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高乙醇灵敏度的钯/二氧化钛纳米带表面异质结构由增大的表面积和纳米肖特基结主导。

High ethanol sensitivity of palladium/TiO2 nanobelt surface heterostructures dominated by enlarged surface area and nano-Schottky junctions.

机构信息

State Key Laboratory of Crystal Materials, Center of Bio & Micro/Nano Functional Materials, Shandong University, Jinan 250100, PR China.

出版信息

J Colloid Interface Sci. 2012 Dec 15;388(1):144-50. doi: 10.1016/j.jcis.2012.08.034. Epub 2012 Aug 28.

Abstract

TiO(2) nanobelts were prepared by the hydrothermal growth method. The surface of the nanobelts was coarsened by selective acid corrosion and functionalized with Pd catalyst particles. Three nanobelt samples (TiO(2) nanobelts, surface-coarsened TiO(2) nanobelts and Pd nanoparticle/TiO(2) nanobelt surface heterostructures) were configured as gas sensors and their sensing ability was measured. Both the surface-coarsened nanobelts and the Pd nanoparticle-decorated TiO(2) nanobelts exhibited dramatically improved sensitivity to ethanol vapor. Pd nanoparticle-decorated TiO(2) nanobelts with surface heterostructures exhibited the best sensitivity, selectivity, working temperature, response/recovery time, and reproducibility. The excellent ethanol sensing performance is attributed to the large surface area and enhancement by Schottky barrier-type junctions between the Pd nanoparticles and TiO(2) nanobelts.

摘要

采用水热生长法制备了 TiO(2)纳米带。纳米带的表面通过选择性酸腐蚀进行粗化,并功能化 Pd 催化剂颗粒。将三个纳米带样品(TiO(2)纳米带、表面粗化的 TiO(2)纳米带和 Pd 纳米颗粒/TiO(2)纳米带表面异质结构)配置为气体传感器,并测量其传感能力。表面粗化的纳米带和 Pd 纳米颗粒修饰的 TiO(2)纳米带都表现出对乙醇蒸气的灵敏度显著提高。具有表面异质结构的 Pd 纳米颗粒修饰的 TiO(2)纳米带表现出最佳的灵敏度、选择性、工作温度、响应/恢复时间和可重复性。优异的乙醇传感性能归因于 Pd 纳米颗粒与 TiO(2)纳米带之间的肖特基势垒型结增强和大的比表面积。

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