Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products

MoS2 has been considered a potential novel material in various fields due to its large specific surface area, high carrier mobility, and tunable electronic properties. However, with the increasing demand for sensor substrates, different strategies have been made to achieve its high performance, usua...

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Main Authors: Guochao Qian, Qingjun Peng, Haozhou Wang, Shan Wang, Weiju Dai
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-11-01
Series:Frontiers in Materials
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmats.2020.580245/full
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author Guochao Qian
Qingjun Peng
Haozhou Wang
Shan Wang
Weiju Dai
author_facet Guochao Qian
Qingjun Peng
Haozhou Wang
Shan Wang
Weiju Dai
author_sort Guochao Qian
collection DOAJ
description MoS2 has been considered a potential novel material in various fields due to its large specific surface area, high carrier mobility, and tunable electronic properties. However, with the increasing demand for sensor substrates, different strategies have been made to achieve its high performance, usually by adopting the method of controlling the microstructure. SF6 gas-insulated electrical equipment has gained considerable attention in electric systems with the advantages of small volume, high security, strong breaking performance, and high-pressure fracture tolerance. Nevertheless, in the process of equipment operation, the SF6 gas will occur inevitably decompose due to partial discharge, resulting in the deterioration of the insulation performance of the equipment. Therefore, detecting SF6 decomposition products is significant for the safe and stable operation of power systems. In this mini review, we start from the synthesis of various MoS2 morphological structures. Then, the beneficial characteristics of the unique synthesized nanostructures at present are analyzed. Besides, we focus on the gas-sensing mechanisms and applications of MoS2-based sensors for detecting SF6 decomposition products. Finally, the future development in this field is proposed.
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spelling doaj.art-a481c55379e24b27b10cadd08c7738122022-12-22T01:12:37ZengFrontiers Media S.A.Frontiers in Materials2296-80162020-11-01710.3389/fmats.2020.580245580245Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing ProductsGuochao QianQingjun PengHaozhou WangShan WangWeiju DaiMoS2 has been considered a potential novel material in various fields due to its large specific surface area, high carrier mobility, and tunable electronic properties. However, with the increasing demand for sensor substrates, different strategies have been made to achieve its high performance, usually by adopting the method of controlling the microstructure. SF6 gas-insulated electrical equipment has gained considerable attention in electric systems with the advantages of small volume, high security, strong breaking performance, and high-pressure fracture tolerance. Nevertheless, in the process of equipment operation, the SF6 gas will occur inevitably decompose due to partial discharge, resulting in the deterioration of the insulation performance of the equipment. Therefore, detecting SF6 decomposition products is significant for the safe and stable operation of power systems. In this mini review, we start from the synthesis of various MoS2 morphological structures. Then, the beneficial characteristics of the unique synthesized nanostructures at present are analyzed. Besides, we focus on the gas-sensing mechanisms and applications of MoS2-based sensors for detecting SF6 decomposition products. Finally, the future development in this field is proposed.https://www.frontiersin.org/articles/10.3389/fmats.2020.580245/fullmolybdenum disulfidemorphological characteristicsSF6 decomposing productssensing applicationgas insulated switchgear
spellingShingle Guochao Qian
Qingjun Peng
Haozhou Wang
Shan Wang
Weiju Dai
Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
Frontiers in Materials
molybdenum disulfide
morphological characteristics
SF6 decomposing products
sensing application
gas insulated switchgear
title Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
title_full Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
title_fullStr Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
title_full_unstemmed Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
title_short Morphological Characteristics of Molybdenum Disulfide and Current Application on Detecting SF6 Decomposing Products
title_sort morphological characteristics of molybdenum disulfide and current application on detecting sf6 decomposing products
topic molybdenum disulfide
morphological characteristics
SF6 decomposing products
sensing application
gas insulated switchgear
url https://www.frontiersin.org/articles/10.3389/fmats.2020.580245/full
work_keys_str_mv AT guochaoqian morphologicalcharacteristicsofmolybdenumdisulfideandcurrentapplicationondetectingsf6decomposingproducts
AT qingjunpeng morphologicalcharacteristicsofmolybdenumdisulfideandcurrentapplicationondetectingsf6decomposingproducts
AT haozhouwang morphologicalcharacteristicsofmolybdenumdisulfideandcurrentapplicationondetectingsf6decomposingproducts
AT shanwang morphologicalcharacteristicsofmolybdenumdisulfideandcurrentapplicationondetectingsf6decomposingproducts
AT weijudai morphologicalcharacteristicsofmolybdenumdisulfideandcurrentapplicationondetectingsf6decomposingproducts