Sreeram Vaddiraju, Ph.D.

Affiliations: 
2006 University of Louisville, Louisville, KY, United States 
Area:
Chemical Engineering, Materials Science Engineering
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"Sreeram Vaddiraju"

Parents

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Mahendra K. Sunkara grad student 2006 University of Louisville
 (Chemical and reactive vapor transport methods for the synthesis of inorganic nanowires and nanowire arrays.)
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Publications

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Vance CC, Vaddiraju S, Karthikeyan R. (2018) Water disinfection using zinc phosphide nanowires under visible light conditions Journal of Environmental Chemical Engineering. 6: 568-573
Ali A, Chen Y, Vasiraju V, et al. (2017) Nanowire-based thermoelectrics. Nanotechnology. 28: 282001
Nie A, Gan LY, Cheng Y, et al. (2016) Ultrafast and Highly Reversible Sodium Storage in Zinc-Antimony Intermetallic Nanomaterials Advanced Functional Materials. 26: 543-552
Vasiraju V, Brockway L, Balachandran S, et al. (2015) Shear induced simultaneous consolidation and alignment of silicon nanowires into ingots using equal channel angular extrusion (ECAE) Materials Research Express. 2
Nie A, Cheng Y, Zhu Y, et al. (2014) Lithiation-induced shuffling of atomic stacks. Nano Letters. 14: 5301-7
Brockway L, Vasiraju V, Sunkara MK, et al. (2014) Engineering efficient thermoelectrics from large-scale assemblies of doped ZnO nanowires: nanoscale effects and resonant-level scattering. Acs Applied Materials & Interfaces. 6: 14923-30
Vasiraju V, Kang Y, Vaddiraju S. (2014) Non-conformal decoration of semiconductor nanowire surfaces with boron nitride (BN) molecules for stability enhancement: degradation-resistant Zn3P2, ZnO and Mg2Si nanowires. Physical Chemistry Chemical Physics : Pccp. 16: 16150-7
Brockway L, Vasiraju V, Asayesh-Ardakani H, et al. (2014) Thermoelectric properties of large-scale Zn3P2 nanowire assemblies. Nanotechnology. 25: 145401
Brockway L, Vasiraju V, Vaddiraju S. (2014) Compositional disorder and its effect on the thermoelectric performance of Zn₃P₂ nanowire-copper nanoparticle composites. Nanotechnology. 25: 125402
Jha M, McCreary M, Vaddiraju S, et al. (2014) Low temperature route for synthesis of cadmium selenide quantum dots and their application in fabricating a QD-LED Mrs Proceedings. 1630
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