YSZ-based solid electrolyte type sensor utilizing ZnMoO4 sensing electrode for fast detection of ppb-level H2S
暂无分享,去创建一个
G. Lu | Jing Wang | Fangmeng Liu | Xu Yan | P. Sun | Qingji Wang | Rui You | Zijie Yang | Junming He | Caileng Wang | Ao Liu
[1] Xinghua Li,et al. Composition-controllable p-CuO/n-ZnO hollow nanofibers for high-performance H2S detection , 2019, Sensors and Actuators B: Chemical.
[2] Sun-Ju Song,et al. Transition metal oxide (Ni, Co, Fe)-tin oxide nanocomposite sensing electrodes for a mixed-potential based NO2 sensor , 2019, Sensors and Actuators B: Chemical.
[3] Falah Awwad,et al. Hydrogen Sulfide (H2S) Gas Sensor: A Review , 2019, IEEE Sensors Journal.
[4] A. Selva Sharma,et al. CO sensing performances of YSZ-based sensor attached with sol-gel derived ZnO nanospheres , 2019, Sensors and Actuators B: Chemical.
[5] H Zhao,et al. Highly selective ppb-level H2S sensor based on the walnut-like Bi2MoO6 at low temperature , 2018, Sensors and Actuators B: Chemical.
[6] Peng Sun,et al. Nafion-based amperometric H2S sensor using Pt-Rh/C sensing electrode , 2018, Sensors and Actuators B: Chemical.
[7] G. Lu,et al. The mixed potential type gas sensor based on stabilized zirconia and molybdate MMoO4 (M: Ni, Co and Zn) sensing electrode aiming at detecting triethylamine , 2018, Sensors and Actuators B: Chemical.
[8] G. Lu,et al. High performance mixed-potential-type Zirconia-based NO 2 sensor with self-organizing surface structures fabricated by low energy ion beam etching , 2018, Sensors and Actuators B: Chemical.
[9] Lichun Zhang,et al. MOFs-derived dodecahedra porous Co 3 O 4 : An efficient cataluminescence sensing material for H 2 S , 2018 .
[10] D. Cao,et al. A Novel Zr-MOF as Fluorescence Turn-On Probe for Real-Time Detecting H2 S Gas and Fingerprint Identification. , 2018, Small.
[11] Bin Wang,et al. YSZ-based mixed potential H2S sensor using La2NiO4 sensing electrode , 2018 .
[12] J. Jian,et al. Further enhancement of the light-regulated mixed-potential signal with ZnO-based electrodes , 2018 .
[13] G. Lu,et al. Enhanced hydrogen sulfide sensing properties of Pt-functionalized α-Fe2O3 nanowires prepared by one-step electrospinning , 2018 .
[14] Ke-Jing Huang,et al. High-performance symmetric supercapacitor based on flower-like zinc molybdate , 2018 .
[15] Falah Awwad,et al. Low-temperature and fast response H2S gas sensor using semiconducting chitosan film , 2017 .
[16] U. Guth,et al. Mixed-potential gas sensor with layered Au,Pt-YSZ electrode : Investigating the sensing mechanism with steady state and dynamic electrochemical methods , 2017 .
[17] Zhenli Qiu,et al. Cu2+-Doped SnO2 Nanograin/Polypyrrole Nanospheres with Synergic Enhanced Properties for Ultrasensitive Room-Temperature H2S Gas Sensing. , 2017, Analytical chemistry.
[18] S. Navale,et al. Solution-processed rapid synthesis strategy of Co 3 O 4 for the sensitive and selective detection of H 2 S , 2017 .
[19] J. Yi,et al. Fast Response, Highly Sensitive and Selective Mixed-Potential H2 Sensor Based on (La, Sr)(Cr, Fe)O3-δ Perovskite Sensing Electrode. , 2017, ACS applied materials & interfaces.
[20] G. Lu,et al. High-temperature stabilized zirconia-based sensors utilizing MNb2O6 (M: Co, Ni and Zn) sensing electrodes for detection of NO2 , 2016 .
[21] K. Krishnamoorthy,et al. Improved electrochemical performances of binder-free CoMoO4 nanoplate arrays@Ni foam electrode using redox additive electrolyte , 2016 .
[22] A. Iraji zad,et al. Room temperature H2S gas sensor based on rather aligned ZnO nanorods with flower-like structures , 2015 .
[23] G. Lu,et al. Sub-ppm H2S sensor based on NASICON and CoCr2−xMnxO4 sensing electrode , 2014 .
[24] Norio Miura,et al. A review of mixed-potential type zirconia-based gas sensors , 2014, Ionics.
[25] D. Agarwal,et al. Phase transformation of ZnMoO4 by localized thermal spike , 2014 .
[26] G. Lu,et al. Sub-ppm H2S sensor based on YSZ and hollow balls NiMn2O4 sensing electrode , 2014 .
[27] Ying Liang,et al. ZnMoO4 Micro- and Nanostructures Synthesized by Electrochemistry-Assisted Laser Ablation in Liquids and Their Optical Properties , 2012 .
[28] S. Manorama,et al. Nanocrystalline chemically modified CdIn2O4 thick films for H2S gas sensor , 2012 .
[29] G. Zou,et al. Rapid and selective H2S detection of hierarchical ZnSnO3 nanocages , 2011 .
[30] T. Komatsu,et al. Structure study of MoO3–ZnO–B2O3 glasses by Raman spectroscopy and formation of α-ZnMoO4 nanocrystals , 2011 .
[31] Fengmin Liu,et al. Solid-state potentiometric H2S sensor combining NASICON with Pr6O11-doped SnO2 electrode , 2007 .
[32] Duk-Dong Lee,et al. H2S microgas sensor fabricated by thermal oxidation of Cu/Sn double layer , 2005 .
[33] C. Granqvist,et al. Low-level detection of ethanol and H2S with temperature-modulated WO3 nanoparticle gas sensors , 2005 .
[34] Rangachary Mukundan,et al. Solid-state mixed potential gas sensors: theory, experiments and challenges , 2000 .
[35] Norio Miura,et al. Sensing characteristics and mechanisms of hydrogen sulfide sensor using stabilized zirconia and oxide sensing electrode , 1996 .