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Analysis of AFM tip induced oxidation of thin metal film in the air

机译:原子力显微镜尖端诱导空气中金属薄膜氧化的分析

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摘要

With the development and application of nanofabrication on nano photoelectron device, the completely oxidized thin metal film such as titanium film by Atomic Force microscope (AFM) tip induced oxidation method has been used to make various nano electric devices. It is more and more important to study the process mechanism for improving the operational stability and reliability of such nano devices. In this paper, the mechanism of AFM tip induced oxidation is analyzed with several aspects. According to the experimental results of AFM tip induced oxidation of titanium under various voltage biases and scanning speeds, we find that the height of the titanium oxidation is linear with the voltage bias and with the negative log of the scanning speed. Based on the formers' theories, the mechanism and the theoretical modeling of AFM tip induced oxidation are improved. By setting the proper conditions such as voltage bias of 8V and scanning speed of 0.1 μm/s, good nanofabrication results with AFM oxidation of titanium are got and the oxide lines are with good aspect ratio and good continuity.
机译:随着纳米加工在纳米光电子器件上的发展和应用,通过原子力显微镜(AFM)尖端诱导氧化法将完全氧化的金属薄膜如钛膜已用于制造各种纳米电子器件。研究提高这种纳米器件的操作稳定性和可靠性的工艺机制变得越来越重要。本文从几个方面分析了原子力显微镜针尖诱导氧化的机理。根据原子力显微镜针尖在不同的电压偏置和扫描速度下诱导钛氧化的实验结果,我们发现钛的氧化高度与电压偏置成线性关系,并且与扫描速度的负对数成线性关系。基于前人的理论,改进了原子力显微镜针尖诱导氧化的机理和理论模型。通过设置适当的条件,例如8V的电压偏置和0.1μm/ s的扫描速度,钛的AFM氧化可获得良好的纳米加工结果,并且氧化线具有良好的长宽比和良好的连续性。

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