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基于芳香三苯丙氨酸的分级肽自组装的生物纳球光刻技术。

Bionanosphere lithography via hierarchical peptide self-assembly of aromatic triphenylalanine.

机构信息

Soft Nanomaterials National Research Laboratory Department of Materials Science and Engineering KAIST, Daejeon 305-701, Republic of Korea.

出版信息

Small. 2010 Apr 23;6(8):945-51. doi: 10.1002/smll.200902050.

Abstract

A nanolithographic approach based on hierarchical peptide self-assembly is presented. An aromatic peptide of N-(t-Boc)-terminated triphenylalanine is designed from a structural motif for the beta-amyloid associated with Alzheimer's disease. This peptide adopts a turnlike conformation with three phenyl rings oriented outward, which mediate intermolecular pi-pi stacking interactions and eventually facilitate highly crystalline bionanosphere assembly with both thermal and chemical stability. The self-assembled bionanospheres spontaneously pack into a hexagonal monolayer at the evaporating solvent edge, constituting evaporation-induced hierarchical self-assembly. Metal nanoparticle arrays or embossed Si nanoposts could be successfully created from the hexagonal bionanosphere array masks in conjunction with a conventional metal-evaporation or etching process. Our approach represents a bionanofabrication concept that biomolecular self-assembly is hierarchically directed to establish a straightforward nanolithography compatible with conventional device-fabrication processes.

摘要

本文提出了一种基于分级肽自组装的纳米光刻方法。从与阿尔茨海默病相关的β-淀粉样蛋白的结构基序设计了一种 N-(叔丁氧羰基)-末端三苯丙氨酸的芳香肽。该肽采用类似转角的构象,三个苯环向外取向,介导分子间的π-π堆积相互作用,最终促进具有热和化学稳定性的高结晶生物纳米球组装。自组装的生物纳米球在蒸发溶剂边缘自发地组装成六方单层,构成蒸发诱导的分级自组装。通过结合常规的金属蒸发或刻蚀工艺,可以从六方生物纳米球阵列掩模中成功地制造出金属纳米粒子阵列或压印硅纳米柱。我们的方法代表了一种生物纳米制造概念,即生物分子自组装被分层指导以建立与传统器件制造工艺兼容的简单纳米光刻技术。

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