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分類:導(dǎo)師信息 來源:武漢理工大學(xué)材料科學(xué)與工程學(xué)院 2019-07-12 相關(guān)院校:武漢理工大學(xué)
研究生導(dǎo)師簡介
姓 名
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趙東元
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性 別
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男
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民 族
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漢
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出生年月
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1963年6月
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職 稱
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教授
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職 務(wù)
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復(fù)旦大學(xué)先進材料
實驗室主任
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聯(lián)系電話
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86-21-51630205
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單位名稱
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復(fù)旦大學(xué)
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Email
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dyzhao@fudan.edu.cn
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實驗室網(wǎng)址
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http://www.mesogroup.fudan.edu.cn/
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研究方向
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1. 高度有序多孔材料的宏觀和微觀拓撲結(jié)構(gòu)
2. 介孔材料的合成、組裝、生長和性能
3. 新型微孔分子篩的結(jié)構(gòu)和合成設(shè)計
4. 新型納米材料的可控合成和組裝
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教育背景
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1996-1998 美國加州大學(xué)圣芭芭拉分校,材料系和化學(xué)系,博士后
1995-1996 美國休斯頓大學(xué),化學(xué)系,博士后
1993-1995 以色列魏茨曼科學(xué)研究所,化學(xué)物理系,博士后
1987-1990 大連化學(xué)物理研究所和吉林大學(xué)化學(xué)系,理學(xué)博士學(xué)
1984-1987 吉林大學(xué),化學(xué)系無機化學(xué)專業(yè),理學(xué)碩士
1980-1984 吉林大學(xué),化學(xué)系無機化學(xué)專業(yè),理學(xué)學(xué)士
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工作經(jīng)歷
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1998-至今 復(fù)旦大學(xué),化學(xué)系,教授
1991-1993 沈陽化工學(xué)院,精細化工系,副教授
1990-1991 沈陽化工學(xué)院,精細化工系,講師
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項目情況
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趙東元老師作為學(xué)科帶頭人,主持承擔了國家自然科學(xué)基金委員會國家杰出青年科學(xué)基金、重點基金項目,科技部863項目、973項目,上海市科委重大、重點基礎(chǔ)研究項目等多項科研項目。并與國內(nèi)外大型公司、科研單位合作進行科研產(chǎn)品開發(fā)、研究。
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代表性學(xué)術(shù)
成果 |
1. Biao Kong, Jing Tang, Yueyu Zhang, Tao Jiang, Xingao Gong, Chengxin Peng, Jing Wei, Jianping Yang, Yongcheng Wang, Xianbiao Wang, Gengfeng Zheng*, Cordelia Selomulya*, Dongyuan Zhao*, “Incorporation of well-dispersed sub-5-nm graphitic pencil nanodots into ordered mesoporous frameworks”, Nature Chem., 8, 171-178 (2016).
2. Yong Liu, Renchao Che, Gang Chen, Jianwei Fan, Zhenkun Sun, Zhangxiong Wu, Minghong Wang, Bin Li, Jing Wei, Yong Wei, Geng Wang, Guozhen Guan, Ahmed A. Elzatahry, Abdulaziz A. Bagabas, Abdullah M. Al-Enizi, Yonghui Deng, Huisheng Peng, Dongyuan Zhao*, “Radially Oriented Mesoporous TiO2 Microspheres with Single-Crystal-Like Anatase Walls for High-Efficiency Optoelectronic Devices”, Sci. Adv., 1, e1500166 (2015).
3. Wei Li, Fei Wang, Yupu Liu, Jinxiu Wang, Jianping Yang, Lijuan Zhang, Ahmed A. Elzatahry, Daifallah Al-Dahyan, Yongyao Xia, Dongyuan Zhao*, “General Strategy to Synthesize Uniform Mesoporous TiO2/Graphene/Mesoporous TiO2 Sandwich-Like Nanosheets for Highly Reversible Lithium Storage”, Nano Lett., 15, 2186-2193 (2015).
4. Wei Zhou, Wei Li, Jian-Qiang Wang, Yang Qu, Ying Yang, Ying Xie, Kaifu Zhang, Lei Wang, Honggang Fu,* and Dongyuan Zhao*, “Ordered Mesoporous Black TiO2 as Highly Efficient Hydrogen Evolution Photocatalyst”, J. Am. Chem. Soc.,136, 9280-9283 (2014).
5. Yin Fang, Gengfeng Zheng, Jianping Yang, Haosha Tang, Yafeng Zhang, Biao Kong, Yingying Lv, Congjian Xu, Abdullah M. Asiri, Jian Zi, Fan Zhang andDongyuan Zhao*, “Dual-Pore Mesoporous Carbon@Silica Composite Core-Shell Nanospheres for Multidrug Delivery”, Angew. Chem. Int. Ed., 53, 5366-5370 (2014).
6. Fang, Y; Lv, YY; Che, RC; Wu, HY; Zhang, XH; Gu, D; Zheng, GF; Zhao, DY., “Two-Dimensional Mesoporous Carbon Nanosheets and Their Derived Graphene Nanosheets: Synthesis and Efficient Lithium Ion Storage”, J. Am. Chem. Soc., 135, 1524-1530 (2013).
7. Li, W; Yang, JP; Wu, ZX; Wang, JX; Li, B; Feng, SS; Deng, YH; Zhang, F; Zhao, DY., “A Versatile Kinetics-Controlled Coating Method To Construct Uniform Porous TiO2 Shells for Multifunctional Core-Shell Structures”, J. Am. Chem. Soc.,134, 11864-11867 (2012).
8. Wei Li, Yonghui Deng*, Zhangxiong Wu, Xufang Qian, Jianping Yang, Yao Wang, Dong Gu, Fan Zhang, Bo Tu, and Dongyuan Zhao*, “Hydrothermal Etching Assisted Crystallization: A Facile Route to Functional Yolk-Shell Titanate Microspheres with Ultrathin Nanosheets-Assembled Double Shells”, J. Am. Chem. Soc., 133(40), 15830-15833 (2011).
9. Zhai, YP; Dou, YQ; Zhao, DY; Fulvio, PF; Mayes, RT; Dai, S. “Carbon Materials for Chemical Capacitive Energy Storage”, Adv. Mater., 23, 4828-4850 (2011).
10. Deng, YH; Cai, Y; Sun, ZK; Liu, J; Liu, C; Wei, J; Li, W; Liu, C; Wang, Y; Zhao, DY., “Multifunctional Mesoporous Composite Microspheres with Well-Designed Nanostructure: A Highly Integrated Catalyst System”, J. Am. Chem. Soc., 132, 8466-8473 (2010).
11. Wan, Y; Wang, HY; Zhao, QF; Klingstedt, M; Terasaki, O; Zhao, DY., “Ordered Mesoporous Pd/Silica-Carbon as a Highly Active Heterogeneous Catalyst for Coupling Reaction of Chlorobenzene in Aqueous Media”, J. Am. Chem. Soc., 131, 4541-4550 (2009).
12. Deng, YH; Qi, D; Deng, CH; Zhang, XM; Zhao, DY., “Superparamagnetic high-magnetization microspheres with an Fe3O4@SiO2 core and perpendicularly aligned mesoporous SiO2 shell for removal of microcystins”, J. Am. Chem. Soc., 130, 28-30 (2008).
13. Wan, Y., Zhao, D. Y., “On the Controllable Soft-Templating Approach to Mesoporous Silicates”, Chem. Rev., 107, 2821-2860 (2007).
14. Liu, RL; Shi, YF; Wan, Y; Meng, Y; Zhang, FQ; Gu, D; Chen, ZX; Tu, B; Zhao, DY., “Triconstituent Co-assembly to ordered mesostructured polymer-silica and carbon-silica nanocomposites and large-pore mesoporous carbons with high surface areas”, J. Am. Chem. Soc., 128, 11652-11662 (2006).
15. Zhang, F., Meng, Y., Gu, D., Yan, Y., Yu, C., Tu, B., Zhao, D. Y., “A facile aqueous route to synthesize highly ordered mesoporous polymers and carbon frameworks with Ia3d bicontinuous cubic structure”, J. Am. Chem. Soc., 127, 13508-13509 (2005).
16. Meng, Y., Gu, D., Zhang, F., Shi, Y., Li, Z., Yu, C., Tu, B., and Zhao, D. Y.,“Ordered mesoporous polymers and homologous carbon frameworks: Amphiphilic surfactant templating and direct transformation”, Angew. Chem. Int. Ed., 44, 7053-7059 (2005).
17. Tian, B., Liu, X., Tu, B., Yu, C., Fan, J., Xie, S., Stucky, G., Zhao, D. Y., “Self-adjusted synthesis of ordered stable mesoporous minerals by acid-base pairs”,Nature Mater., 2, 159-163 (2003).
18. Fan, J., Yu, C., Gao, F., Lei, J., Tian, B., Wang, L., Luo, Q., Tu, B., Zhou, W.,Zhao, D. Y., “Cubic mesoporous silica with large controllable entrance sizes and advanced adsorption properties”, Angew. Chem. Int. Ed., 42, 3146-3150 (2003).
19. Liu, X., Tian, B., Yu, C., Gao, F., Xie, S., Tu, B., Che, R., Peng, L., Zhao, D. Y.,“Room-temperature synthesis in acidic media of large-pore three-dimensionalbicontinuous mesoporous silica with Ia3d symmetry”, Angew. Chem. Int. Ed., 41, 3876-3878 (2002).
20. Zhao, D. Y., Feng, J., Huo, Q., Melosh, N., Fredrickson, G. H., Chmelka, B. F., and Stucky, G. D., “Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores”, Science, 279, 548-552 (1998).
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