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实现具有 Pt 功能化 SnO2-ZnO 核壳纳米线的 ppb 级甲苯传感性能。

Realization of ppb-Scale Toluene-Sensing Abilities with Pt-Functionalized SnO2-ZnO Core-Shell Nanowires.

机构信息

Department of Materials Science and Engineering, Inha University, Incheon 402-751, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2015 Aug 12;7(31):17199-208. doi: 10.1021/acsami.5b04066. Epub 2015 Aug 3.

Abstract

In this paper, we report the exceptional toluene-sensing properties of SnO2-ZnO core-shell nanowires (C-S NWs) functionalized with Pt nanoparticles (NPs). A response of 279 was obtained for 100 ppb of toluene, and to the best of our knowledge, this is the highest toluene response to be reported in the literature. The SnO2-ZnO C-S NWs were synthesized via a two-step process: First, a networked core of SnO2 nanowires was prepared via vapor-liquid-solid growth on the patterned electrode layer. Second, the ZnO shell layers were created with atomic layer deposition. The electron-depleted region of the shell layer was further expanded by attaching Pt NPs, which were synthesized using γ-ray radiolysis, to the shell layer. In addition to the expansion of the electron-depleted region, the catalytic effect of Pt on toluene greatly improved the toluene-sensing performance of the C-S NWs. The extraordinary toluene-sensing ability of the Pt-functionalized C-S NWs means they have great potential as the sensing platform in exhaled breath sensors to detect ppb-scale toluene.

摘要

本文报道了负载 Pt 纳米粒子(NPs)的 SnO2-ZnO 核壳纳米线(C-S NWs)对甲苯具有优异的传感性能。在 100ppb 的甲苯浓度下,获得了 279 的响应,据我们所知,这是文献中报道的最高的甲苯响应。SnO2-ZnO C-S NWs 通过两步法合成:首先,通过在图案化电极层上的气-液-固生长制备 SnO2 纳米线的网络状核。其次,利用原子层沉积在核上生成 ZnO 壳层。通过将γ射线辐射合成的 Pt NPs 附着到壳层上,进一步扩展了壳层的电子耗尽区。除了扩展电子耗尽区外,Pt 对甲苯的催化作用极大地提高了 C-S NWs 对甲苯的传感性能。Pt 功能化的 C-S NWs 具有非凡的甲苯传感能力,这意味着它们有很大的潜力作为呼气传感器中的传感平台,用于检测 ppb 级别的甲苯。

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