纳米线
成核
材料科学
纳米技术
纳米颗粒
脚手架
衣壳
基质(水族馆)
合成生物学
病毒
化学
生物信息学
生物
计算机科学
有机化学
病毒学
数据库
生态学
作者
Chuanbin Mao,Daniel J. Solis,Brian D. Reiss,Stephen T. Kottmann,Rozamond Y. Sweeney,Andrew Hayhurst,George Georgiou,Brent L. Iverson,Angela M. Belcher
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2004-01-09
卷期号:303 (5655): 213-217
被引量:960
标识
DOI:10.1126/science.1092740
摘要
We report a virus-based scaffold for the synthesis of single-crystal ZnS, CdS, and freestanding chemically ordered CoPt and FePt nanowires, with the means of modifying substrate specificity through standard biological methods. Peptides (selected through an evolutionary screening process) that exhibit control of composition, size, and phase during nanoparticle nucleation have been expressed on the highly ordered filamentous capsid of the M13 bacteriophage. The incorporation of specific, nucleating peptides into the generic scaffold of the M13 coat structure provides a viable template for the directed synthesis of semiconducting and magnetic materials. Removal of the viral template by means of annealing promoted oriented aggregation-based crystal growth, forming individual crystalline nanowires. The unique ability to interchange substrate-specific peptides into the linear self-assembled filamentous construct of the M13 virus introduces a material tunability that has not been seen in previous synthetic routes. Therefore, this system provides a genetic toolkit for growing and organizing nanowires from semiconducting and magnetic materials.
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