Cite

W. Gopel, K.D. Schierbaum, “SnO2 sensors: current status and future prospects”, Sensors and Actuators B: Chemical, Vol. 26, 1995, pp. 1–12.10.1016/0925-4005(94)01546-T Search in Google Scholar

H. Baltruschat, I. Kamphausen, R. Oelgeklaus, J. Rose, M. Wahlkamp, “Detection of volatile organic solvents using potentiodynamic gas sensors”, Analytical Chemistry, Vol. 69, No. 4, 1997, pp. 743–748.10.1021/ac9605410 Search in Google Scholar

D.E. Williams, “Semiconducting oxides as gas-sensitive resistors”, Sensors and Actuators B: Chemical, Vol. 57, No.1, 1999, pp.1–16.10.1016/S0925-4005(99)00133-1 Search in Google Scholar

K. Potje-Kamloth, “Semiconductor junction gas sensors”, Chemical Reviews, Vol. 108, No. 2, 2008, pp. 367–399.10.1021/cr0681086 Search in Google Scholar

L. Liu, T. Zhang, L.Y.Wang, S.C. Li, “Improved ethanol sensing properties of Cu-doped SnO2 nanofibers”, Materials Letter, Vol. 63, No. 23, 2009, pp. 2041–2043.10.1016/j.matlet.2009.06.048 Search in Google Scholar

Y. Wang, W.Z. Jia, T. Strout, A. Schempf, H. Zhang, B.K. Li, J.H. Cui, Y. Lei, “Ammonia gas sensor using polypyrrole-coated TiO2/ZnO nanofibers”, Electroanalysis, Vol. 21, No. 12, 2009, pp. 1432–1438.10.1002/elan.200904584 Search in Google Scholar

A. K. Prasad, P.I. Gouma, “MoO3 and WO3 based thin film conductimetric sensors for automotive applications”, J. Mater. Sci., Vol. 38, No. 21, 2003, pp. 4347–4352.10.1023/A:1026339216910 Search in Google Scholar

S.S. Sunu, E. Prabhu, V. Jayaraman, K.I. Gnanasekar, T.K. Seshagiri, T. Gnanasekaran, “Electrical conductivity and gas sensing properties of MoO3”, Sens. Actuators B, Vol. 101, No. 1, 2004, pp. 161–174.10.1016/j.snb.2004.02.048 Search in Google Scholar

M. Ferroni, V. Guidi, G. Martinelli, M. Sacerdoti, P. Nelli, G. Sberveglieri, “MoO3- based sputtered thin films for fast NO2 detection”, Sens. Actuators B, Vol. 48, 1, 1998, pp. 285– 288.10.1016/S0925-4005(98)00057-4 Search in Google Scholar

S.S. Sunu, E. Prabhu, V. Jayaraman, K.I. Gnanasekar, T. Gnanasekaran, “Gas sensing properties of PLD made MoO3 films”, Sens. Actuators B, Vol. 94, 2, 2003, pp. 189–196.10.1016/S0925-4005(03)00342-3 Search in Google Scholar

D.B. Dadyburjor, S.S. Jewur, E. Ruckenstein, “Selective oxidation of hydrocarbons on composite oxides”, Catal. Rev. Sci. Eng., Vol. 19, No. 2, 1979, pp. 293–350.10.1080/03602457908068057 Search in Google Scholar

M.A. Larrubia, G. Ramis, G. Busca, “An FT-IR study of the adsorption of urea and ammonia over V2O5-MoO3-TiO2 SCR catalysts”, Appl. Catal. B, Vol. 27, No. 3, 2000, pp. L145– L151.10.1016/S0926-3373(00)00150-8 Search in Google Scholar

C. Imawan, H. Steffes, F. Solzbacher, E. Obermeier, “A new preparation method for sputtered MoO3 multilayers for the application in gas sensors”, Sens. Actuators B: Chem., Vol. 78, 1, 2001, pp. 119–125.10.1016/S0925-4005(01)00801-2 Search in Google Scholar

M. Ferroni, V. Guidi, G. Martinelli, P. Nelli, M. Sacerdoti, G. Sberveglieri, “Characterization of a molybdenum oxide sputtered thin film as a gas sensor”, Thin Solid Films, Vol. 307, No. 1, 1997, pp. 148–151.10.1016/S0040-6090(97)00279-4 Search in Google Scholar

C. Imawan, F. Solzbacher, H. Steffes, E. Obermeier, “Gas-sensing characteristics of modified-MoO3 thin films using Ti-overlayers for NH3 gas sensors”, Sens. Actuators B: Chem., Vol. 64, No. 1, 2000, pp. 193–197.10.1016/S0925-4005(99)00506-7 Search in Google Scholar

C. Imawan, H. Steffes, F. Solzbacher, E. Obermeier, “Structural and gas-sensing properties of V2O5–MoO3 thin films for H2 detection”, Sens. Actuators B: Chem., Vol. 77, No. 1, 2001 pp. 346–351.10.1016/S0925-4005(01)00732-8 Search in Google Scholar

K. Galatsis, Y. Li, W. Wlodarski, C. Cantalini, M. Passacantando, S. Santucci, “MoO3,WO3 single and binary oxide prepared by sol–gel method for gas sensing applications”, J. Sol–Gel Sci. Technol., Vol. 26, No. 1, 2003, pp. 1097–1101.10.1023/A:1020710808151 Search in Google Scholar

J. Zhou, S.Z. Deng, N.S. Xu, J. Chen, J.C. She, “Synthesis and fieldemission properties of aligned MoO3 nanowires”, Appl. Phys. Lett., Vol. 83, No. 13, 2003, pp. 2653–2655.10.1063/1.1613992 Search in Google Scholar

A.K. Prasad, P.I. Gouma, D.J. Kubinski, J.H. Visser, R.E. Soltis, P.J. Schmitz, “Reactively sputtered MoO3 films for ammonia sensing”, Thin Solid Films, Vol. 436, No. 1, 2003 pp. 46– 51.10.1016/S0040-6090(03)00524-8 Search in Google Scholar

A.K. Prasad, D.J. Kubinski, P.I. Gouma, “Comparison of sol–gel and ion beam deposited MoO3 thin film gas sensors for selective ammonia detection”, Sens. Actuators B: Chem., Vol. 93, No. 1, 2003, pp. 25–30.10.1016/S0925-4005(03)00336-8 Search in Google Scholar

A. Bouzidi, N. Benramdane, H. Tabet-Derranz, C. Mathieu, B. Khelifa, R. Desfeux, “Effect of substrate temperature on the structural and optical properties of MoO3 thin films prepared by spray pyrolysis technique”, Mater. Sci. Eng. B, Vol. 97, No. 1, 2003, pp. 5–8.10.1016/S0921-5107(02)00385-9 Search in Google Scholar

K.A. Gesheva, T. Ivanova, “A low-temperature atmospheric pressure CVD process for growing thin films of MoO3 and MoO3–WO3 for electrochromic device applications”, Chem. Vap. Deposit., Vol. 12, No. 4, 2006, pp. 231–238.10.1002/cvde.200506404 Search in Google Scholar

R.S. Patil, M.D. Uplane, P.S. Patil, “Structural and optical properties of electrodeposited molybdenum oxide thin films”, Appl. Surf. Sci., Vol. 252, No. 23, 2006, pp. 8050–8056.10.1016/j.apsusc.2005.10.016 Search in Google Scholar

JCPDS data card no. 05-0506. Search in Google Scholar

S. Ashraf, C.S. Blackman, G. Hyett, I.P. Parkin, “Aerosol assisted chemical vapour deposition of MoO3 and MoO2 thin films on glass from molybdenum polyoxometallate precursors; thermophoresis and gas phase nanoparticle formation”, J. Mater. Chem., Vol. 16, No. 35, 2006, pp. 3575– 3582.10.1039/b607335b Search in Google Scholar

B. D. Cullity, Elements of X-ray diffraction, Addison-Wesley Publishing Co., 1956. Search in Google Scholar

R. S. Patil, M.D. Uplane, P. S. Patil, “Electrosynthesis of Electrochromic Molybdenum Oxide Thin Films with Rod-Like Features”, Int. J. Electrochem. Sci., Vol. 3, 2008, pp. 259 – 265. Search in Google Scholar

G. E. Patil D. D. Kajale, P. T. Ahire, D. N. Chavan, N. K. Pawar, S. D. Shinde, V. B. Gaikwad, G. H. Jain, “Synthesis, characterization and gas sensing performance of SnO2 thin films prepared by spray pyrolysis”, Bulletin of Material Science Vol. 34, No. 1, 2011, pp.1–9.10.1007/s12034-011-0045-0 Search in Google Scholar

G. E Patil, D. D. Kajale, V. B. Gaikwad and G. H. Jain, “Nanocrystalline Tin Oxide Thin Film as a Low Level H2S Gas Sensor” International Journal of Nanoscience, Vol. 10, No. 4, 2011, pp. 1-5.10.1142/S0219581X11009398 Search in Google Scholar

G. H. Jain and L. A. Patil, “CuO-doped BSST thick film resistors for ppb level H2S gas sensing at room temperature”, Sensors and Actuators B, Vol. 123, 2007, pp. 246-253.10.1016/j.snb.2006.08.026 Search in Google Scholar

Franke, M.E., Koplin, T.J., Simon, U., “Metal and metal oxide nanoparticles inchemiresistors: does the nanoscale matter?”, Small Vol. 2, 2006, p.36–50.10.1002/smll.20050026117193551 Search in Google Scholar

Rothschild A., Komem, Y., “The effect of grain size on the sensitivity of nanocrystalline metal-oxide gas sensors”, Journal of Applied Physics, Vol. 95, 2004, pp. 6374–6380.10.1063/1.1728314 Search in Google Scholar

G. E. Patil, G. H. Jain, “Nanocrystalline CdSnO3 thin film as highly sensitive ethanol sensor”, Proceedings of 5th International Conference on Sensing Technology, ICST 2011, (2011), Article Number: 1569476109, pp. 260-263. Search in Google Scholar

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