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Metal-organic framework-derived oxygen-rich vacancies and porous TiO2 nanotablets for hydrogen detection with high response at room temperature

delete2024-05-01
delete10
PRE
AI
张琳 (Lin Zhang)
J
Jianling Xiong
B
Baibo Ding
C
Canping Fan
刘桂武 (Guiwu Liu)
H
H. J. Li *
DOI:10.1016/j.snb.2024.135471delete
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Abstract

Abstract

En 中文
In this work, porous TiO2 nanotablets with rich oxygen vacancies were synthesized by thermal decomposition of MIL -125, and their hydrogen gas sensing performance has been investigated for the first time. In comparison with TiO2 microparticles prepared by the traditional sol-gel method, the metal-organic framework-derived porous TiO2 nanotablets have a larger specific surface area and oxygen vacancies, which can significantly boost hydrogen at room temperature. Furthermore, the gas-sensing mechanism of the MOFs-derived TiO2 nanotablets is well unraveled by experimental results and density functional theory (DFT) calculations. This study would provide a new perspective on TiO2-based nanomaterials for hydrogen detecting at room temperature.
Keywords:
MOF
TiO2
Hydrogen
Gas sensor
Oxygen vacancies
DFT

Journal

Sensors and Actuators B-Chemical cover
Sensors and Actuators B-Chemical
IF:
7.7
Papers:
3.3W
Citations:
12.6W

Organization

J
Jiangsu University
Scholars:
4.0W
Papers: 2.8W
Citations: 5.5W
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