

We report an electron-beam lithography process to directly fabricate graphene@copper composite patterns without involving metal deposition, lift-off and etching processes using copper naphthenate as a high-resolution negative-tone resist. As a commonly used industrial painting product, copper naphthenate is extremely cheap with a long shelf time but demonstrates an unexpected patterning resolution better than 10 nm. With appropriate annealing under a hydrogen atmosphere, the produced graphene@copper composite patterns show high conductivity of ∼400 S cm. X-ray diffraction, conformal Raman spectroscopy and X-ray photoelectron spectroscopy were used to analyze the chemical composition of the final patterns. With the properties of high resolution and high conductivity, the patterned graphene@copper composites could be used as conductive pads and interconnects for graphene electronic devices with ohmic contacts. Compared to common fabrication processes involving metal evaporation and lift-off steps, this pattern-transfer-free fabrication process using copper naphthenate resist is direct and simple but allows comparable device performance in practical device applications.

摘要

我们报告了一种电子束光刻工艺,该工艺使用环烷酸铜作为高分辨率负性光刻胶,无需涉及金属沉积、剥离和刻蚀工艺,可直接制备石墨烯@铜复合材料图案。环烷酸铜作为一种常用的工业涂料产品,价格极其便宜,保质期长,但具有出人意料的优于 10nm 的图案分辨率。在氢气气氛下适当退火后,所制备的石墨烯@铜复合材料图案表现出约 400 S cm 的高导电性。X 射线衍射、共形拉曼光谱和 X 射线光电子能谱用于分析最终图案的化学组成。所制备的图案化石墨烯@铜复合材料具有高分辨率和高导电性,可用作具有欧姆接触的石墨烯电子器件的导电垫和互连。与涉及金属蒸发和剥离步骤的常见制造工艺相比,这种使用环烷酸铜抗蚀剂的无图案转移制造工艺直接而简单,但在实际器件应用中可实现可比的器件性能。

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