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通过压痕开裂实现原位实时手动纳米制造。

Manual, In situ, Real-Time Nanofabrication using Cracking through Indentation.

作者信息

Nam Koo Hyun, Suh Young D, Yeo Junyeob, Woo Deokha

机构信息

Department of Physics, Kyunghee University, Seoul 02447, Korea.

Sensor System Research Center, Korea Institute of Science and Techonology, Seoul 02792, Korea.

出版信息

Sci Rep. 2016 Jan 4;6:18892. doi: 10.1038/srep18892.

Abstract

Nanofabrication has seen an increasing demand for applications in many fields of science and technology, but its production still requires relatively difficult, time-consuming, and expensive processes. Here we report a simple but very effective one dimensional (1D) nano-patterning technology that suggests a new nanofabrication method. This new technique involves the control of naturally propagating cracks initiated through simple, manually generated indentation, obviating the necessity of complicated equipment and elaborate experimental environments such as those that employ clean rooms, high vacuums, and the fastidious maintenance of processing temperatures. The channel fabricated with this technique can be as narrow as 10 nm with unlimited length and very high cross-sectional aspect ratio, an accomplishment difficult even for a state-of-the-art technology such as e-beam lithography. More interestingly, the fabrication speed can be controlled and achieved to as little as several hundred micrometers per second. Along with the simplicity and real-time fabrication capability of the technique, this tunable fabrication speed makes the method introduced here the authentic nanofabrication for in situ experiments.

摘要

纳米制造在许多科学技术领域的应用需求日益增长,但其生产仍需要相对困难、耗时且昂贵的工艺。在此,我们报告一种简单但非常有效的一维(1D)纳米图案化技术,它提出了一种新的纳米制造方法。这项新技术涉及通过简单的手动压痕来控制自然扩展的裂纹,无需复杂设备和精心设计的实验环境,如使用洁净室、高真空以及精确控制加工温度的环境。用这种技术制造的通道宽度可窄至10纳米,长度不受限制,且具有非常高的横截面纵横比,即使对于电子束光刻等先进技术来说,这也是一项难以实现的成就。更有趣的是,制造速度可以控制,最低可达每秒几百微米。结合该技术的简单性和实时制造能力,这种可调的制造速度使本文介绍的方法成为原位实验的真正纳米制造方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75e3/4698748/c9d7f79fc4f4/srep18892-f1.jpg

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