• A. Nie, Y. Cheng, Y. Zhu, H. Asayesh-Ardakani, R. Tao, F. Mashayek, Y. Han, U. Schwingenschlögl, R. F. Klie, S. Vaddiraju, R. Shahbazian-Yassar, ‘Lithiation-induced Shuffling of Atomic Stacks’, Manuscript Under Review, Nature Materials, 2014
  • G. Ramos-Sanchez, M. Albornoz, Y-H. Yu, Z. Cheng, V. Vasiraju, S. Vaddiraju, F. El Mellouhi, P. B. Balbuena, ‘Organic molecule functionalized Zn3P2 nanowires for photochemical water splitting and H2 production: DFT and Experimental Analyses’, Manuscript Under Review, International Journal of Hydrogen Energy, 2014.
  • L. Brockway, V. Vasiraju, M. K. Sunkara, S. Vaddiraju, ‘Efficient thermoelectrics using resonant-level scattering in dually-doped ZnO nanowire-bulk assemblies’ Manuscript Under Review, ACS Applied Materials & Interfaces, 2014.
  • V. Vasiraju, Y. Kang, S. Vaddiraju, ‘Surface decoration of semiconductor nanowires as a strategy for imparting them stabilities against water- and acid-assisted degradation’, Accepted for publication, Physical Chemistry Chemical Physics, 2014.
  • Y. Kang, S. Vaddiraju, ‘Solid-State Phase Transformation as a Route for the Simultaneous Synthesis and Welding of Single-crystalline Mg2Si Nanowires’, Chemistry of Materials, 26, 2814, 2014.
  • L. Brockway, V. Vasiraju, S. Vaddiraju, ‘Compositional disorder and its effect on the thermoelectric performance of Zn3P2 nanowire-copper nanoparticle composites, Nanotechnology, 25, 125402, 2014.
  • L. Brockway, V. Vasiraju, H. Asayesh-Ardakani, R. Shahbazian-Yassar, S. Vaddiraju, ‘Thermoelectric properties of bulk Zn3P2 nanowire assemblies’, Nanotechnology, 25, 145401, 2014.
  • L. Brockway, M. Van Laer, Y. Kang, S. Vaddiraju, ‘Large-scale synthesis and in situ functionalization of Zn3P2 and Zn4Sb3 nanowire powders’, Physical Chemistry Chemical Physics, 15, 6260-6267, 2013.
  • Y. Kang, L. Brockway, S. Vaddiraju, ‘A simple phase transformation strategy for converting silicon nanowires into metal silicide nanowires: Magnesium silicide’, Materials letters, 100, 106-110, 2013.
  • L. Brockway, C. Pendyala, J. Jasinski, M. K. Sunkara, S. Vaddiraju, ‘A postsynthesis decomposition strategy for group III–nitride quantum wires’, Crystal Growth & Design, 11(10), 4559-4564, 2011.
  • M. E. Alf, A. Asatekin, M. C. Barr, S. H. Baxamusa, H. Chelawat, G. Ozaydin-Ince, C. D. Petruczok, R. Sreenivasan, W. E. Tenhaeff, N. J. Trujillo, S. Vaddiraju, J. Xu, Karen K. Gleason, ‘Chemical vapor deposition of conformal, functional, and responsive polymer films’, Advanced Functional Materials, 22, 1993-2027, 2010.
  • Chelawat, S. Vaddiraju, K. K. Gleason, ‘Conformal, conducting poly(3,4-ethylenedioxythiophene) thin films deposited using bromine as the oxidant in a completely dry oxidative chemical vapor deposition process’, Chemistry of Materials, 22, 2864, 2010.
  • S. Vaddiraju, K. K. Gleason, ‘Selective sensing of volatile organic compounds using novel conducting polymer-metal nanoparticle hybrids’, Nanotechnology, 21, 125503, 2010.
  • C. Pendyala, S. Vaddiraju, J. H. Kim, J. Jacinski, Z. Q. Chen, M. K. Sunkara, ‘Self-nucleation and growth of group III-antimonide nanowires’, Semiconductor Science and technology, 25, 024014, 2010.
  • S. Vaddiraju, H. Cebeci, Karen K. Gleason, Brian L. Wardle, ‘Hierarchical multifunctional composites by conformally coating aligned carbon nanotube arrays with conducting polymer’, ACS Applied Materials and Interfaces, 1, 2565, 2009.
  • J. Thangala, S. Vaddiraju, S. Malhotra, V. Chakrapani, M. K. Sunkara, ‘A hot-wire chemical vapor deposition (HWCVD) method for metal oxide and their alloy nanowire arrays’, Thin Solid Films, 517, 3600, 2009.
  • S. Vaddiraju, K. Senecal, Karen K. Gleason, ‘Novel strategies for the deposition of -COOH conducting copolymer films and assembling inorganic nanoparticles on conducting polymer platforms’, Advanced Functional Materials, 18, 1929, 2008.
  • S. Vaddiraju, M. K. Sunkara, A. H. Chin, C. Z. Ning, G. R. Dholakia, M. Meyyappan, ‘Synthesis of group III-antimonide nanowires’, Journal of Physical Chemistry C, 111(20), 7339, 2007.