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电子束诱导残余碳氢化合物解离过程中碳纳米柱和微环的动态生长

Dynamic growth of carbon nanopillars and microrings in electron beam induced dissociation of residual hydrocarbons.

作者信息

Rykaczewski Konrad, Marshall Andrew, White William B, Fedorov Andrei G

机构信息

Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Ultramicroscopy. 2008 Aug;108(9):989-92. doi: 10.1016/j.ultramic.2008.04.006. Epub 2008 Apr 24.

Abstract

Electron beam induced dissociation (EBID) of residual hydrocarbons is a common contamination problem in electron microscopy. Formation of amorphous carbon thin films, dots, rings, and complex three-dimensional (3D) structures has been documented. In recent years there has been a renewed interest in utilization EBID of residual hydrocarbons for nanomanufacturing and metrology. With the increase and the diversification of EBID applications, ability for an a priori prediction of the appropriate deposition settings (such as electron beam current, diameter, and energy) that would result in a desired deposit size and geometry is becoming increasingly important. Toward this end, we report how simulations can be used to quantitatively predict the complex shape and non-linear dynamics of secondary ring-type microstructures formed around nanopillar deposits. The deposition experiments were performed on a Si(100) substrate for different electron beam energies and currents. Deposit shape and transient evolution were characterized using atomic force microscopy and critically compared against simulations results.

摘要

残余碳氢化合物的电子束诱导解离(EBID)是电子显微镜中常见的污染问题。已记录到非晶碳薄膜、点、环和复杂三维(3D)结构的形成。近年来,人们对利用残余碳氢化合物的EBID进行纳米制造和计量学重新产生了兴趣。随着EBID应用的增加和多样化,先验预测能够产生所需沉积物尺寸和几何形状的合适沉积设置(如电子束电流、直径和能量)的能力变得越来越重要。为此,我们报告了如何使用模拟来定量预测纳米柱沉积物周围形成的二次环型微结构的复杂形状和非线性动力学。在Si(100)衬底上针对不同的电子束能量和电流进行了沉积实验。使用原子力显微镜对沉积物形状和瞬态演变进行了表征,并与模拟结果进行了严格比较。

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