Light Activation of Nanocrystalline Metal Oxides for Gas Sensing: Principles, Achievements, Challenges

被引:55
作者
Chizhov, Artem [1 ]
Rumyantseva, Marina [1 ]
Gaskov, Alexander [1 ]
机构
[1] Moscow MV Lomonosov State Univ, Chem Dept, Moscow 119991, Russia
基金
俄罗斯科学基金会;
关键词
semiconductor gas sensors; light activation; nanocrystalline metal oxides; sensitization; organic dyes; quantum dots; plasmon nanoparticles; ENHANCED PHOTOELECTRIC RESPONSES; PULSED UV-LIGHT; ROOM-TEMPERATURE; VISIBLE-LIGHT; ZINC-OXIDE; QUANTUM DOTS; THIN-FILMS; NITROGEN-DIOXIDE; ZNO NANORODS; INDIUM OXIDE;
D O I
10.3390/nano11040892
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The review deals with issues related to the principle of operation of resistive semiconductor gas sensors and the use of light activation instead of thermal heating when detecting gases. Information on the photoelectric and optical properties of nanocrystalline oxides SnO2, ZnO, In2O3, and WO3, which are the most widely used sensitive materials for semiconductor gas sensors, is presented. The activation of the gas sensitivity of semiconductor materials by both UV and visible light is considered. When activated by UV light, the typical approaches for creating materials are (i) the use of individual metal oxides, (ii) chemical modification with nanoparticles of noble metals and their oxides, (iii) and the creation of nanocomposite materials based on metal oxides. In the case of visible light activation, the approaches used to enhance the photo- and gas sensitivity of wide-gap metal oxides are (i) doping; (ii) spectral sensitization using dyes, narrow-gap semiconductor particles, and quantum dots; and (iii) addition of plasmon nanoparticles. Next, approaches to the description of the mechanism of the sensor response of semiconductor sensors under the action of light are considered.
引用
收藏
页数:32
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