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顧佳俊

鎖定
顧佳俊,男,博士,上海交通大學材料科學與工程學院副教授,博士生導師,國家自然科學基金青年、面上項目函評專家,2012年入選教育部“新世紀優秀人才支持計劃”。 [1] 
中文名
顧佳俊
畢業院校
上海交通大學材料科學與工程學院
學位/學歷
博士
專業方向
材料學
任職院校
上海交通大學

顧佳俊人物經歷

2009/01至2013/12: 上海交通大學材料科學與工程學院,副教授
2007/08至2008/02: 日本佐賀大學VBL實驗室,特別研究員
2005/06至2008/12: 上海交通大學材料科學與工程學院,講師
1999/09至2005/05: 上海交通大學材料科學與工程學院,工學博士
2001/10至2003/03: 日本京都大學材料工學系,文部省留學生
1992/09至1996/06: 上海交通大學材料科學系,工學學士 [1] 

顧佳俊研究領域

基於自然生物結構遺態材料的設計、性能、及機理研究 [1] 
熱電材料

顧佳俊教授課程

《固體物理》、《量子力學導論》、《材料熱力學》 [1] 

顧佳俊學術成果

[1] 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.
[2] 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.
[3] 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.
[4] 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.
[5] 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.
[6] 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.
[7] 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.
[8] 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.
[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”.
[10] 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.
[11] 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.
[12] 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.
[13] 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.
論著: [1] J. J. Gu, D. Zhang, Y. W. Tan, “Metallic Butterfly Wing Scales: Superstructures with High Surface-Enhancement Properties for Optical Applications”, Springer, 2014. In press. [1] 

顧佳俊榮譽獎勵

2012/12,教育部新世紀優秀人才支持計劃;
2011/11,“挑戰杯”全國大學生課外學術科技作品競賽優秀指導教師獎;
2014/02,上海市優秀教學成果二等獎(排名第三);
2012/09,上海交通大學優秀教師申銀萬國獎;
2013/10,上海交通大學優異學士學位論文指導教師。 [1] 
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