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分类:导师信息 来源:武汉理工大学材料科学与工程学院 2019-06-21 相关院校:武汉理工大学
研究生导师简介
姓 名
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苏贤礼
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性 别
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男
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民 族
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汉
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出生年月
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1983.11
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职 称
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副研究员
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职 务
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联系电话
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单位名称
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武汉理工大学
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Email
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suxianli@whut.edu.cn
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实验室网址
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研究方向
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材料的非平衡制备新技术
高性能热电材料与器件
材料的低温传输物理
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教育背景
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2002.09 ~ 2006.06 武汉理工大学,获 材料科学与工程 工学学士 学位(导师:吴建锋 教授)
2006.09 ~ 2011.06 武汉理工大学,获 新能源材料 工学硕士 学位(导师:唐新峰 教授)
2009.09 ~ 2013.05 武汉理工大学,获 材料加工工程 工学博士 学位(导师:唐新峰 教授)
2010.09 ~ 2012.06 美国密歇根大学,物理系 博士联合培养(导师:Ctirad Uher教授)
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工作经历
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2013.07~ 2014.10 武汉理工大学,助理教授
2014.10 ~ 至今 武汉理工大学,副研究员
2016.10 ~ 2018.10 美国西北大学,访问学者(导师:Mercouri G. Kanatzidis教授)
2017.01~ 至今 武汉理工大学,青年拔尖人才第二层次
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项目情况
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1. 超快速非平衡自蔓延燃烧合成制备(Bi,Sb)2(Te,Se)3化合物及热电性能研究,国家自然科学基金委(青年基金),25万,主持。
2. 面向规模化应用的高性能热电材料快速非平衡制备,国家科技部973计划项目,395万,参与。
3. 复合热电材料的界面调控与电热输运,国家自然科学基金项目重点项目,293万,参与。
4. 功能复合材料新结构创制与制备科学基础,国家自然科学基金创新研究群体科学基金项目,1050万,参与。
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代表性学术
成果 |
1. Rigui Deng, Xianli Su, Shiqiang Hao, Zheng Zheng, Min Zhang, Hongyao Xie, Wei Liu, Yonggao Yan, Chris Wolverton, Ctirad Uher, Mercouri G. Kanatzidis and Xinfeng Tang. High thermoelectric performance in Bi0.46Sb1.54Te3 nanostructured with ZnTe, Energy & Environmental Science, 2018.(通讯作者)
2. Rigui Deng, Xianli Su, Zheng Zheng, Wei Liu, Yonggao Yan, Qingjie Zhang, Vinayak P. Dravid, Ctirad Uher, Mercouri G. Kanatzidis, Xinfeng Tang, Thermal conductivity in Bi0.5Sb1.5Te3+x and the role of dense dislocation s at grain boundaries, Science Advances, 2018. (共同第一作者)
3. Xianli Su, Shiqiang Hao, Trevor P. Bailey, Si Wang, Ido Hadar, Gangjian Tan, Tze-Bin Song, Qingjie Zhang, Ctirad Uher, Chris Wolverton, Xinfeng Tang, and Mercouri G. Kanatzidis, Weak Electron Phonon Coupling and Deep Level Impurity for High Thermoelectric Performance Pb1-xGaxTe, Adv. Energy Mater., 2018. (通讯作者)
4. Zheng Zheng, Xianli Su, Rigui Deng, Constantinos C Stoumpos, Hongyao Xie, Wei Liu, Yonggao Yan, Shiqiang Hao, Ctirad Uher, Chris Wolverton, Mercouri G Kanatzidis, and Xinfeng Tang, Rhombohedral to Cubic Conversion of GeTe via MnTe Alloying Leads to Ultralow Thermal Conductivity, Electronic Band Convergence, and High Thermoelectric Performance,Journal of the American Chemical Society, 2018, 140 (7), 2673–2686. (通讯作者)
5. Jiefei Fu, Xianli Su, Hongyao Xie, Yonggao Yan, Wei Liu, Yonghui You, Xin Cheng, Ctirad Uher, and Xinfeng Tang, Understanding the combustion process for the synthesis of mechanically robust SnSe thermoelectrics", Nano Energy 2018,44, 53-62. (通讯作者)
6. Gang Zheng, Xianli Su, Hongyao Xie, Yuejiao Shu, Tao Liang, Xiaoyu She, Wei Liu, Yonggao Yan, Qingjie Zhang, Ctirad Uher, Mercouri G. Kanatzidis and Xinfeng Tang. High thermoelectric performance of p-BiSbTe compounds prepared by ultra-fast thermally induced reaction, Energy & Environmental Science, 10(2017), 2638-2652. (通讯作者)
7. Hongyao Xie, Xianli Su, Gang Zheng, Ting Zhu, Kang Yin, Yonggao Yan,Ctirad Uher, Mercouri G. Kanatzidis, and Xinfeng Tang, The Role of Zn in Chalcopyrite CuFeS2: Enhanced Thermoelectric Properties of Cu1–xZnxFeS2 with In Situ Nanoprecipitates, Adv. Energy Mater., 7.3(2017), 1601299. (通讯作者)
8. Xianli Su, Ping Wei, Han Li, Wei Liu, Yonggao Yan, Peng Li, Chuqi Su, Changjun Xie, Wenyu Zhao, Pengcheng Zhai, Qingjie Zhang, Xinfeng Tang and Ctirad Uher. Multi-Scale Microstructural Thermoelectric Materials:Transport Behavior, Non-Equilibrium Preparation, and Applications, Adv. Mater., 29.20(2017), 1602013. (第一作者)
9. Gang Zheng, Xianli Su, XinranLi, Tao Liang, Hongyao Xie, Xiaoyu She, Yonggao Yan, Ctirad Uher, Mercouri G. Kanatzidis, Xinfeng Tang. Toward High-Thermoelectric-Performance Large-Size Nanostructured BiSbTe Alloys via Optimization of Sintering-Temperature Distribution, Adv. Energy Mater., 6(2016), 1600595. (通讯作者)
10. Yun Zheng, Qiang Zhang, Xianli Su, Hongyao Xie, Shengcheng Shu, Tianle Chen, Gangjian Tan, Yonggao Yan, Xinfeng Tang, Ctirad Uher. Mechanically Robust BiSbTe Alloys with Superior Thermoelectric Performance: A Case Study of Stable Hierarchical Nanostructured Thermoelectric Materials, Adv. Energy Mater., 5.5(2015), 1401391. (通讯作者)
11. Xianli Su, Fan Fu, Yonggao Yan, Gang Zheng, Tao Liang, Qiang Zhang, Xin Cheng, Dongwang Yang, Hang Chi, Xinfeng Tang, Qingjie Zhang and Ctirad Uher. Self-propagating high-temperature synthesis for compound thermoelectrics and new criterion for combustion processing, Nature Communications,5(2014), 4908,1-7. (第一作者)
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