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生物分子模板在金属纳米线制备中的应用。

Use of biomolecular templates for the fabrication of metal nanowires.

作者信息

Gazit Ehud

机构信息

Department of Molecular Microbiology and Biotechnology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Israel.

出版信息

FEBS J. 2007 Jan;274(2):317-22. doi: 10.1111/j.1742-4658.2006.05605.x. Epub 2006 Dec 20.

Abstract

The nano-scale spatial organization of metallic and other inorganic materials into 1D objects is a key task in nanotechnology. Nano-scale fibers and tubes are very useful templates for such organization because of their inherent 1D organization. Fibrillar biological molecules and biomolecular assemblies are excellent physical supports on which to organize the inorganic material. Furthermore, these biological assemblies can facilitate high-order organization and specific orientation of inorganic structures by their utilization of highly specific biological recognition properties. In this minireview, I will describe the use of biomolecules and biomolecular assemblies, including DNA, proteins, peptides, and even viral particles, which are excellent templates for 1D organization of inorganic materials into wires. This ranges from simple attempts at electroless deposition on inert biological templates to the advanced use of structural motifs and specific protein-DNA interactions for nano-bio-lithography as well as the fabrication of multilayer organic and inorganic composites. The potential technological applications of these hybrid biological-inorganic assemblies will be discussed.

摘要

将金属及其他无机材料在纳米尺度上组织成一维物体是纳米技术中的一项关键任务。纳米级纤维和管子因其固有的一维结构,是实现这种组织的非常有用的模板。纤维状生物分子和生物分子组装体是用于组织无机材料的出色物理支撑物。此外,这些生物组装体可通过利用高度特异性的生物识别特性,促进无机结构的高阶组织和特定取向。在本综述中,我将描述生物分子和生物分子组装体的应用,包括DNA、蛋白质、肽,甚至病毒颗粒,它们是将无机材料一维组织成导线的出色模板。这涵盖了从在惰性生物模板上进行简单的化学镀尝试,到利用结构基序和特定的蛋白质-DNA相互作用进行纳米生物光刻以及制造多层有机和无机复合材料等先进应用。还将讨论这些生物-无机混合组装体的潜在技术应用。

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