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转移化学气相沉积石墨烯的残余金属杂质。

Residual metallic contamination of transferred chemical vapor deposited graphene.

机构信息

†IHP, Im Technologiepark 25, 15236 Frankfurt (Oder), Germany.

‡School of ICT, KTH Royal Institute of Technology, Isafjordsgatan 22, 16440 Kista, Sweden.

出版信息

ACS Nano. 2015 May 26;9(5):4776-85. doi: 10.1021/acsnano.5b01261. Epub 2015 Apr 28.

Abstract

Integration of graphene with Si microelectronics is very appealing by offering a potentially broad range of new functionalities. New materials to be integrated with the Si platform must conform to stringent purity standards. Here, we investigate graphene layers grown on copper foils by chemical vapor deposition and transferred to silicon wafers by wet etching and electrochemical delamination methods with respect to residual submonolayer metallic contaminations. Regardless of the transfer method and associated cleaning scheme, time-of-flight secondary ion mass spectrometry and total reflection X-ray fluorescence measurements indicate that the graphene sheets are contaminated with residual metals (copper, iron) with a concentration exceeding 10(13) atoms/cm(2). These metal impurities appear to be partially mobile upon thermal treatment, as shown by depth profiling and reduction of the minority charge carrier diffusion length in the silicon substrate. As residual metallic impurities can significantly alter electronic and electrochemical properties of graphene and can severely impede the process of integration with silicon microelectronics, these results reveal that further progress in synthesis, handling, and cleaning of graphene is required to advance electronic and optoelectronic applications.

摘要

将石墨烯与硅微电子学集成非常有吸引力,因为它提供了广泛的新功能。要与硅平台集成的新材料必须符合严格的纯度标准。在这里,我们研究了通过化学气相沉积在铜箔上生长并通过湿法刻蚀和电化学分层方法转移到硅晶片上的石墨烯层,以研究残留的亚单层金属污染物。无论采用哪种转移方法和相关的清洁方案,飞行时间二次离子质谱和全反射 X 射线荧光测量都表明,石墨烯片受到残留金属(铜、铁)的污染,浓度超过 10(13)原子/cm(2)。这些金属杂质在热处理时似乎部分具有迁移性,这可以通过深度分析和减少硅衬底中少数载流子扩散长度来证明。由于残留的金属杂质会显著改变石墨烯的电子和电化学性能,并严重阻碍与硅微电子学的集成过程,因此这些结果表明需要在合成、处理和清洁石墨烯方面取得进一步进展,以推进电子和光电应用。

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