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多孔氧化亚铜薄膜:简便的溶液沉积法制备及其用于亚硝酸根传感。

Porous cuprite films: facile solution deposition and their application for nitrite sensing.

机构信息

Beijing University of Aeronautics and Astronautics, Beijing, 100083, China.

出版信息

Analyst. 2010 Aug;135(8):2106-10. doi: 10.1039/c000086h. Epub 2010 Jun 8.

Abstract

Nanostructured porous cuprite (NPC) films were first prepared by a facile wet chemical process. The resulted cuprite film was then characterized by Raman spectrum, scanning electron microscopy (SEM), transmission electron microscopy (TEM), as well as static contact angle experiment. Electrochemical catalytic performance of the NPC film was also tested. The low detection limit was estimated to be 6.3 microM (S/N = 3), and the time required to reach 95% of the steady-state current was shorter than 10 s after the addition of nitrite, which demonstrated that the as deposited nanostructured cuprite film has both high catalytic sensitivity and fast current response in nitrite sensing. The self-supporting porous nanostructure and their good contact with the conducting substrate resulted in large specific area, structure stability and efficient transportation. The good electrocatalytic performance shows that the nanoparticle-assembled thin films with nanoporous structure and nanocrystallites have potential applications as electrocatalysis platforms in biosensors.

摘要

首先通过简单的湿化学法制备了纳米多孔氧化亚铜 (NPC) 薄膜。然后通过拉曼光谱、扫描电子显微镜 (SEM)、透射电子显微镜 (TEM) 以及静态接触角实验对所得到的氧化亚铜薄膜进行了表征。还测试了 NPC 薄膜的电化学催化性能。检测限估计低至 6.3 microM(S/N = 3),加入亚硝酸盐后达到稳态电流的 95%所需的时间少于 10 s,这表明沉积的纳米结构氧化亚铜薄膜在亚硝酸盐传感方面具有高催化灵敏度和快速电流响应。自支撑多孔纳米结构及其与导电基底的良好接触导致了大的比表面积、结构稳定性和有效的传输。良好的电催化性能表明,具有纳米多孔结构和纳米晶的纳米颗粒组装薄膜作为生物传感器中的电化学生物催化平台具有潜在应用。

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