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金属纳米粒子和 DNA 共功能化单壁碳纳米管气体传感器。

Metal nanoparticles and DNA co-functionalized single-walled carbon nanotube gas sensors.

机构信息

Department of Chemical and Environmental Engineering, University of California-Riverside, Riverside, CA 92521, USA.

出版信息

Nanotechnology. 2013 Dec 20;24(50):505502. doi: 10.1088/0957-4484/24/50/505502. Epub 2013 Nov 27.

Abstract

Metal/DNA/SWNT hybrid nanostructure-based gas sensor arrays were fabricated by means of ink jet printing of metal ion chelated DNA/SWNTs on microfabricated electrodes, followed by electroless deposition to reduce metal ions to metal. DNA served as a dispersing agent to effectively solubilize pristine SWNTs in water and as metal ion chelating centers for the formation of nanoparticles. Noble metals including palladium, platinum, and gold were used because the high binding affinity toward specific analytes enhances the selectivity and sensitivity. The sensitivity and selectivity of the gas sensors toward various gases such as H2, H2S, NH3, and NO2 were determined at room temperature. Sensing results indicated the enhancement of the sensitivity and selectivity toward certain analytes by functionalizing with different metal nanoparticles (e.g., Pd/DNA/SWNTs for H2 and H2S). The combined responses give a unique pattern or signature for each analyte by which the system can identify and quantify an individual gas.

摘要

基于金属/DNA/单壁碳纳米管(SWNT)杂化纳米结构的气体传感器阵列是通过喷墨打印金属离子螯合 DNA/SWNTs 在微制造电极上制造的,然后进行无电沉积以将金属离子还原为金属。DNA 用作分散剂,可有效将原始 SWNTs 在水中溶解,并作为金属离子螯合中心,用于形成纳米颗粒。使用了包括钯、铂和金在内的贵金属,因为它们对特定分析物的高结合亲和力提高了选择性和灵敏度。在室温下测定了气体传感器对各种气体(例如 H2、H2S、NH3 和 NO2)的灵敏度和选择性。传感结果表明,通过用不同的金属纳米颗粒(例如 Pd/DNA/SWNTs 对 H2 和 H2S)功能化,可以提高对某些分析物的灵敏度和选择性。通过组合响应,为每个分析物提供独特的模式或特征,系统可以识别和量化单个气体。

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