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Morphological control and assembly of zinc oxide using a biotemplate.

机译:使用生物模板对氧化锌进行形态控制和组装。

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摘要

Zinc oxide is a wide band gap material that has significant applications in photovoltaics, piezoelectrics and optoelectronics. Traditionally, ZnO has been synthesized using high temperatures and harsh reaction conditions. Recently, benign reaction conditions have been used to synthesize ZnO using amine and citrate additives. In this study, peptide phage display was performed to identify a peptide, termed Z1, that binds to and directs the growth of ZnO hexagonal nanocrystals. By altering the concentration of Z1 peptide, the ZnO nanocrystal morphology can be tailored. Additionally, Z1 peptide was used to direct the growth of ZnO structures on free-standing silk films. The results presented here demonstrate the utility of peptides in controlling the structure and deposition of ZnO.
机译:氧化锌是一种宽带隙材料,在光伏,压电和光​​电子领域具有重要的应用。传统上,ZnO是使用高温和苛刻的反应条件合成的。近来,已经使用良性反应条件使用胺和柠檬酸盐添加剂来合成ZnO。在这项研究中,进行了肽噬菌体展示以鉴定称为Z1的肽,该肽与ZnO六角形纳米晶体结合并指导其生长。通过改变Z1肽的浓度,可以定制ZnO纳米晶体的形态。另外,Z1肽用于指导ZnO结构在独立丝膜上的生长。本文介绍的结果证明了肽在控制ZnO的结构和沉积中的实用性。

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