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肽纳米结构修饰电极的特性及其在环境超灵敏监测中的应用。

Characterization of peptide-nanostructure-modified electrodes and their application for ultrasensitive environmental monitoring.

机构信息

Department of Molecular Microbiology and Biotechnology, George S. Wise Faculty of Life Sciences, Tel-Aviv University, 69978 Tel-Aviv, Israel.

出版信息

Small. 2010 Apr 9;6(7):825-31. doi: 10.1002/smll.200902186.

Abstract

Dense arrays of self-assembled nanostructures are highly important for the fabrication of high-performance sensors of large surface area. The organized incorporation of novel biocompatible organic nanostructures into extremely sensitive amperometric biosensors is demonstrated. Peptide nanoforest biosensors for phenol detection were 17-fold more sensitive than uncoated electrode and more sensitive than those modified with carbon nanotubes or combined coating. The high sensitivity reported, together with the biocompatibility and the ability to chemically and biologically modify these elements, may provide a novel platform for biosensors design and fabrication for environmental monitoring, homeland security, and other applications.

摘要

自组装纳米结构的密集阵列对于制造具有大面积的高性能传感器非常重要。本文展示了将新型生物相容性有机纳米结构有序地纳入到极其灵敏的安培生物传感器中的方法。用于检测苯酚的肽纳米林生物传感器比未涂层电极灵敏 17 倍,比用碳纳米管或组合涂层修饰的电极灵敏。所报道的高灵敏度,再加上这些元件的生物相容性和化学及生物修饰能力,可为生物传感器的设计和制造提供一个新的平台,用于环境监测、国土安全等应用。

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