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使用现代聚焦离子束系统评估离子/电子束诱导沉积用于电连接的情况。

Evaluation of ion/electron beam induced deposition for electrical connection using a modern focused ion beam system.

作者信息

An Byeong-Seon, Kwon Yena, Oh Jin-Su, Shin Yeon-Ju, Ju Jae-Seon, Yang Cheol-Woong

机构信息

School of Advanced Material Science and Engineering, Sungkyunkwan University, Suwon, 16419, Korea.

Cooperative Center for Research Facilities, Sungkyunkwan University, Suwon, 16419, Korea.

出版信息

Appl Microsc. 2019 Jul 18;49(1):6. doi: 10.1186/s42649-019-0008-2.

Abstract

Focused ion beam method, which has excellent capabilities such as local deposition and selective etching, is widely used for micro-electromechanical system (MEMS)-based in situ transmission electron microscopy (TEM) sample fabrication. Among the MEMS chips in which one can apply various external stimuli, the electrical MEMS chips require connection between the TEM sample and the electrodes in MEMS chip, and a connected deposition material with low electrical resistance is required to apply the electrical signal. Therefore, in this study, we introduce an optimized condition by comparing the electrical resistance for C-, Pt-, and W- ion beam induced deposition (IBID) at 30 kV and electron beam induced deposition (EBID) at 1 and 5 kV. The W-IBID at 30 kV with the lowest electrical resistance of about 30 Ω shows better electrical properties than C- and Pt-IBID electrodes. The W-EBID at 1 kV has lower electrical resistance than that at 5 kV; thus, confirming its potential as an electrode. Therefore, for the materials that are susceptible to ion beam damage, it is recommended to fabricate electrical connections using W-EBID at 1 kV.

摘要

聚焦离子束方法具有诸如局部沉积和选择性蚀刻等出色能力,被广泛用于基于微机电系统(MEMS)的原位透射电子显微镜(TEM)样品制备。在可以施加各种外部刺激的MEMS芯片中,电MEMS芯片需要在TEM样品和MEMS芯片中的电极之间建立连接,并且需要一种具有低电阻的连接沉积材料来施加电信号。因此,在本研究中,我们通过比较30 kV下C、Pt和W离子束诱导沉积(IBID)以及1 kV和5 kV下电子束诱导沉积(EBID)的电阻,引入了一种优化条件。30 kV下电阻最低约为30 Ω的W-IBID显示出比C-和Pt-IBID电极更好的电学性能。1 kV下的W-EBID电阻低于5 kV下的电阻;因此,证实了其作为电极的潜力。因此,对于易受离子束损伤的材料,建议使用1 kV下的W-EBID来制造电连接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e449/7818281/17b7959d3b76/42649_2019_8_Fig1_HTML.jpg

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