[1] 陈川、孙亮、刘昕,等.传感器阵列对变压器油中溶解故障气体H2和C2H2的检测研究[J].化工新型材料,2020,48(11):273-276.
[2] Zaher Al Barakeh,Philippe Breuil,Nathalie Redon,et al.Development of a normalized multi-sensors system for low cost on-line atmospheric pollution detection[J].Sensors and Actuators B:Chemical,2017,241:1235-1243.
[3] Stéphanie Schon,Jonathan Theodore S,Andreas T G.Versatile breath sampler for online gas sensor analysis[J].Sensors and Actuators B:Chemical,2018,273:1780-1785.
[4] Bandara K N D,Jayathilaka K M D C,Dissanayake D P,et al.Surface engineering of electrodeposited cuprous oxide (Cu2O) thin films:effect on hydrophobicity and LP gas sensing[J].Applied Surface Science,2021,561:150020.
[5] 潘小青,刘庆成.气体传感器及其发展[J].东华理工学院学报,2004,1:89-93.
[6] Ji Haocheng,Zeng Wen,Li Yanqiong.Gas sensing mechanisms of metal oxide semiconductors:a focus review[J].Nanoscale,2019,11:22664-22684.
[7] Liang Xifeng,Liu Lihao.Design on the amplifier circuit of metal-oxide semiconductor gas-sensitive sensor[J].Applied Mechanics and Materials,2012,220-223:1939-1942.
[8] Lin Tingting,Lv Xin,Hu Zhineng,et al.Semiconductor metal oxides as chemoresistive sensors for detecting volatile organic compounds[J].Sensors,2019,19(2):233.
[9] Anuj Kumar,Kuang Yun,Liang Zheng,et al.Microwave chemistry,recent advancements,and eco-friendly microwave-assisted synthesis of nanoarchitectures and their applications:a review[J].Materials Today Nano,2020,11:100076.
[10] Che Yanhan,Feng Guoqing,Sun Tianjun,et al.Excellent gas-sensitive properties towards acetone of In2O3 nanowires prepared by electrospinning[J].Colloid and Interface Science Communications,2021,45:100508.
[11] Wang Qingji,Kou Xueying,Liu Chang,et al.Hydrothermal synthesis of hierarchical CoO/SnO2 nanostructures for ethanol gas sensor[J].Journal of Colloid and Interface Science,2018,513:760-766.
[12] Luca Francioso,Angiola Forleo,Simonetta Capone,et al.Nanostructured In2O3-SnO2 sol-gel thin film as material for NO2 detection[J].Sensors and Actuators B:Chemical,2006,114(2):646-655.
[13] Zhang Shaohui,Liu Zeng,Zhang Long,et al.Planar rose-like ZnO/honeycombed gallium nitride heterojunction prepared by CVD towards enhanced H2 sensing without precious metal modification[J].Vacuum,2021,190:110312.
[14] Idalia Bilecka,Markus Niederberger.Microwave chemistry for inorganic nanomaterials synthesis[J].Nanoscale,2010,2:1358-1374.
[15] Komarneni S,Roy R,Li Q H.Microwave-hydrothermal synthesis of ceramic powders[J].Materials Research Bulletin,1992,27(12):1393-1405.
[16] 何赐全,杜海燕,孙家跃.无机纳米材料的水热合成及其衍生方法[J].化工新型材料,2007,35(10):3.
[17] 付敏,江志东,马紫峰,等.微波水热法合成钛酸钠盐纳米管[J].无机材料学报,2005,20(4):808-814.
[18] Hu X,Yu J,Gong J,et al.α-Fe2O3 nanorings prepared by a microwave-assisted hydrothermal process and their sensing properties[J].Advanced Materials,2007,19:2324-2329.
[19] Chen Mei,Wang Zhihua,Han Dongmei,et al.Porous ZnO polygonal nanoflakes:synthesis,use in high-sensitivity NO2 gas sensor,and proposed mechanism of gas sensing[J].The Journal of Physical Chemistry C,2011,115(26):12763-12773.
[20] Noor J Ridha,Firas K Mohamad Alosfur,Mohammad Hafizuddin Haji Jumali,et al.Effect of Al thickness on the structural and ethanol vapor sensing performance of ZnO porous nanostructures prepared by microwave-assisted hydrothermal method[J].Nanotechnology,2020,31:145502.
[21] Hassan J J,Mahdi M A,Chin C W,et al.Room-temperature hydrogen gas sensor with ZnO nanorod arrays grown on a quartz substrate[J].Physica E:Low-Dimensional Systems and Nanostructures,2012,46:254-258.
[22] Hassan J J,Mahdi M A,Chin C W,et al.Room temperature hydrogen gas sensor based on ZnO nanorod arrays grown on a SiO2/Si substrate via a microwave-assisted chemical solution method[J].Journal of Alloys and Compounds,2013,546:107-111.
[23] Faheem Ahmed,Nishat Arshi,Anwar M S,et al.Facile growth of ZnO nanorod arrays by a microwave-assisted solution method for oxygen gas sensing[J].Thin Solid Films,2013,547:168-172.
[24] Qurashi A,Tabet N,Faiz M,et al.Ultra-fast microwave synthesis of ZnO nanowires and their dynamic response toward hydrogen gas[J].Nanoscale Research Letters,2009,4:948.
[25] Faiz M,Ahsanulhaq Qurashi,Tabet N.Rapid microwave assisted synthesis of Zn1-xInxO heterostructured nanotetra-pods and their hydrogen sensing properties[J].Vacuum,2016,130:159-164.
[26] Liu Y J,Jiang Q P,Li Y H,et al.The microwave-assisted synthesis and gas sensing properties for ethanol of SnO2 nanomaterials[J].Advanced Materials Research,2013,721:237-240.
[27] Tan Wenhu,Tan Jianfeng,Fan Lvrong,et al.Fe2O3-loaded NiO nanosheets for fast response/recovery and high response gas sensor[J].Sensors and Actuators B:Chemical,2018,256:282-293.
[28] He Jing,Jiao Wanli,Zhang Lei,et al.Preparation and gas-sensing performance of SnO2/NiO composite oxide synthesized by microwave-assisted liquid phase deposition[J].Particuology,2018,41:118-125.
[29] Meechai Thepnurat,Torranin Chairuangsri,Niyom Hongsith,et al.Realization of interlinked ZnO tetrapod networks for UV sensor and room-temperature gas sensor[J].ACS Applied Materials & Interfaces,2015,7(43):24177-24184.
[30] Phadungdhitidhada S,Ruankham P,Gardchareon A,et al.Rapid synthesis of tin oxide nanostructures by microwave-assisted thermal oxidation for sensor applications[J].Advances in Natural Sciences:Nanoscience and Nanotechnology,2017,8:35004.
[31] Vasan Yarangsi,Pipat Ruankham,Atcharawon Gardchareon,et al.CuOx/SnO2 nanostructures by microwave-assisted thermal oxidation for ethanol sensing[J].Journal of Physics:Conference Series,2018,1144:012151.
[32] Jain S R,Adiga K C,Pai Verneker V R.A new approach to thermochemical calculations of condensed fuel-oxidizer mixtures[J].Combustion and Flame,1981,40:71-79.
[33] Sajjad Habibzadeh,Abbas Ali Khodadadi,Yadollah Mortazavi.CO and ethanol dual selective sensor of Sm2O3-doped SnO2 nanoparticles synthesized by microwave-induced combustion[J].Sensors and Actuators B:Chemical,2010,144(1):131-138.
[34] Prashant Chaudhari,Acharya S A,Darunkar S S,et al.Microwave assisted combustion synthesis of nanocrystalline CoFe2O4 for LPG sensing[C]//AIP Conference Proceedings.New York:AIP Publishing,2015.
[35] Balaji G G,Nanasaheb M S,Siddheshwar D R,et al.Porous metal-graphene oxide nanocomposite sensors with high ammonia detectability[J].Journal of Colloid and Interface Science,2021,589:401-410.