Sudhakar Shet, Ph.D.

Affiliations: 
2009 New Jersey Institute of Technology, Newark, NJ, United States 
Area:
Materials Science Engineering, Metallurgy Engineering, Energy
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"Sudhakar Shet"

Parents

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Nuggemalli M. Ravindra grad student 2009 NJIT
 (Synthesis and characterization of metal oxide semiconductors for photoelectrochemical hydrogen production.)
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Publications

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Shet S, Yan Y, Turner J, et al. (2013) Effect of Gas Ambient and Varying RF Sputtering Power for Bandgap Narrowing of Mixed (ZnO:GaN) Thin Films for Solar Driven Hydrogen Production Journal of Power Sources. 232: 74-78
Shet S, Yan Y, Ravindra N, et al. (2013) Photoelectrochemical behavior of mixed ZnO and GaN (ZnO:GaN) thin films prepared by sputtering technique Applied Surface Science. 270: 718-721
Turner J, Ravindra NM, Shet S, et al. (2012) Influence of growth conditions on Ga and N Co-doped Zinc oxide films and its effect on PEC response for solar driven hydrogen production Emerging Materials Research. 1: 76-80
Shet S, Yan Y, Wang H, et al. (2012) ZnO:GaN thin films for photoelectrochemical water splitting application Emerging Materials Research. 1: 201-204
Shet S, Chen L, Tang H, et al. (2012) Influence of Gas Flow Rate for Formation of Aligned Nanorods in ZnO Thin Films for Solar-Driven Hydrogen Production Jom. 64: 526-530
Shet S, Ahn K, Nuggehalli R, et al. (2011) Phase separation in Ga and N co-incorporated ZnO films and its effects on photo-response in photoelectrochemical water splitting Thin Solid Films. 519: 5983-5987
Abedrabbo S, Lahlouh B, Shet S, et al. (2011) Room-temperature silicon band-edge photoluminescence enhanced by spin-coated sol–gel films Scripta Materialia. 65: 767-770
Shet S, Ahn KS, Deutsch T, et al. (2010) Synthesis and characterization of band gap-reduced ZnO:N and ZnO:(Al,N) films for photoelectrochemical water splitting Journal of Materials Research. 25: 69-75
Chen L, Shet S, Tang H, et al. (2010) Amorphous copper tungsten oxide with tunable band gaps Journal of Applied Physics. 108: 043502
Chen L, Shet S, Tang H, et al. (2010) Electrochemical deposition of copper oxide nanowires for photoelectrochemical applications Journal of Materials Chemistry. 20: 6962
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