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Found 16 results
Filters: Author is Lu, W. C. [Clear All Filters]
“Hydrogen adatom interaction on graphene: A first principles study”, Carbon, vol. 131, pp. 137-141, 2018.
, “A stable C2/m phase of H2S at 150-175 GPa”, Japanese Journal of Applied Physics, vol. 57, p. 083101, 2018.
, “High-pressure structures of yttrium hydrides”, Journal of Physics-Condensed Matter, vol. 29, p. 325401, 2017.
, “Hybrid silicon-carbon nanostructures for broadband optical absorption”, RCS Advances, vol. 7, pp. 8070-8076, 2017.
, “Optical absorption properties of Ge2-44 and P-doped Ge nanoparticles”, Computational Materials Science, vol. 140, pp. 148-158, 2017.
, “Theoretical search for possible Au-Si crystal structures using a genetic algorithm”, Physical Review B, vol. 95, p. 134109, 2017.
, “How Big Does a Si Nanocluster Favor Bulk Bonding Geometry?”, Journal of Physical Chemistry C, vol. 120, pp. 1966-1970, 2016.
, “Lattice distortion and electron charge redistribution induced by defects in graphene”, Carbon, vol. 110, pp. 330-335, 2016.
, “Studies on Optical Properties of Si-220 Nanoclusters via Time-dependent Density Functional Theory Calculations”, Chemical Research in Chinese Universities, vol. 32, pp. 1028-1033, 2016.
, “Tight-binding calculation studies of vacancy and adatom defects in graphene”, Journal of Physics-Condensed Matter, vol. 28, p. 115001, 2016.
, “Efficient and accurate treatment of electron correlations with Correlation Matrix Renormalization theory”, Scientific Reports, vol. 5, p. 13478, 2015.
, “Si-78 double cage structure and special optical properties”, Physical Chemistry Chemical Physics, vol. 17, pp. 27734-27741, 2015.
, “Structures and stability of metal-doped GenM (n=9, 10) clusters”, Aip Advances, vol. 5, p. 067159, 2015.
, “Theoretical study on the structures and optical absorption of Si-172 nanoclusters”, Nanoscale, vol. 7, pp. 14444-14451, 2015.
, “Three-center tight-binding potential model for C and Si”, Physical Review B, vol. 92, p. 035206, 2015.
, “Electronic and magnetic properties of triangular graphene nanoflakes embedded in fluorographene”, Chemical Physics Letters, vol. 572, pp. 48-52, 2013.
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