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用于构建高灵敏度肼和亚硝酸盐传感器的分级结构金铂合金纳米链的简易合成方法。

Simple synthesis of hierarchical AuPt alloy nanochains for construction of highly sensitive hydrazine and nitrite sensors.

作者信息

Shi Ya-Cheng, Feng Jiu-Ju, Chen Sai-Sai, Tu Gao-Mei, Chen Jian-Rong, Wang Ai-Jun

机构信息

College of Geography and Environmental Science, College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, China.

College of Geography and Environmental Science, College of Chemistry and Life Science, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Jun 1;75:1317-1325. doi: 10.1016/j.msec.2017.03.041. Epub 2017 Mar 6.

Abstract

Herein, a single-step co-reduction aqueous route was designed for preparation of hierarchical AuPt alloy nanochains, firstly using amprolium hydrochloride as a new stabilizing agent and structure-director. The morphology, structure, composition, and size of the products were characterized by a series of technique. The growth mechanism of AuPt nanochains was discussed in details. The AuPt nanochains modified glassy carbon electrode showed the improved analytical performances for determination of nitrite and hydrazine. The linear ranges of nitrite are 0.5-366.4μM and 466.4-2666.4μM for the two segments, and the detection limit is 0.03μM (S/N=3). The linear ranges of hydrazine are 5.0-116.4μM and 166.4-2666.4μM for the two segments, along with the low detection limit of 0.26μM (S/N=3). The performances of AuPt nanochains were superior to those of individual Pt and Au nanoparticles. It is ascribed to the specific hierarchical structures and synergistic effects of the bimetals.

摘要

在此,设计了一种单步共还原水相路线来制备分级结构的金铂合金纳米链,首先使用盐酸氨丙啉作为新型稳定剂和结构导向剂。通过一系列技术对产物的形貌、结构、组成和尺寸进行了表征。详细讨论了金铂纳米链的生长机理。修饰玻碳电极的金铂纳米链在测定亚硝酸盐和肼时表现出改进的分析性能。亚硝酸盐的两个线性范围分别为0.5 - 366.4μM和466.4 - 2666.4μM,检测限为0.03μM(S/N = 3)。肼的两个线性范围分别为5.0 - 116.4μM和166.4 - 2666.4μM,检测限低至0.26μM(S/N = 3)。金铂纳米链的性能优于单个铂和金纳米颗粒。这归因于双金属的特定分级结构和协同效应。

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