A review on chemiresistive room temperature gas sensors based on metal oxide nanostructures, graphene and 2D transition metal dichalcogenides

被引:0
|
作者
Nirav Joshi
Takeshi Hayasaka
Yumeng Liu
Huiliang Liu
Osvaldo N. Oliveira
Liwei Lin
机构
[1] University of California,Department of Mechanical Engineering
[2] University of São Paulo,São Carlos Institute of Physics
[3] Tsinghua-Berkeley Shenzhen Institute,undefined
来源
Microchimica Acta | 2018年 / 185卷
关键词
Nanosensors, 2D Materials; Thin Films; Selectivity; Sensitivity; Surface reaction; Gas sensors; Semiconductors; Chemiresistive gas sensors;
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学科分类号
摘要
Room-temperature (RT) gas sensing is desirable for battery-powered or self-powered instrumentation that can monitor emissions associated with pollution and industrial processes. This review (with 171 references) discusses recent advances in three types of porous nanostructures that have shown remarkable potential for RT gas sensing. The first group comprises hierarchical oxide nanostructures (mainly oxides of Sn, Ni, Zn, W, In, La, Fe, Co). The second group comprises graphene and its derivatives (graphene, graphene oxides, reduced graphene oxides, and their composites with metal oxides and noble metals). The third group comprises 2D transition metal dichalcogenides (mainly sulfides of Mo, W, Sn, Ni, also in combination with metal oxides). They all have been found to enable RT sensing of gases such as NOx, NH3, H2, SO2, CO, and of vapors such as of acetone, formaldehyde or methanol. Attractive features also include high selectivity and sensitivity, long-term stability and affordable costs. Strengths and limitations of these materials are highlighted, and prospects with respect to the development of new materials to overcome existing limitations are discussed.
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