• Journal of Inorganic Materials
  • Vol. 36, Issue 9, 950 (2021)
Yuxing CHU1, Hairui LIU1、2, and Shuang YAN1、*
Author Affiliations
  • 11. School of Textile and Materials Engineering, Dalian Polytechnic University, Dalian 116034, China
  • 22. School of Materials Science and Engineering, Northeastern University, Shenyang 110819, China
  • show less
    DOI: 10.15541/jim20200675 Cite this Article
    Yuxing CHU, Hairui LIU, Shuang YAN. Preparation and Gas Sensing Properties of SnO2/NiO Composite Semiconductor Nanofibers [J]. Journal of Inorganic Materials, 2021, 36(9): 950 Copy Citation Text show less
    References

    [1] NOBORU YAMAZOE, KENGO SHIMANOE. Receptor function and response of semiconductor gas sensor. Journal of Sensors, 2009, 875704(2009).

    [2] N BARSAN, D KOZIEJ, U WEIMAR. Metal oxide-based gas sensor research: How to?. Sensors and Actuators B: Chemical, 121, 18-35(2007).

    [3] P MORAN-LAZARO J, S GUILLEN-LOPEZ E, F LOPEZ-URIAS et al. Synthesis of ZnMn2O4 nanoparticles by a microwave-assisted colloidal method and their evaluation as a gas sensor of propane and carbon monoxide. Sensors, 18, 701(2018).

    [4] JEONGSEOK LEE, SE-HYEONG LEE, SO-YOUNG BAK et al. Improved sensitivity of α-Fe2O3 nanoparticle-decorated ZnO nanowire gas sensor for CO. Sensors, 19, 1903(2019).

    [5] XU WANG, SIHAN LI, LILI XIE et al. Low-temperature and highly sensitivity H2S gas sensor based on ZnO/CuO composite derived from bimetal metal-organic frameworks. Ceramics International, 46, 15858-15866(2020).

    [6] G LEONARDI S, A MIRZAEI, A BONAVITA et al. A comparison of the ethanol sensing properties of alpha-iron oxide nanostructures prepared via the Sol-Gel and electrospinning techniques. Nanotechnology, 27, 075502(2016).

    [7] ALI MIRZAEI, SUNGHOON PARK, GUN-JOO SUN et al. Fe2O3/Co3O4 composite nanoparticle ethanol sensor. Journal of the Korean Physical Society, 69, 373-380(2016).

    [8] SEUNGBOK CHOI, MARYAM BONYANI, GUN-JOO SUN et al. Cr2O3 nanoparticle-functionalized WO3 nanorods for ethanol gas sensors. Applied Surface Science, 432, 241-249(2018).

    [9] XINYUAN ZHOU, YING WANG, JINXIAO WANG et al. Amplifying the signal of metal oxide gas sensors for low concentration gas detection. IEEE Sensors Journal, 17, 2841-2847(2017).

    [10] WEIYE HU. Vehicle alcohol detection system based on Internet of things technology. IOP Conference Series: Materials Science and Engineering, 452, 042156(2018).

    [11] BEE-YU WEI, MING-CHIH HSU, PI-GUEY SU et al. A novel SnO2 gas sensor doped with carbon nanotubes operating at room temperature. Sensors and Actuators B: Chemical, 101, 81-89(2004).

    [12] JAYPRAKSH SHARMA HEMLATA, DAMODHAR SONWANE NAYANA, BABURAO KONDAWAR SUBHASH. Electrospun SnO2/polyaniline composite nanofibers based low temperature hydrogen gas sensor. Fibers and Polymers, 16, 1527-1532(2015).

    [13] SOO-YEON CHO, HAE-WOOK YOO, YE KIM JU et al. High-resolution p-type metal oxide semiconductor nanowire array as an ultrasensitive sensor for volatile organic compounds. Nano Letters, 16, 4508-4515(2016).

    [14] KOOK MOON YOUNG, SEONG-YONG JEONG, CHAN KANG YUN et al. Metal oxide gas sensors with Au nanocluster catalytic overlayer: Toward tuning gas selectivity and response using a novel bilayer sensor design. ACS Applied Materials Interfaces, 11, 32169-32177(2019).

    [15] VAHID AMIRI, HOSSEIN ROSHAN, ALI MIRZAEI et al. Nanostructured metal oxide-based acetone gas sensors: a review. Sensors, 20, 3096(2020).

    [16] SRIJITA NUNDY, TAE-YIL EOM, JUN-GU KANG et al. Flower-shaped ZnO nanomaterials for low-temperature operations in NOX gas sensors. Ceramics International, 46, 5706-5714(2020).

    [17] M SHAALAN N, T YAMAZAKI, T KIKUTA et al. Influence of morphology and structure geometry on NO2 gas-sensing characteristics of SnO2 nanostructures synthesized via a thermal evaporation method. Sensors and Actuators B: Chemical, 153, 11-16(2011).

    [18] IBRAHIM GAIDAN, SALIM ASBIA, DERMOT BRABAZON et al. TiO2 gas sensor to detect the propanol at room temperature. AIP Conference Proceedings, 1896, 1-5(2017).

    [19] SHUANG YAN, QINGSHENG WU. A novel structure for enhancing the sensitivity of gas sensors -α-Fe2O3 nanoropes containing a large amount of grain boundaries and their excellent ethanol sensing performance. Journal of Materials Chemistry A, 3, 5982-5990(2015).

    [20] JIAN ZHANG, DAWEN ZENG, QIANG ZHU et al. Effect of grain-boundaries in NiO nanosheet layers room-temperature sensing mechanism under NO2. Journal of Physical Chemistry C, 119, 17930-17939(2015).

    [21] ERDAL TURGUT, OMER COBAN, SEVDA SARITAS et al. Oxygen partial pressure effects on the RF sputtered p-type NiO hydrogen gas sensors. Applied Surface Science, 435, 880-885(2018).

    [22] QINGHAO ZENG, YANFA CUI, LIANFENG ZHU et al. Increasing oxygen vacancies at room temperature in SnO2 for enhancing ethanol gas sensing. Materials Science in Semiconductor Processing, 111, 104962(2020).

    [23] XIN LI, HANG ZHANG, CHANGHAO FENG et al. Novel cage-like α-Fe2O3/SnO2 composite nanofibers by electrospinning for rapid gas sensing properties. RSC Advanced., 4, 27552-27555(2014).

    [24] NAGABANDI JAYABABU, MADHUKAR POLOJU, JULAKANTI SHRUTHI et al. Semi shield driven p-n heterostructures and their role in enhancing the room temperature ethanol gas sensing performance of NiO/SnO2 nanocomposites. Ceramics International, 45, 15134-15142(2019).

    [25] ZHIJIE WEI, QU ZHOU, JINGXUAN WANG et al. Hydrothermal synthesis of SnO2 nanoneedle-anchored NiO microsphere and its gas sensing performances. Nanomaterials, 9, 1015(2019).

    [26] JING GUO, JUN ZHANG, MIN ZHU et al. High-performance gas sensor based on ZnO nanowires functionalized by Au nanoparticles. Sensors and Actuators B: Chemical, 199, 339-345(2014).

    [27] JING LONG, WEI XIONG, CHENGYIRAN WEI et al. Directional assembly of ZnO nanowires via three-dimensional laser direct writing. Nano Letters, 20, 5159-5166(2020).

    [28] BILU LIU, QINGFENG LIU, WENCAI REN et al. Synthesis of single-walled carbon nanotubes, their ropes and books. Comptes Rendus Physique, 11, 349-354(2010).

    [29] MARIUS SCHOTTLE, QINGBO XIA, THENG CHENG YEN et al. Integrated polyphenol-based hydrogel templating method for functional and structured oxidic nanomaterials. Chemistry of Materials, 32, 4716-4723(2020).

    [30] ZICHEN LIU, ALLEN MURPHY ALEXANDER WILLIAM, CHRISTIAN KUPPE et al. WS2 nanotubes, 2D nanomeshes, and 2D in-plane films through one single chemical vapor deposition route. ACS Nano, 13, 3896-3909(2019).

    [31] SHOULI BAI, WENTAO GUO, JIANHUA SUN et al. Synthesis of SnO2-CuO heterojunction using electrospinning and application in detecting of CO. Sensors and Actuators B: Chemical, 226, 96-103(2016).

    [32] SHUANG YAN, QINGSHENG WU. Micropored Sn-SnO2/carbon heterostructure nanofibers and their highly sensitive and selective C2H5OH gas sensing performance. Sensors and Actuators B: Chemical, 205, 329-337(2014).

    [33] SHUWEN DONG, DI WU, WENYUAN GAO et al. Multi- dimensional templated synthesis of hierarchical Fe2O3/NiO composites and their superior ethanol sensing properties promoted by nanoscale p-n heterojunctions. Dalton Transitions, 49, 1300-1310(2020).

    [34] BASTIAN RHEINGANS, J MITTEMEIJER ERIC. Modelling precipitation kinetics: evaluation of the thermodynamics of nucleation and growth. Calphad, 50, 49-58(2015).

    [35] LU LI, ZHILONG BAO, XUNHENG YE et al. Nucleation, growth, and aggregation of Au nanocrystals on liquid surfaces. Chinese Physics Letters, 37, 028102(2020).

    [36] XIAOMING WANG, L PHILLIPS BRIAN, JEAN-FRANCOIS BOILY et al. Phosphate sorption speciation and precipitation mechanisms on amorphous aluminum hydroxide. Soil Systems, 3, 20(2019).

    [37] BEN AYED RIHAB, MEJDA AJILI, M GARCIA JORGE et al. Physical properties investigation and gas sensing mechanism of Al: Fe2O3 thin films deposited by spray pyrolysis. Superlattices and Microstructures, 129, 91-104(2019).

    [38] ALI MIRZAEI, JAE-HYOUNG LEE, MANOHAR MAJHI SANJIT et al. Resistive gas sensors based on metal-oxide nanowires. Journal of Applied Physics, 126, 241102(2019).

    [39] W GUMBI SIFISO, S MKWAE PRINCE, IOANNIS KORTIDIS et al. Electronic and simple oscillatory conduction in ferrite gas sensors: gas-sensing mechanisms, long-term gas monitoring, heat transfer, and other anomalies. ACS Applied Materiale Interfaces, 12, 43231-43249(2020).

    [40] XIAOMING ZHOU, WUYOU FU, HAIBIN YANG et al. Novel SnO2 hierarchical nanostructures: synthesis and their gas sensing properties. Materials Letters, 90, 53-55(2013).

    [41] XIAOFENG SONG, LI LIU. Characterization of electrospun ZnO-SnO2 nanofibers for ethanol sensor. Sensors & Actuators A Physical, 154, 175-179(2009).

    [42] GEYU LU, BO ZHANG, YANGFENG SUN et al. Horseshoe-shaped SnO2 with annulus-like mesoporous forethanol gas sensing application. Sensors & Actuators B Chemical, 240, 1321-1329(2017).

    [43] GUN-JOO SUN, KYUNG LEE JAE, IN LEE WAN et al. Ethanol sensing properties and dominant sensing mechanism of NiO-decorated SnO2 nanorod sensors. Electronic Materials Letters, 13, 260-269(2017).

    [44] ANANYA DEY. Semiconductor metal oxide gas sensors: a review. Materials Science and Engineering: B, 229, 206-217(2018).

    [45] NICOLAE BARSAN, UDO WEIMAR. Conduction model of metal oxide gas sensors. Journal of Electroceramics, 7, 143-167(2001).

    [46] HONGYU GAO, QI YU, SUFANG ZHANG et al. Nanosheet- assembled NiO microspheres modified by Sn2+ ions isovalent interstitial doping for xylene gas sensors. Sensors and Actuators B: Chemical, 269, 210-222(2018).

    [47] PEI HAO, GE QIU, PENG SONG et al. Construction of porous LaFeO3 microspheres decorated with NiO nanosheets for high response ethanol gas sensors. Applied Surface Science, 515, 146025(2020).

    [48] ZHOU LI, JIANXIN YI. Enhanced ethanol sensing of Ni-doped SnO2 hollow spheres synthesized by a one-pot hydrothermal method. Sensors and Actuators B: Chemical, 243, 96-103(2017).

    [49] YUE GUAN, DAWEI WANG, XIN ZHOU et al. Hydrothermal preparation and gas sensing properties of Zn-doped SnO2 hierarchical architectures. Sensors and Actuators B: Chemical, 191, 45-52(2014).

    Yuxing CHU, Hairui LIU, Shuang YAN. Preparation and Gas Sensing Properties of SnO2/NiO Composite Semiconductor Nanofibers [J]. Journal of Inorganic Materials, 2021, 36(9): 950
    Download Citation