Journal of Sensor Technology

Journal of Sensor Technology

ISSN Print: 2161-122X
ISSN Online: 2161-1238
www.scirp.org/journal/jst
E-mail: jst@scirp.org
"Fabrication of Nanocrystalline TiO2 Thin Film Ammonia Vapor Sensor"
written by Shailesh Pawar, Manik Chougule, Sanjay Patil, Bharat Raut, Dhanaji Dalvi, Pramod Patil, Shashwati Sen, Pradeep Joshi, Vikas Patil,
published by Journal of Sensor Technology, Vol.1 No.1, 2011
has been cited by the following article(s):
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[1] TiO2 Hollow Nanofiber/Polyaniline Nanocomposites for Ammonia Detection at Room Temperature
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[2] Synthesis and Characterization of Iron Doped Titanium Dioxide (Fe: TiO2) Nanoprecipitate at Different pH Values for Applications of Self-Cleaning Materials
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[4] A fine physical chemical study of plasma polymerized organosilicon thin films for VOCs BTEX selective gas sensing
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[5] The microstructure, optical and gas sensing properties of bilayer TiO2/ZnO systems in terms of annealing temperature
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[6] Experimental investigation on the impacts of annealing temperatures on titanium dioxide nanoparticles structure, size and optical properties synthesized through sol …
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[7] Synthesis of ZnO Nanorod/TiO2 Nanotube and its Application as a Resistive Gas Sensor
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[8] Synthesis, Characterization, and NH3 Sensing Properties of (Zn0. 7 Mn0. 3-x Cex Fe2O4) Nano-Ferrite
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[9] Fabrication and characterisation of NB: TIO2 thin film for hydrogen gas sensing application.
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[10] Synthesis of CdS nanoparticle by sol-gel method as low temperature NO2 sensor
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[11] Room temperature ammonia gas sensing characteristics of copper oxide-tin oxide composite thin films prepared by radio frequency magnetron sputtering technique
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[12] In Situ Growing Double-Layer TiO2 Nanorod Arrays on New-Type FTO Electrodes for Low-Concentration NH3 Detection at Room Temperature
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[13] Influence of post-process annealing temperature on structural, optical, mechanical and corrosion properties of mixed TiO2WO3 thin films
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[14] Synthesis and characterization of yttrium doped titania nanoparticles for gas sensing activity
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[15] A review of chipless remote sensing solutions based on RFID technology
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[16] Gas Sensing Properties of Thick Films Prepared Using Pt Loaded TiO2 Nano Particles
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[17] Thermal modulation of microfabricated cantilever-based chemical sensors for improved selectivity
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[18] Methods of reducing ammonia emission from animal husbandry to protect animal feeding operators
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[19] Preparation of Mixed Phase (Anatase/Rutile) TiO2 Nanopowder by Simple Sol Gel Method
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[20] Effect of change in titanium isopropoxide (TTIP) concentration on the preparation of TiO2 nanopowder
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[21] Influence of Ba doping concentration on the physical properties and gas sensing performance of ZnO nanocrystalline films: Automated nebulizer spray pyrolysis …
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[22] Surface characterization and gas sensing performance of yttrium doped TiO2 nanofilms prepared by automated nebulizer spray pyrolysis (ANSP)
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[23] Hydrogen, ethanol and ammonia gas sensing properties of nano-structured titanium dioxide thick films
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[24] Effect of thickness on the physical properties and gas sensing application: anatase titanium dioxide nanofilms by automated nebulizer spray pyrolysis (ANSP)
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[25] CdS/PMMA-BASED INORGANIC/ORGANIC HETEROJUNCTION FOR H2S GAS SENSING
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[26] Effect of TiO2 Film Thickness Synthesized by Pulse Spray Pyrolysis Technique on the Response to UV-Illumination
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[27] Influence of Ba doping concentration on the physical properties and gas sensing performance of ZnO nanocrystalline films: Automated nebulizer spray pyrolysis ( …
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[28] Effect of Annealing Temperature on Structural, Electrical and Optical Properties of TiO2 Nanopowder
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[29] Automated nebulizer sprayed tin doped titanium dioxide (SnxTi1-xO2) anatase nanofilms properties, gas sensing performance
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[30] Role of molar concentration in structural, optical and gas sensing performance of anatase phase TiO2 nanofilms: automated nebulizer spray pyrolysis (ANSP) …
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[31] THERMAL POST-TREATMENT OF TiO2 FILMS VIA SOL-GEL FOR ENHANCED CORROSION RESISTANCE
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[32] EMERGING TRENDS IN BASIC AND APPLIED SCIENCES
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[33] pH deeds on structural, optical, electrical and gas sensing performance of TiO 2 nanofilms by automated nebulizer spray pyrolysis technique
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[34] Mg-doped TiO2 thin films deposited by low cost technique for CO gas monitoring
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[35] pH deeds on structural, optical, electrical and gas sensing performance of TiO2 nanofilms by automated nebulizer spray pyrolysis technique
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[36] Synthesis of titanium dioxide (TiO2) nanofiber and nanotube using different chemical method
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[37] H2S gas sensing studies of CdXZn1−XO thin films synthesized at low temperature by advanced spray pyrolysis technique
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[38] H 2 S gas sensing studies of Cd X Zn 1− XO thin films synthesized at low temperature by advanced spray pyrolysis technique
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[39] Mg-doped TiO 2 thin films deposited by low cost technique for CO gas monitoring
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[40] CVD Deposited Titania Thin Films for Gas Sensors with Improved Operating Characteristics
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[41] Synthesis of Titanium Dioxide Nano Fiber and Nano Tube Using Different Chemical Method
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[42] Titanium dioxide (tio2) sol gel coating on 316l stainless steel
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[43] Nanostructured TiO 2 films: Enhanced NH 3 detection at room temperature
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[44] Controlling surface segregation and tuning silver ion release of reactively sputtered Ag/TiOx nanocomposites
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[45] Nanostructured TiO2 films: enhanced NH3 detection at room temperature
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[46] Conductive Polymer Dye Sensitive Solar Cell (DSSC) for Improving the Efficiency
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[47] Characterization of Nanocrystalline Titania Thin Film Deposited by Spray Pyrolysis Technique
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[48] Nanostructured TiO< sub> 2 films: Enhanced NH< sub> 3 detection at room temperature
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[49] Nanocomposite carbonaceous-palladium thin films for ammonia sensors
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[50] Novel method for fabrication of polyaniline–CdS sensor for H2S gas detection
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[51] Novel method for fabrication of polyaniline–CdS sensor for H< sub> 2 S gas detection
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[52] Novel method for fabrication of polyaniline–CdS sensor for H 2 S gas detection
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[53] New method for fabrication of CSA doped PANi-thin-film ammonia sensor
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[54] New Method for Fabrication of CSA Doped PANi-${\ rm TiO} _ {2} $ Thin-Film Ammonia Sensor
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[55] New Method for Fabrication of CSA Doped PANi- Thin-Film Ammonia Sensor
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[56] Doping of Cr in TiO2 Creates Variation in Energy Band Gap Value for Enhancing its Application in Photovoltaic
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