| Literature DB >> 29039354 |
Yalei Zhao, Wenlong Zhang, Bin Yang, Jingquan Liu, Xiang Chen, Xiaolin Wang, Chunsheng Yang.
Abstract
Gas sensing for hydrothermal synthesized SnO2-based gas sensors can be enhanced in three ways: structural improvement, composition optimization, and processing improvement. There have been zero-dimensional, one-dimensional, and three-dimensional structures reported in the literature. Controllable synthesis of different structures has been deployed to increase specific surface area. Change of composition would intensively tailor the SnO2 structure, which affected the gas-sensing performance. Furthermore, doping and compounding methods have been adopted to promote gas-sensing performance by adjusting surface conditions of SnO2 crystals and constructing heterojunctions. As for processing area, it is very important to find the optimal reaction time and temperature. In this paper, a gas-solid reaction rate constant was proposed to evaluate gas-sensing properties and find an excellent hydrothermal synthesized SnO2-based gas sensor.Entities:
Year: 2017 PMID: 29039354 DOI: 10.1088/1361-6528/aa86a2
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874