4.7 Article

Remarkably enhanced H2 response and detection range in Nb doped rutile/anatase heterophase junction TiO2 thin film hydrogen sensors

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 301, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2019.127143

关键词

Hydrogen sensor; Nb doped TiO2; Heterophase junction; Charged oxygen ions; Schottky barrier

资金

  1. National Science Foundation of China [11374091, 11574076, 11674087, 11874144, 51602094]
  2. Overseas Expertise Introduction Center for Discipline Innovation (111 center) [D18025]
  3. Wuhan Science and Technology Bureau [2018010401011268]
  4. Science and Technology Department of Hubei Province [2018CFA026]

向作者/读者索取更多资源

Hydrogen sensors combining wide detection range and high response, that can operate at room temperature, are urgently demanded for monitoring different concentrations of hydrogen on a single device. Here, a novel onestep hydrothermal method is reported to construct Nb doped rutile/anatase TiO2 heterophase junctions for a highly sensitive H-2 sensor. The Nb concentration in the solvent plays an important role for the heterophase juncton self-assemble, and the reaction time determines the surface morphology giving either a ruffle TiO2 nanorod decorated anatase form, or a Nb doped rutile/anatase TiO2 bi-layer structure. An inverse dependence of the detectivity on H-2 concentration is obtained as theoretically predicted but previously not experimentally verified for the high concentration region at low temperatures. The H-2 concentration detection range is remarkably expanded, extending from 1 ppm to 12000 ppm for nanorod decorated film. The H-2 response at 1 ppm is significantly enhanced to 22.5%, and reaches 98.9% in 8000 ppm H-2 for the bilayer structure. The remarkablely extended detection range is the result of the massive accumulation of reactive pre-absorbed O-2(-) on the surface due to the Nb doping, and the significantly enhanced response at room temperature results from the joint contributions of pre-absorbed O-2(-), film compactness and the heterophase junction. Moreover, Nb doped rutile/anatase TiO2 heterophase juncton films show high stability and humidity resistance for hydrogen sensing.

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