Search Results - "Birajadar, Ravikiran B."
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Low-concentration ammonia gas sensing using polyaniline nanofiber thin film grown by rapid polymerization technique
Published in Journal of materials science. Materials in electronics (01-10-2022)“…A thin film of polyaniline (PANI) nanofiber was synthesized by a simple and inexpensive rapid chemical polymerization technique on glass substrate at room…”
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Study of room temperature LPG sensing behavior of polyaniline thin film synthesized by cost effective oxidative polymerization technique
Published in Journal of materials science. Materials in electronics (01-07-2015)“…Polyaniline thin films doped with an inorganic acid were deposited on glass substrate using simple and cost effective oxidative polymerization technique…”
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Enhancement of LPG sensing properties in nanocrystalline zinc oxide thin film by high electronic excitation
Published in Sensors and actuators. B, Chemical (15-12-2011)“…We present an efficient detection of liquefied petroleum gas (LPG) using zinc oxide (ZnO) thin films irradiated with swift heavy ions (SHI) of 120 MeV Au 9+…”
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Nanostructured p-CuIn3Se5/n-CdS heterojunction engineered using simple wet chemical approach at room temperature for photovoltaic application
Published in Materials chemistry and physics (16-05-2011)“…Herein, we report engineering of nanostructured p-CuIn3Se5/n-CdS heterojunction thin film on a glass substrate, which is prepared at room temperature using…”
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Effects of air annealing on CdS quantum dots thin film grown at room temperature by CBD technique intended for photosensor applications
Published in Materials research bulletin (01-11-2012)“…The effect of different intensities (40, 60 100 and 200W) of light on CdS quantum dots thin film annealed at 350°C indicating enhancement in (a) photo-current…”
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Nanostructured p-CuIn 3Se 5/ n-CdS heterojunction engineered using simple wet chemical approach at room temperature for photovoltaic application
Published in Materials chemistry and physics (2011)“…► The Nanostructured p-CuIn 3Se 5/ n-CdS heterojunction engineered using simple wet chemical approach at room temperature on glass substrates. ► The interface,…”
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