Biography

Dr. Hailong Zhou

University of California at Los Angeles, USA

Postdoctoral Researcher


Email: hailong@ucla.edu, zhou.hailong@gmail.com


Qualifications

2003-2007 Ph.D., National University of Singapore,Physics Department

1999-2002 M.S., Shandong University,Crystal Materials

1995-1999 B.S., Shandong University, Physics


Publications (selected)


  1. Synthesis of PtPd bimetal nanocrystals with controllable shape, composition and their tunable catalytic properties, X. Huang, Y. Li, Y. Li, H. L. Zhou, X. Duan, and Y. Huang, Nano Letters, Online published, DOI: 10.1021/nl301931m, (2012).
  2. Simplifying the creation of dumbbell-like Cu-Ag nanostructures and their enhanced catalytic activity, X. Huang, Y. Li, H. L. Zhou, X. Zhong, X. Duan, and Y. Huang, Chemistry - A European Journal, Online published, DOI: 10.1002/chem.201200817, (2012).
  3. High-frequency self-aligned graphene transistors with transferred gate stacks, R. Cheng, J. Bai, L. Liao, H. L. Zhou, Y. Chen, L. Liu, Y. C. Lin, S. Jiang, Y. Huang, and X. Duan, Proceedings of the National Academy of Sciences, Online published, doi:10.1073/pnas.1205696109, (2012).
  4. Domain Wall Motion in Synthetic Co2Si Nanowires, G. Liu, Y.-C. Lin, L. Liao, L. Liu, Y. Chen, Y. Liu, N. O. Weiss, H. L. Zhou, Y. Huang, and X. Duan, Nano Letters, 12, 1972-1976, (2012).
  5. Towards highly efficient photocatalysts using semiconductor nanoarchitectures, H. L. Zhou, Y. Q. Qu, T. Zeid, X. Duan, Energy & Enviromental Science, 5, 6732-6743, (2012).
  6. Scalable Fabrication of Self-Aligned Graphene Transistors and Circuits on Glass, L. Liao, J. Bai, R. Cheng, H. L. Zhou, L. Liu, Y. Liu, Y. Huang, X. Duan, Nano Letters, 12, 2653-2657, (2012).
  7. Plasmon-resonance-enhanced multicolour photodetection by grapheme, Y. Liu, R. Cheng, L. Liao, H. L. Zhou, J. Bai, G. Liu, L. Liu, Y. Huang, X. Duan, Nature Communications, 2, 579, (2011).
  8. A systematic study of atmospheric pressure chemical vapor deposition growth of large-area monolayer grapheme, L. Liu*, H. L. Zhou*, R. Cheng, Y. Chen, Y. C. Lin, Y. Qu, J. Bai, I. A. Ivanov, G. Liu, Y. Huang, X. Duan (*Authors with equal contribution), Journal of Materials Chemistry, online Advance Article, DOI:10.1039/C1JM14272K, (2011).
  9. Porous silicon nanowires, Y. Qu, H. L. Zhou, X. Duan, Nanoscale, 3, 4060 (2011).
  10. Effect of precursor flux on compositional evolution in InP1−xSbx nanowires grown via self-catalyzed vapor–liquid–solid process, C. Ngo, H. L. Zhou, M. Mecklenburg, M. Pozuelo, B. C. Regan, Q. F. Xiao, V. B. Shenoy, R. F. Hicks, S. Kodambaka, Journal of Crystal Growth 336, 14 (2011).
  11. Self-catalyzed growth of InP/InSb axial nanowire heterostructures, M. Pozuelo, H. L. Zhou, S. Lin, S. A. Lipman, M. S. Goorsky, R. F. Hicks and S. Kodambaka, Journal of Crystal Growth 329, 6 (2011).
  12. Top-gated chemical vapor deposition grown graphene transistors with current saturation, J. Bai, L. Liao, H. L. Zhou, R. Cheng, L. Liu, Y. Huang, X. Duan, Nano letters, 11, 2555 (2011).
  13. Self-catalyzed vapor–liquid–solid growth of InPSb nanostructures, H. L. Zhou, M. Pozuelo, S. Kodambaka, R. F. Hicks, Journal of Crystal Growth 319, 25 (2011).
  14. Self-catalyzed vapor–liquid–solid growth of InP/InAsP core–shell nanopillars, V. Evoen, H. L. Zhou, L. Gao, M. Pozuelo, B. Liang, J. Tatebeyashi, S. Kodambaka, D. L. Huffaker, R. F. Hicks, Journal of Crystal Growth 314, 34 (2011).
  15. Engineering parallel and perpendicularly polarized photoluminescence from a single semiconductor nanowire by crystal phase control, T. B. Hoang, A. F. Moses, A. Lyubomir, H. L. Zhou, Dasa L. Dheeraj, A. T. J. van Helvoort, B. O. Fimland and H. Weman, Nano letters 10, 2927 (2010).
  16. Zincblende to wurtzite transition during the self-catalyzed growth of InP nanostructures, M. Pozuelo, S. V. Prikhodko, R. Grantab, H. L. Zhou, L. Gao, S. D. Sitzman, V. Gambin, V. B. Shenoy, R. F. Hicks and S. Kodambaka, Journal of Crystal Growth 312, 2305 (2010).
  17. Heterostructured III-V nanowires with mixed crystal phases grown by Au-assisted molecular beam epitaxy, D. L. Dheeraj, H. L. Zhou, A. F. Moses, T. B. Hoang, A. T. J. van Helvoort, B. O. Fimland and H. Weman, Nanowires, chapter 2, ISBN 978-953-7619-79-4, (ed. P. Prete, InTech, 2010).
  18. Growth of heterostructured III-V nanowires by molecular beam epitaxy for photonic applications, D. L. Dheeraj, Hailong Zhou, A. F. Moses, T. B. Hoang, A. T. J. van Helvoort, B. O. Fimland and H. Weman, Proc. SPIE, 7608, 76081C (2010) (invited).
  19. Dark field transmission electron microscopy techniques for structural characterization of nanowire heterostructures, A. T. J. van Helvoort, D. L. Dheeraj, H. L. Zhou, S. Grønsberg, G. Patriarche, B. O. Fimland and H. Weman, J. Phys.: Conf. Ser. 241, 012084 (2010).
  20. Role of nonlinear effects in nanowire growth and crystal phase, V. G. Dubrovskii, N. V. Sibirev, G. E. Cirlin, A. D. Bouravleuv, Yu. B. Samsonenko, D. L. Dheeraj, H. L. Zhou, C. Sartel, J. C. Harmand, G. Patriarche and F. Glas, Physical Review B 80, 205305 (2009).
  21. Wurtzite GaAs/AlGaAs core-shell nanowires grown by molecular beam epitaxy, H. L. Zhou, T. B. Hoang, D. L. Dheeraj, A. T. J. van Helvoort, L. Liu, J. C. Harmand, B. O. Fimland, and H. Weman, Nanotechnology 20, 415701 (2009).
  22. Micro-photoluminescence study of single GaAsSb/GaAs radial and axial heterostructured core-shell nanowires, A. F. Moses, T. B. Hoang, D. L. Dheeraj, H. L. Zhou, B.O. Fimland and H. Weman, IOP Conference Series: Materials Science and Engineering 6, 012001 (2009).
  23. Observation of free exciton photoluminescence emission from single wurtzite GaAs nanowires, T. B. Hoang, A. F. Moses, H. L. Zhou, D. L. Dheeraj, B.O. Fimland and H. Weman, Appl. Phys. Lett. 94, 133105 (2009).
  24. Growth and structural characterization of GaAs/GaAsSb axial heterostructured nanowires, D. L. Dheeraj, G. Patriarche, H. L. Zhou, J.C. Harmand, H. Weman and B.O. Fimland, Journal of Crystal Growth 311, 1847 (2009).
  25. Growth and Characterization of Wurtzite GaAs Nanowires with Defect-Free Zinc Blende GaAsSb Inserts, D. L. Dheeraj, G. Patriarche, H. L. Zhou, T. B. Hoang, A. F. Moses, S. Grønsberg, A. T. J. van Helvoort, B. O. Fimland and H. Weman, Nano letters 8, 4459 (2008).


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