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  • In Jour Smart Sensing And Intelligent Systems

 

research-article | 30-November-2019

Study on the suitability of ZnO thin film for dynamic pressure sensing application

pressure sensor. Various methods such as sputtering (Hoon et al., 2011; Kutepova and Hall, 1998; Xia et al., 2013; Yoon and Kim, 2006; Rajan et al., 2017; Munje et al., 2017; Nowek et al., 2016; Okada et al., 2013; Joshi et al., 2012; Joshi et al., 2013a; Joshi et al., 2013b; Alias et al., 2013; Chang et al., 2002; Bachari et al., 1999; Kang et al., 2015), Solgel (Foo et al., 2014; Nurulfadzilah et al., 2014; Chan et al., 2016; Md Sin et al., 2011; Gupta et al., 2016; Nithya and Radhakrishnan, 2012

Suma M. N., Venkateswarlu Gaddam, M. V. N. Prasad, M. M. Nayak, K. Rajanna

International Journal on Smart Sensing and Intelligent Systems, Volume 13 , ISSUE 1, 1–9

Research Article | 06-December-2011

Copper (II) oxide thin film for methanol and ethanol sensing

A nanostructured copper (II) oxide film deposited by reactive DC-magnetron sputtering technique, has been studied for static sensor response towards methanol and ethanol by operating temperature and analyte concentration modulations. The optimum operating temperature (Topt) for the sensing of methanol and ethanol is observed to be 350 ˚C and 400 ˚C, respectively. The maximum sensitivity observed for 2500 ppm methanol and ethanol is 29% and 15.4% respectively. Another important observation is

Mitesh Parmar, K. Rajanna

International Journal on Smart Sensing and Intelligent Systems, Volume 4 , ISSUE 4, 710–725

Research Article | 13-December-2017

A NOVEL METHOD FOR THE IMPROVEMENT IN THERMOELECTRIC PROPERTY OF TIN OXIDE THIN FILMS AND ITS APPLICATION IN GAS SENSING

Tin oxide thin film deposited on to glass substrates by the process of DC reactive magnetron sputtering has been used in our work. These films were characterized for their thermoelectric behavior. Further, a novel method has been developed to enhance the Seebeck coefficient of these films. Prior to the oxide film deposition on the glass substrate, thin metal films have been deposited at the two ends of the sample. High conductivity metals such as chromium, silver and copper were used for this

Anuradha S, K. Rajanna

International Journal on Smart Sensing and Intelligent Systems, Volume 1 , ISSUE 2, 498–511

Research Article | 15-February-2020

Thickness Measurement of Aluminum Thin Film using Dispersion Characteristic  of Surface Acoustic Wave

In this study, we suggest a method to measure the thickness of thin films nondestructively using the dispersion characteristics of a surface acoustic wave propagating along the thin film surface. To measure the thickness of thin films, we deposited thin films with different thicknesses with range of 200~1000 nm on a Si(100) wafer by controlling the deposition time by DC sputtering technique. The thickness of the thin films was measured using a scanning electron microscope. Subsequently, the

Ik Keun Park, Tae Sung Park

International Journal on Smart Sensing and Intelligent Systems, Volume 7 , ISSUE 5, 1–4

Research Article | 15-February-2020

Ammonia sensing properties of ZnO nanoparticles on flexible substrate

We report the ammonia gas sensing properties of ZnO nanoparticles on flexible substrates. The flexible platform contains Ti/Pt interdigitated electrodes for gas detection and a micro heater device. The Ti/Pt film has been deposited by Magnetron Sputtering with thickness of 5nm and 100 nm respectively. The circuit patterning has been fabricated by standard photolithography and femtosecond laser ablation processes. ZnO thin film has been deposited by drop coating process with a thickness of 275

M. Acuautla, Sandrine Bernardini, Marc Bendahan, L. Gallais

International Journal on Smart Sensing and Intelligent Systems, Volume 7 , ISSUE 5, 1–4

Article | 03-November-2017

Enhanced LPG response characteristics of SnO2 thin film based sensors loaded with Pt clusters

Divya Haridas, Arijit Chowdhuri, K. Sreenivas, Vinay Gupta

International Journal on Smart Sensing and Intelligent Systems, Volume 2 , ISSUE 3, 503–514

Article | 03-November-2017

MECHANISM OF TRACE LEVEL H2S GAS SENSING USING RF SPUTTERED SnO2 THIN FILMS WITH CuO CATALYTIC OVERLAYER

Arijit Chowdhuri, Divya Haridas, K. Sreenivas, Vinay Gupta

International Journal on Smart Sensing and Intelligent Systems, Volume 2 , ISSUE 4, 540–548

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