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纳米科学如何转化为技术:自组装单分子层、电子束写入和碳纳米膜的案例。

How nanoscience translates into technology: the case of self-assembled monolayers, electron-beam writing, and carbon nanomembranes.

机构信息

Nanoscale Physics Research Laboratory, School of Physics and Astronomy, University of Birmingham, Birmingham B15 2TT, United Kingdom.

出版信息

ACS Nano. 2013 Aug 27;7(8):6416-21. doi: 10.1021/nn403955e. Epub 2013 Aug 14.

Abstract

One of the great quests in nanotechnology is to translate nanoprecision materials science into practical manufacturing processes. The paper by Angelova et al. in this issue of ACS Nano, which discusses the production of functional carbon-based membranes with a thickness of 0.5 to 3 nm, provides instructive insight into how researchers are pulling together complementary strands from a quarter century of nanoscience research to develop novel, hybrid processing schemes. In this Perspective, we reflect on the progress that is taking place in the two principal component technologies combined in this scheme, namely, (i) control of self-assembled monolayers, including their detailed atomic structures, and (ii) electron-induced manipulation and processing of molecular layers, as well as considering (iii) remaining challenges for thin membrane production in the future.

摘要

纳米技术的主要目标之一是将纳米精度材料科学转化为实际的制造工艺。本文介绍了 Angelova 等人的研究成果,他们讨论了具有 0.5 至 3nm 厚度的功能性碳基膜的生产,为研究人员如何将四分之一世纪的纳米科学研究中的互补线索整合在一起以开发新型混合处理方案提供了有益的见解。在这篇观点文章中,我们反思了在这个方案中结合的两个主要组成技术所取得的进展,即(i)控制自组装单层,包括其详细的原子结构,以及(ii)电子诱导的分子层的操纵和处理,同时还考虑了(iii)未来在生产薄型膜方面仍然存在的挑战。

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