Instability of metal oxide-based conductometric gas sensors and approaches to stability improvement (short survey)

[1]  E. B. Maxted The Poisoning of Metallic Catalysts , 1951 .

[2]  The Gaseous Oxides of the Platinum Metals , 1961 .

[3]  G. Samsonov,et al.  The Oxide Handbook , 1973 .

[4]  Poisoning and inhibition of catalytic oxidations: I. The effect of silicone vapour on the gas‐phase oxidations of methane, propene, carbon monoxide and hydrogen over platinum and palladium catalysts , 1978 .

[5]  P. Walsh,et al.  Poison-resistant catalytic flammable-gas sensing elements , 1984 .

[6]  T. A. Jones,et al.  The role of catalysis in solid-state gas sensors , 1986 .

[7]  S. Morrison,et al.  Mechanism of semiconductor gas sensor operation , 1987 .

[8]  David E. Williams,et al.  Tin dioxide gas sensors. Part 1.—Aspects of the surface chemistry revealed by electrical conductance variations , 1987 .

[9]  T. Seiyama,et al.  Chemical sensor technology , 1988 .

[10]  J. Nowotny Surface segregation of defects in oxide ceramic materials , 1988 .

[11]  Y. Nakamura Stability of the Sensitivity of SnO2- Based Elements in the Field , 1989 .

[12]  F. Oudet,et al.  Evolution during thermal treatment of pure and lanthanum-doped Pt/Al2O3 and PtzRh/Al2O3automotive exhaust catalysts , 1989 .

[13]  M. Madou,et al.  Chemical Sensing With Solid State Devices , 1989 .

[14]  M. Fleischer,et al.  Stability of semiconducting gallium oxide thin films , 1990 .

[15]  G. Petot-ervas,et al.  Surface segregation in ceramic materials during cooling or under a temperature gradient , 1990 .

[16]  D. Kohl The role of noble metals in the chemistry of solid-state gas sensors , 1990 .

[17]  Chao-Nan Xu,et al.  Grain size effects on gas sensitivity of porous SnO2-based elements , 1991 .

[18]  K. Takahata,et al.  Stabilization of SnO2 sintered gas sensors , 1991 .

[19]  Maximilian Fleischer,et al.  Sensing reducing gases at high temperatures using long-term stable Ga2O3 thin films , 1992 .

[20]  R. Farrauto,et al.  Deactivation regeneration and poison - resistant catalysts: commercial experience in stationary pollution abatement , 1992 .

[21]  W. Anderson,et al.  Development and fabrication of RuO2 thin film resistors , 1993 .

[22]  Leszek Golonka,et al.  Heaters for gas sensors from thick conductive or resistive films , 1994 .

[23]  K. Ihokura,et al.  The Stannic Oxide Gas SensorPrinciples and Applications , 1994 .

[24]  H. Meixner,et al.  Effect of the sensor structure on the stability of Ga2O3 sensors for reducing gases , 1994 .

[25]  I. Sayago,et al.  Long-term reliability of sensors for detection of nitrogen oxides , 1995 .

[26]  C. Santilli,et al.  Evolution of the fractal structure during sintering of SnO2 compacted sol-gel powder , 1995 .

[27]  L. D. Angelis,et al.  Selectivity and stability of a tin dioxide sensor for methane , 1995 .

[28]  Muriel Loesch,et al.  Comparison between two Figaro sensors (TGS 813 and TGS 842) for the detection of methane, in terms of selectivity and long-term stability , 1995 .

[29]  E. Traversa,et al.  Ceramic thin films by sol-gel processing as novel materials for integrated humidity sensors , 1996 .

[30]  J. Gerblinger,et al.  Segregation driving forces in perovskite titanates , 1996 .

[31]  U. Lampe,et al.  Metal Oxide Sensors , 1995, International Conference on Solid-State Sensors, Actuators and Microsystems.

[32]  A. Neiman Cooperative transport in oxides: Diffusion and migration processes involving Mo(VI), W(VI), V(V) and Nb(V) , 1996 .

[33]  P. Moseley,et al.  Solid state gas sensors , 1997 .

[34]  D. S. Vlachos,et al.  Effect of surface catalysts on the long-term performance of reactively sputtered tin and indium oxide gas sensors , 1997 .

[35]  A. Poirson,et al.  Fundamental and technological aspects of the surface properties and reactivity of some metal oxides , 1997 .

[36]  Fredrik Winquist,et al.  Drift counteraction in odour recognition applications: lifelong calibration method , 1997 .

[37]  Hidemoto Nakagawa,et al.  The interference elimination for gas sensor by catalyst filters , 2000 .

[39]  D. M. Lowe,et al.  Stability of supported metal and supported metal oxide combustion catalysts , 1999 .

[40]  René Lalauze,et al.  Gas detection for automotive pollution control , 1999 .

[41]  Yunzhi Wang,et al.  Numerical Calculation of Electrical Conductivity of Porous Electroceramics , 1999 .

[42]  T. Miyata,et al.  STABILITY OF TRANSPARENT CONDUCTING OXIDE FILMS FOR USE AT HIGH TEMPERATURES , 1999 .

[43]  N. Barsan,et al.  Fundamental and practical aspects in the design of nanoscaled SnO2 gas sensors: a status report , 1999 .

[44]  Improvement of Long-term Stability in SnO₂ Based Gas Sensor for Monitoring Offensive Odor , 1999 .

[45]  E. Domashevskaya,et al.  APPLICATION OF SEMICONDUCTOR GAS SENSORS FOR MEDICAL DIAGNOSTICS , 1999 .

[46]  V. Brynzari,et al.  Electrical behavior of SnO2 thin films in humid atmosphere , 1999 .

[47]  R. Ionescu Ageing and p-type conduction in SnO2 gas sensors , 1999 .

[48]  W. Göpel,et al.  Filters for tin dioxide CO gas sensors to pass the UL2034 standard , 2000 .

[49]  K Fukui,et al.  Improvement of humidity dependence in gas sensor based on SnO2 , 2000 .

[50]  Meilin Liu,et al.  Effect of particle size and dopant on properties of SnO2-based gas sensors , 2000 .

[51]  Zhao Haibo,et al.  Monolayer dispersion of oxide additives on SnO2 and their promoting effects on thermal stability of SnO2 ultrafine particles , 2000 .

[52]  Yasutaka Ozaki,et al.  Effects of surface modification with platinum and ruthenium on temperature and humidity dependence of SnO2-based CO gas sensors , 2000 .

[53]  Y. Shimizu,et al.  Improvement of Long‐Term Stability of Thin Film Gas Sensors by Ion Beam‐Assisted Deposition , 2000 .

[54]  J. Haugen,et al.  A calibration method for handling the temporal drift of solid state gas-sensors , 2000 .

[55]  Yasutaka Ozaki,et al.  Enhanced long-term stability of SnO2-based CO gas sensors modified by sulfuric acid treatment , 2000 .

[56]  N. Yamazoe,et al.  Hydrothermal treatment of tin oxide sol solution for preparation of thin-film sensor with enhanced thermal stability and gas sensitivity , 2000 .

[57]  Effects of Thiourea Treatment on the Sensing Properties and Stability of SnO2 ‐ Based CO Gas Sensors , 2000 .

[58]  Norio Miura,et al.  Hydrothermally treated sol solution of tin oxide for thin-film gas sensor , 2000 .

[59]  M. Sjöström,et al.  Drift correction for gas sensors using multivariate methods , 2000 .

[60]  W. De Ceuninck,et al.  The stability of Pt heater and temperature sensing elements for silicon integrated tin oxide gas sensors , 2000 .

[61]  Giorgio Sberveglieri,et al.  The aging effect on SnO2 Au thin film sensors: electrical and structural characterization , 2000 .

[62]  R. Ionescu,et al.  Time-dependent humidity calibration for drift corrections in electronic noses equipped with SnO2 gas sensors , 2000 .

[63]  Benno Margesin,et al.  Development of a low-power thick-film gas sensor deposited by screen-printing technique onto a micromachined hotplate , 2001 .

[64]  P.C.H. Chan,et al.  Investigation and control of microcracks in tin oxide gas sensing thin-films , 2001 .

[65]  Joachim Maier,et al.  Chemical diffusion of oxygen in tin dioxide , 2001 .

[66]  C. H. Bartholomew Mechanisms of catalyst deactivation , 2001 .

[67]  I-Ming Hsing,et al.  Investigation of stability and reliability of tin oxide thin-film for integrated micro-machined gas sensor devices , 2001 .

[68]  R. Soltis,et al.  Limiting particle growth in platinum/tin oxide nanocomposites , 2001 .

[69]  Joachim Frank,et al.  High temperature Ga2O3-gas sensors and SnO2-gas sensors: a comparison , 2001 .

[70]  N. Bârsan,et al.  Conduction Model of Metal Oxide Gas Sensors , 2001 .

[71]  S. Järås,et al.  Deactivation of high temperature combustion catalysts , 2001 .

[72]  K. Veltruská CO adsorption on Pd clusters deposited on pyrolytically prepared SnO2 studied by XPS , 2001 .

[73]  Christophe Pijolat,et al.  Development of a protected gas sensor for exhaust automotive applications , 2002 .

[74]  James L. Gole,et al.  Tin Oxide Nanowires, Nanoribbons, and Nanotubes , 2002 .

[75]  G. Korotcenkov,et al.  Possibilities of aerosol technology for deposition of SnO2-based films with improved gas sensing characteristics , 2002 .

[76]  F. J. Gracia,et al.  Built-in active filter for an improved response to carbon monoxide combining thin- and thick-film technologies , 2002 .

[77]  Rotraut Merkle,et al.  Space charge influenced oxygen incorporation in oxides: in how far does it contribute to the drift of Taguchi sensors? , 2002 .

[78]  Eugenio Martinelli,et al.  Counteraction of environmental disturbances of electronic nose data by independent component analysis , 2002 .

[79]  R. T. Rajendra Kumar,et al.  Influence of thermal annealing on the composition and structural parameters of DC magnetron sputtered titanium dioxide thin films , 2002 .

[80]  A. Cornet,et al.  Strategies to enhance the carbon monoxide sensitivity of tin oxide thin films , 2003 .

[81]  C. Pijolat,et al.  Tin dioxide gas sensor as a tool for atmospheric pollution monitoring: Problems and possibilities for improvements , 2003 .

[82]  I. Matolínová,et al.  Study of Pd–In interaction during Pd deposition on pyrolytically prepared In2O3 , 2003 .

[83]  Harold H. Kung,et al.  Supported Au catalysts for low temperature CO oxidation , 2003 .

[84]  G. Rohrer,et al.  Grain boundary segregation in oxide ceramics , 2003 .

[85]  Influence of the gas atmosphere on restructuring and sintering kinetics of nickel and platinum aerosol nanoparticle agglomerates , 2003 .

[86]  Zhen-Lai Zhou,et al.  The reliability and lifetime distribution of SnO2- and CdSnO3-gas sensors for butane , 2003 .

[87]  Sheikh A. Akbar,et al.  Ceramics for chemical sensing , 2003 .

[88]  K. Y. Tong,et al.  Degradation of RuO2 thin films in hydrogen atmosphere at temperatures between 150 and 250 degreeC , 2003, Microelectron. Reliab..

[89]  S. S. Bhatti,et al.  CuO-doped SnO2 thin films as hydrogen sulfide gas sensor , 2003 .

[90]  Soon-Don Choi,et al.  SnO2 thin film gas sensor fabricated by ion beam deposition , 2004 .

[91]  Fengmin Liu,et al.  Investigation on SnO2 nanopowders stored for different time and BaTiO3 modification , 2004 .

[92]  Enrico Zanoni,et al.  Long-term reliability of Ti-Pt-Au metallization system for Schottky contact and first-level metallization on SiC MESFET , 2004, Microelectron. Reliab..

[93]  G. Reinhardt,et al.  CO-sensing properties of doped SnO2 sensors in H2-rich gases , 2004 .

[94]  Enhancement of H2 Sensing Properties of In2O3-based Gas Sensor by Chemical Modification with SiO2 , 2004 .

[95]  C. Louis,et al.  Characterization and reactivity in CO oxidation of gold nanoparticles supported on TiO2 prepared by deposition-precipitation with NaOH and urea , 2004 .

[96]  E. Traversa,et al.  The development of gas sensor for carbon monoxide monitoring using nanostructure of Nb–TiO2 , 2005 .

[97]  Sossina M. Haile,et al.  Enhanced Sintering of Yttrium‐Doped Barium Zirconate by Addition of ZnO , 2005 .

[98]  G. Korotcenkov Gas response control through structural and chemical modification of metal oxide films: state of the art and approaches , 2005 .

[99]  T. Metzger,et al.  Effect of in-flight annealing and deposition method on gas-sensitive SnOx films made from size-selected nanoparticles , 2005 .

[100]  Noboru Yamazoe,et al.  Toward innovations of gas sensor technology , 2005 .

[101]  F. Liu,et al.  Surface characterization study on SnO2 powder modified by thiourea , 2005 .

[102]  A. Cornet,et al.  Structural stability of indium oxide films deposited by spray pyrolysis during thermal annealing , 2005 .

[103]  A. Cornet,et al.  Faceting characterization of tin dioxide nanocrystals deposited by spray pyrolysis from stannic chloride water solution , 2005 .

[104]  Nicolae Barsan,et al.  Sensing low concentrations of CO using flame-spray-made Pt/SnO2 nanoparticles , 2006 .

[105]  D. Flandre,et al.  Micromachined thin-film sensors for SOI-CMOS co-integration , 2006 .

[106]  D. Meier,et al.  Integration of nanostructured materials with MEMS microhotplate platforms to enhance chemical sensor performance , 2006 .

[107]  Honglang Lu,et al.  Micro-Type Powder-Sputtered Thin Film Gas Sensors with Long-Term Stability , 2006, 2006 International Conference on Mechatronics and Automation.

[108]  C. Xie,et al.  Laser grooving of Al2O3 plate by a pulsed Nd:YAG laser : Characteristics and application to the manufacture of gas sensors array heater , 2006 .

[109]  Joseph R. Stetter,et al.  Kinetics of indium oxide-based thin film gas sensor response: The role of “redox” and adsorption/desorption processes in gas sensing effects , 2007 .

[110]  Mao-hua Wang,et al.  Degradation phenomena due to humidity in low voltage ZnO varistors , 2007 .

[111]  P. Dufresne Hydroprocessing catalysts regeneration and recycling , 2007 .

[112]  Joseph R. Stetter,et al.  The nature of processes controlling the kinetics of indium oxide-based thin film gas sensor response , 2007 .

[113]  A. Cornet,et al.  The influence of additives on gas sensing and structural properties of In2O3-based ceramics , 2007 .

[114]  G. Korotcenkov Metal oxides for solid-state gas sensors: What determines our choice? , 2007 .

[115]  Jordi Arbiol,et al.  High response and stability in CO and humidity measures using a single SnO2 nanowire , 2007 .

[116]  Joseph R. Stetter,et al.  Effect of air humidity on gas response of SnO2 thin film ozone sensors , 2007 .

[117]  Gas Detection by Semiconductor Ceramics: Tin Oxide as Improved Sensing Material , 2007 .

[118]  Craig A. Grimes,et al.  Grain boundary blocking and segregation effects in yttrium-doped polycrystalline titanium dioxide , 2007 .

[119]  Ghenadii Korotcenkov,et al.  Practical aspects in design of one-electrode semiconductor gas sensors: Status report , 2007 .

[120]  W. Shin,et al.  Long-term stability of Pt/alumina catalyst combustors for micro-gas sensor application , 2008 .

[121]  Ghenadii Korotcenkov,et al.  (Cu, Fe, Co, or Ni)-doped tin dioxide films deposited by spray pyrolysis: doping influence on film morphology , 2008 .

[122]  S. Pratsinis,et al.  Optimal Doping for Enhanced SnO2 Sensitivity and Thermal Stability , 2008 .

[123]  G. Korotcenkov The role of morphology and crystallographic structure of metal oxides in response of conductometric-type gas sensors , 2008 .

[124]  Sangyoon Lee,et al.  Stability Improvement of Gallium Indium Zinc Oxide Thin Film Transistors by Post-Thermal Annealing , 2008 .

[125]  Victor V. Sysoev,et al.  Percolating SnO2 nanowire network as a stable gas sensor: Direct comparison of long-term performance versus SnO2 nanoparticle films , 2009 .

[126]  Eduard Llobet,et al.  Comparative study of nanocrystalline SnO2 materials for gas sensor application: Thermal stability and catalytic activity , 2009 .

[127]  G. Korotcenkov,et al.  (Cu, Fe, Co, or Ni)-doped tin dioxide films deposited by spray pyrolysis: Doping influence on thermal stability of the film structure , 2009 .

[128]  Stefania Specchia,et al.  Catalytic activity and long-term stability of palladium oxide catalysts for natural gas combustion: Pd supported on LaMnO3-ZrO2 , 2009 .

[129]  Vladimir M. Aroutiounian,et al.  IMPROVEMENT AND STABILIZATION OF THIN-FILM HYDROGEN SENSORS PARAMETERS , 2009 .

[130]  Ghenadii Korotcenkov,et al.  Grain Size Effects in Sensor Response of Nanostructured SnO2- and In2O3-Based Conductometric Thin Film Gas Sensor , 2009 .

[131]  S. Protasova,et al.  Increase of Mn solubility with decreasing grain size in ZnO , 2009 .

[132]  A. Kiv,et al.  Structural stability of In2O3 films as sensor materials , 2010 .

[133]  Anne-Claude Romain,et al.  Long term stability of metal oxide-based gas sensors for e-nose environmental applications: An overview , 2009 .

[134]  Pere Caminal,et al.  Drift Compensation of Gas Sensor Array Data by Common Principal Component Analysis , 2010 .

[135]  F. Hossein-Babaei,et al.  Compensation for the drift-like terms caused by environmental fluctuations in the responses of chemoresistive gas sensors , 2010 .

[136]  Temperature Dependent CO Oxidation Mechanisms on Size-Selected Clusters , 2010 .