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个人简介

2014/01至今: 上海交通大学材料科学与工程学院,教授 2009/01至2013/12: 上海交通大学材料科学与工程学院,副教授 2007/08至2008/02: 日本佐贺大学VBL实验室,特别研究员 2005/06至2008/12: 上海交通大学材料科学与工程学院,讲师 1999/09至2005/05: 上海交通大学材料科学与工程学院,工学博士 2001/10至2003/03: 日本京都大学材料工学系,文部省留学生 1992/09至1996/06: 上海交通大学材料科学系,工学学士

研究领域

基于自然生物结构遗态材料的设计、性能、及机理研究 热电材料

近期论文

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J. J. Gu, W. Zhang, H. L. Su, T. X. Fan, S. M. Zhu, Q. L. Liu, D. Zhang*, “Morphology Genetic Materials Templated from Natural Species”, Adv Mater 2014 DOI:10.1002/adma.201401413. In press. D. X. Liu, J. J. Gu*, Q. L. Liu, Y. W. Tan, Z. Li, W. Zhang, Y. S. Su, W. X. Li, A. J. Cui, C. Z. Gu, D. Zhang*, “Metal-Organic Frameworks Reactivate Deceased Diatoms to be Efficient CO2 Absorbents”, Adv Mater 2014, 26, 1229. Inside Front Cover. Y. W. Tan, J. J. Gu*, W. Xu, Z. P. Chen, D. X. Liu, Q. L. Liu, D. Zhang*, “Reduction of CuO Butterfly Wing Scales Generates Cu SERS Substrates for DNA Base Detection”, ACS Appl Mater Inter 2013, 5, 9878. X. N. Zang, Y. W. Tan, Z. Lv, J. J. Gu*, D. Zhang*, “Moth wing scales as optical pH sensors” Sensor Actuat B-Chem 2012, 166, 824. Y. W. Tan, J. J. Gu*, L. H. Xu, X. N. Zang, D. Liu, W. Zhang, Q. L. Liu, S. M. Zhu, H. L. Su, C. L. Feng, G. L. Fan, D. Zhang*, “High-Density Hotspots Engineered by Naturally Piled-Up Subwavelength Structures in Three-Dimensional Copper Butterfly Wing Scales for Surface-Enhanced Raman Scattering Detection”, Adv Funct Mater 2012, 22, 1578. Inside Front Cover. X. N. Zang, Y. Y. Ge, J. J. Gu*, S. M. Zhu, H. L. Su, C. L. Feng, W. Zhang, Q. L. Liu, D. Zhang*, “Tunable optical photonic devices made from moth wing scales: a way to enlarge natural functional structures' pool”, J Mater Chem 2011, 21, 13913. Y. W. Tan, X. N. Zang, J. J. Gu*, D. X. Liu, S. M. Zhu, H. L. Su, C. L. Feng, Q. L. Liu, W. M. Lau, W. J. Moon, D. Zhang*, “Morphological Effects on Surface-Enhanced Raman Scattering from Silver Butterfly Wing Scales Synthesized via Photoreduction” Langmuir 2011, 27, 11742. Y. W. Tan, J. J. Gu*, X. N. Zang, W. Xu, K. C. Shi, L. H. Xu, D. Zhang*, “Versatile fabrication of intact three-dimensional metallic butterfly wing scales with hierarchical sub-micrometer structures”, Angew Chem Int Ed 2011, 50, 8307. Highlighted by Nature, “Materials: Butterfly wings turned to metal”, Nature 2011, 476, 9. Y. Chen, X. N. Zang, J. J. Gu*, S. M. Zhu, H. L. Su, D. Zhang*, X. B. Hu, Q. L. Liu, W. Zhang, D. X. Liu, “ZnO single butterfly wing scales: synthesis and spatial optical anisotropy”, J Mater Chem 2011, 21, 6140. Highlighted by Royal Society of Chemistry, UK, “A single scale tells more than a whole wing”. Y. Chen, J. J. Gu*, D. Zhang*, S. M. Zhu, H. L. Su, X. B. Hu, C. L. Feng, W. Zhang, Q. L. Liu, A. R. Parker, “Tunable three-dimensional ZrO2 photonic crystals replicated from single butterfly wing scales”, J Mater Chem 011, 21, 15237. Y. Chen, J. J. Gu*, S. M. Zhu, T. X. Fan, D. Zhang*, Q. X. Guo, “Iridescent large-area ZrO2 photonic crystals using butterfly as templates”, Appl Phys Lett 2009, 94. J. J. Gu*, D. Zhang, Q. X. Guo, “Giant Seebeck coefficient decrease in polycrystalline materials with highly anisotropic band structures: Implications in seeking high-quality thermoelectric materials”, Solid State Commun 2008, 148, 10. J. J. Gu*, M. W. Oh, H. Inui, D. Zhang, “Anisotropy of mobility ratio between electron and hole along different orientations in ReGexSi1.75-x thermoelectric single crystals”, Phys Rev B 2005, 71.

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