导师风采
王育乔
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个人信息

Personal Information

  • 教授
  • 导师类别:博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:化学化工学院
  • 所属专业: 材料物理与化学  、 材料与化工  、 化学工程与技术
  • 邮箱 : yqwang@seu.edu.cn
  • 工作电话 : -

个人简介

Personal Profile

Yuqiao Wang received his B.S. in Fine Chemicals from Anhui University, and M.S. & Ph.D. in Physics and Chemistry on Materials from Southeast University. Now, he is a Full Professor at Southeast University, who is also the Head of Laboratory of Photoelectrochemistry and Devices. His current research interests include the design andsynthesis of energy and environmental materials, photoelectrochemical reactionmechanism, device integration, and the relationship between materialinvalidation and device performance attenuation.

研究领域与方向

纳米结构光电功能材料与器件集成

1.材料结构设计与性能预测

2.光电转换、存储器件集成

3.材料结构与器件性能的关系

4.光电过程相关微观机理研究

5.   能源环境新材料产业化研究


  • 研究方向Research Directions
纳米光电材料与器件集成,1材料结构设计与性能预测,2光电转换、存储器件集成,3材料结构与器件性能的关系,4光电过程相关微观机理研究,5能源环境新材料产业化研究
团队展示

课题组合影 20211023

2021年课题组合影

团队网站:https://www.x-mol.com/groups/wangyuqiao


项目情况

GF基础研究项目(2022—2025),课题负责人

国家重点研发计划“场地土壤污染成因与治理技术”重点专项(2019—2022),项目骨干

长江三角洲农药污染场地修复及安全利用关键技术研究与集成示范(2018YFC1803100)

国家自然科学基金面上项目(2018~2021),项目主持人

金属氧化物的表面氧空位对光电转换器件中电子输运的影响(61774033)

江苏省自然科学基金面上项目(2014~2017),项目主持人

非碘自凝胶化准固态染料敏化太阳能电池性能与衰减机理研究(BK20141338)

国家重点基础研究发展计划(973计划)(2013—2017),骨干成员

能带调控的纳米异质结构材料的可控制备与集成(2013CB932902)

国家重点基础研究发展计划(973计划)(2007—2011),骨干成员

半导体纳米线结构设计、可控制备与机理(2007CB936301)

中央高校基本科研业务费项目,项目主持人

 (1)原位聚合法制备凝胶电解质及其相关器件性能研究(22420135008),2013—2014

 (2)高效钙钛矿太阳能电池中材料界面修饰对其性能的影响(2242014K10025),2014—2015

 (3)三维纳米结构的多元复合光电功能材料及其器件集成(2242015K42064),2015—2016

 (4)表面氧空位对金属氧化物电极的电子输运过程的影响(2242017K40052),2016—2017


研究成果

2021年

[13] Lili Song, Fanshi Zhu, Le Tong, Chun Ouyang, Feng Xu, Yuqiao Wang, MXene quantum dots rivet reinforced Ni-Co LDH for boosting electrochemical activity and cycling stability, Materials Advances, 2021, 2, 5622-5628

[12] Lili Song#, Qingqing Wang#, Xiaoyun Ye, Fan Yang, Lian Wang, Yi Wu, Feng Xu, Yuqiao Wang*, Sulfide-fixed intrinsic porous NiCoP for boosting high capacitance and long-term stability, ACS Materials Letters, 2021, 3, 1016-1024

[11] Bo Song#, Yun Xie#, Xia Cui, Guangyao Zhan, Jing Mao, Changzeng Fan, Yijiang Shao*, Yueming Sun, Yuqiao Wang*, Effective Regulation of ZnO Surface Facets for Enhanced Photoluminescence Propertes Assisted by Zinc Quaternary Ammonium Salts, ACS Omega, 2021, 6, 17455-17463

[10] Chengcheng Xing, Demin Jiang, Le Tong, Kexin Ma, Yan Xu*, Kun Xie, Yuqiao Wang*, MXene@Poly(diallyldimethylammonium chloride) decorated carbon cloth for high electrochemical active biofilm in microbial fuel cell, ChemElectroChem, 2021, 8, 2583-2589

[9] Xiaoyun Zhang#, Pin Chen#, Fan Yang, Lian Wang, Jie Yin, Jianjun Ding, Fangzhi Huang, Yuqiao Wang*, Effect of FeCo2S4 on electrocatalytic I3ˉ reduction: Theoretical and experimental aspects, Chemical Engineering Journal, 2021, 424, 130419

[8] ChunlianPeng#, Lili Song#, Lian Wang, Fan Yang, Jianjun Ding*,Fangzhi Huang*, Yuqiao Wang*,Effect of surface charge distribution of phosphorus-doped MoS2 on hydrogen evolution reaction, ACS Applied Energy Materials, 2021, 4, 4887-4896

[7] LiliSong#, Chunlian Peng#, Fan Yang, Lian Wang, Yinhua Jiang,Yuqiao Wang*, Surface Spatial Confinement Effect on Mn-CoLDH@Carbon Dots for High-performance Supercapacitors, ACS Applied Energy Materials, 2021, 4, 4654-4661

[6] XiaoyunZhang#, Dong Li#, Lian Wang, Fan Yang, YuqiaoWang*, Inducedelectron transfer by oxygen vacancy gradient on SnO2 conductive glass for electrocatalytic reduction, SCIENCECHINA Materials, 2021, 64 (8), 2081-2085

[5] XingChen#, Lei Li#, Xiaoli Wang, Kun Xie, YuqiaoWang*,Effect of manganese valence on specific capacitance in supercapacitors of manganese oxide microspheres,Chemistry A European Journal, 2021, 27, 9152–9159

[4] WeiWang#,*,Tianyu Liu#, Chuan Ding, Min Wang,Jirong Bai, Jintao Zhang, Hengchang Bi*, Yueming Sun, YuqiaoWang*, Highelectron transfer of TiO2 nanorod@carbon layer supported flower-likeWS2 nanosheets for triiodide electrocatalytic reduction, New Journal of Chemistry, 2021,45, 3387-3391

[3] Tao Jiang, Jiwei Tong, Cunhong Huang, Yuqiao Wang*, Preparation of micro mulberry leaf-like CoO@Ni3S2 for a high-rate supercapacitor, Materials Letters, 2021, 282, 128711.

[2] Minglong Lu, Xiaoyun Zhang, Jiwei Tong, Yuqiao Wang*, Enhanced electron transfer and ion transport by binary and multidimensional CuCo2S4/Fe2O3 on carbon cloth for an oxygen evolution reaction, Chemistry - A European Journal,2021, 27, 238 – 241

[1] Haojia Liu, Zhihao Zhang, Yan Xu, Xiao Tan, Zhixuan Yue, Kexin Ma, Yuqiao Wang*, Reduced graphene oxide@polydopamine decorated carbon cloth as an anode for a high-performance microbial fuel cell in Congo red/saline wastewater removal, Bioelectrochemistry, 2021, 137, 107675.

2020年

[11] Xuanxuan Han, Lili Song, Jiandong Ding, Liangliang Hu, Cuirong Xu, Yuqiao Wang*, Design and preparation of Cu-doped NiCo2O4 nanosheets with intrinsic porosities for symmetric supercapacitors, Materials Letters, 2020, 278, 128400.

[10] Xuanxuan Han, Tao Jiang, Demin Jiang, Xing Chen, Yinhua Jiang, Yueming Sun, Yuqiao Wang*, Electrolyte additive induced fast-charge/slow-discharge process: potassium ferricyanide and potassium persulfate for CoO-based supercapacitors, Journal of Colloid and Interface Science, 2020, 576, 505–513

[9] Xing Chen, Demin Jiang, Hongyan Li, Kun Xie, Yinhua Jiang, Yuqiao Wang*, Hydrogen peroxide-induced growth of hierarchical Ni3S2 nanorod/sheet arrays for high performance supercapacitors, Journal of Colloid and Interface Science, 2020, 575, 168-176

[8] Xia Cui, Bo Song, HongzhenOuyang, Shisu Cheng, Changzeng Fan, Yijiang Shao*, Yueming Sun, Yuqiao Wang*, Stepwise Growth of CuO via A Transformation of Cu2(OH)3 BrIntermediate in An Aqueous Solution of Long-Alkyl-Chain Copper Salt, Crystal Growth & Design, 2020, 20, 5, 3044-3052

[7] Jie Yin#, Pin Chen#, Minglong Lu#, Lili Song, Renyun Zhang, Feng Xu, Ningning Wu, Yuqiao Wang*, Cu-doped CoS2 polyhedrons with high catalytic activity and long-term stability, SCIENCE CHINA Materials, 2020, 63(7), 1337-1344

[6] Xing Chen, Xiaoli Wang, Demin Jiang, Fang Xie, Kun Xie*, Yuqiao Wang*, Sulfur-doped ZIF-derived Co3O4 flower-like microstructures for high stability supercapacitors, Journal of Alloy and Compounds, 2020, 831, 154772 (7 pp)

[5] Wandi Wang, Demin Jiang, Xing Chen, Kun Xie, Yinhua Jiang, Yuqiao Wang*, A sandwich‐like nano-micro LDH-MXene-LDH for high-performance supercapacitors, Applied Surface Science, 2020, 515, 145982 (9 pp)

[4] Minglong Lu, Xia Cui, Bo Song, Hongzhen Ouyang, Kunliang Wang, YuqiaoWang*, Studying the Effect of CuCo2S4 Morphology on the Oxygen Evolution Reaction using a Flexible Carbon Cloth Substrate, ChemElectroChem, 2020, 7, 1080-1083

[3] Jie Yin,Chunyao Zhang, Xingzhong Zhao, Haonan Yu, Yueming Sun, YuqiaoWang*, Fabricationof CuCo2S4 nanosheet/carbon cloth as a flexible electrodefor high-performance electro-catalysis, Materials Letters, 264 (2020) 127328, Featured Letter

[2] Gaofeng Li, Xia Cui, Bo Song, Hongzhen Ouyang, Kunliang Wang, Yueming Sun, YuqiaoWang*, One-potsynthesis of Cu-doped Ni3S2 nano-sheet/rod nanoarray for high performance supercapacitors, Chemical Engineering Journal,2020, 388, 15, 124319 (9 pp)

[1] GaofengLi, Bo Song, Xia Cui, Hongzhen Ouyang, Kunliang Wang, Yueming Sun, YuqiaoWang*, Multidimensional and binary micro CuCo2O4/nano NiMoO4 for high performance supercapacitors,ACS Sustainable Chemistry & Engineering, 2020, 8, 3, 1687-1694

2019年

[5] FangXie, Yu Ren, Yuqing Zhou, Yueming Sun, YuqiaoWang*, Preparationand Electrochemical Properties of ZIF-skeleton Double-shell Nanocage CoS/NiCo2S4, Chinese Journal of Inorganic Chemistry,2019, 35, 1635-1641

[4] Yongqiang Zhao, Bo Song, Xia Cui, Yu Ren, Wenjin Yue, Yuqiao Wang*, Highelectrocatalytic reduction using ZnS micropolyhedron: direct sulfuration ofZIF-8 film on conducting glass by chemical vapour deposition, Materials Letters, 2019, 250, 193-196

[3]Yajuan Liu, Jie Yin, Yuqing Zhou, Luo Sun, Wenjin Yue, Yueming Sun, Yuqiao Wang*, Tuningelectron transport direction by the deposition sequence of MoS2 and WS2 on F-doped tin oxide substrate for the electrocatalytic reduction,ChemElectroChem, 2019, 6, 2737-2740

[2] Wei Wang#,Hengchang Bi#, Changpan Li, Jintao Zhang, Jie Feng, Yuqiao Wang*, Xiao Huang, Yueming Sun, Litao Sun, Edge-terminated few-layerMoS2 nanoflakes supported on TNAs@C with enhanced electrocatalysisactivity for iodine reduction reaction,MaterialsToday Nano, 2019,6, 100033(8pp)

[1]Gaofeng Li, Siqi Liu, Yang Pan, Tianyue Zhou, Jiandong Ding, YuemingSun, Yuqiao Wang*, Self-templated formation of CuCo2O4 triple-shelled hollow microspheres for all-solid-state asymmetricsupercapacitors, Journal of Alloys and Compounds, 2019, 787, 694-699

2018年

[4]Yuqiao Wang*, Hongyan Li, Yu Ren, Xing Chen, Kun Xie, Yueming Sun, Nanowire-core/double-shell NiMoO4@C@Ni3S2 on Ni foam:Insights into supercapacitive performance and capacitance degradation, Nanotechnolgy, 2018, 29, 385402 (11pp)

[3]Yuqiao Wang*, Dawei Yang, Jianing Lian, Tao Wei, Yueming Sun, Ordered corn-like CuCo2O4 nanoforests covering Ni foam for ahigh-performance all-solid-state supercapacitor, Journal of Alloys and Compounds, 2018, 741, 527-531

[2]Yuqiao Wang*, Dawei Yang,Jianing Lian, Jie Pan, Tao Wei, Yueming Sun, Cedar leaf-like CuCo2O4 directly grow onnickel foam by a hydrothermal/annealing process as an electrode forhigh-performance all-solid-state supercapacitors, Journal of Alloys and Compounds, 2018, 735, 2046-2052

[1] Dawei Yang, Yuqiao Wang*, Qiuyu Wang,Wen Wang, Tao Wei, Yueming Sun, Preparation and supercapacitive properties ofhierarchical ZnCo2O4@Ni3S2core/shell nanowire arrays on Ni foam, Materials Letters, 2018, 213, 222–226

2017年

[7]YuqiaoWang*, Dawei Yang, Tianyue Zhou, Jie Pan, Tao Wei, Yueming Sun, Oriented CuCo2S4 nanograss arrays/Ni foam as an electrode for ahigh-performance all-solid-state supercapacitor, Nanotechnology, 2017, 28, 465402 (7pp)

[6]Gaofeng Li, YuanCong, Chuanxiang Zhang, Haijun Tao, Yueming Sun, Yuqiao Wang*, Hierarchical nanosheet-based Ni3S2 microspheres grownon Ni foam for high-performance all-solid-state asymmetricsupercapacitors, Nanotechnology, 2017, 28, 425401 (7pp)

[5] Wei Wang, Yuqiao Wang*, Changpan Li, Yijun Wu, Daoyu Zhang, Kunquan Hong, Yueming Sun, Design, synthesis and electrocatalytic properties of coaxial and layer-tunable MoS2 nanofragments/TiO2 nanorod arrays,Chemical Communications, 2017, 53, 5461-5464

[4] Xia Cui, Yuqiao Wang*, Qingyu Xu, Pingping Sun, XiuzhenWang, Tao Wei*, Yueming Sun, Carbon Nanotube Entangled Mn3O4 Octahedron as Anode Materials for Lithium-Ion Batteries, Nanotechnology, 2017, 28, 255402 (10pp)

[3] Jie Yin, Yuqiao Wang*, WenfeiMeng, Tianyue Zhou, Baosong Li, Tao Wei, Yueming Sun, Honeycomb-like NiCo2S4 nanosheets prepared by a rapidelectrodeposition as a counter electrode for dye-sensitized solar cells, Nanotechnology, 2017, 28, 345403 (7pp)

[2] YuqiaoWang*, ShashaWang, Yijun Wu, Zimin Zheng, Kunquan Hong, Baosong Li, Yueming Sun, Polyhedron-core/double-shell CuO@C@MnO2 decorated nickel foam for high performance all-soild-state supercapacitors, Electrochimica Acta, 2017, 246, 1065–1074

[1] Yuqiao Wang*, Yichao Bai, Junting Xi, Meiting Liu, Mengtian Li, Kunquan Hong, Yueming Sun, Continuous and large-areatransition metal disulfides films deposited by pulsed laser/chemical vapor-combined process as a counter electrode for dye-sensitized solar cells, Materials Letters, 2017, 201, 216–220

2016年

[7] YuqiaoWang*, Wei Wang, Gaofeng Li, Qin Liu, Tao Wei, Baosong Li, Caiyun Jiang, Yueming Sun, Electrochemical detectionof L-cysteine using a glassy carbon electrode modified with a two-dimensional composite prepared from platinum and Fe3O4 nanoparticles on reduced graphene oxide, Microchimica Acta, 2016,183 (12), 3221-3228

[6] YuqiaoWang*, Wei Wang, Shasha Wang, Wenjing Chu, Tao Wei,Haijun Tao, Chuanxiang Zhang, Yueming Sun, Enhanced photoelectrochemicaldetection of L-cysteine based on the ultrathin polythiophene layer sensitizedanatase TiO2 on F-doped tin oxide substrates, Sensors & Actuators: B. Chemical, 2016, 232, 448-453

[5] Jie Yin, Yibai Sun, Wanlin Fu, YuqiaoWang*, Junting Xi, Yueming Sun, Improvement of electron/hole injection balancebased on nanowire/nanocube hybrid perovskite, Materials Letters, 2016, 184, 78-81

[4] Bo Song, Xia Cui, Yuqiao Wang*, Lifang Si,Zhaoxia Kou, Wenwen Tian, Chang Yi, Tao Wei, Yueming Sun*, Controllablegrowth of unique three-dimensional layered basic zinc salt/ZnO binary structure,Crystal Growth & Design, 2016, 16(9), 4877-4885

[3] Bo Song, YuqiaoWang*, Xia Cui, Zhaoxia Kou, Lifang Si, Wenwen Tian, ChangYi, Tao Wei, Yueming Sun*, A Series of Unique Architecture Building of LayeredZinc Hydroxides:Self-Assembling Stepwisegrowth of Layered Zinc Hydroxide Carbonate and Conversion intoThree-Dimensional ZnO, Crystal Growth & Design, 2016, 16(2), 887-894

[2] Qi Qi, YuqiaoWang*, Yueming Sun*, Structural effect on absorption and emission properties of 1,8-naphthalimidederivatives: a DFT study, Spectroscopy and Spectral Analysis, 2016, 36 (11), 3796-3808

[1] Qi, Qi, Yuqiao Wang*, Yunqian Dai, Yueming Sun,Spectroscopic properties of carbazolyl and diphenylamino naphthalimidederivatives: the role of solvent and rotational relaxation, Optoelectronics and Advanced Materials-Rapid Communications, 2016, 10 (5-6), 410-416

2015年

[4] Yuqiao Wang*, JingLu, Jie Yin, Gang Lü, Yingmin Cui, Shasha Wang, Shengyuan Deng, Dan Shan, Hailiang Tao, Yueming Sun, Influenceof 4-tert-butylpyridine/guanidinium thiocyanate co-additives on band edge shiftand recombination of dye-sensitized solar cells: experimental and theoreticalaspects, Electrochimica Acta, 2015, 185,69-75  

[3] YuqiaoWang*, Panpan Wang, Jing Lu, Yichao Bai, Yunliang Gu, Yueming Sun, Dye-sensitized solar cells based on MWCNT/TiO2 counterelectrode and thiolate/disulfidenon-iodineredox couple, Acta Physico-ChimicaSinica, 2015, 31(3), 448-456  

[2] Xia Cui, YuqiaoWang*, Zheng Chen, Huihui Zhou, Qingyu Xu,Pingping Sun, Yueming Sun, Yunfeng Lu, Preparation of pompon-likeMnO/carbon nanotube composite microspheres as anodes for lithium ion batteries,Electrochimica Acta, 2015, 180, 858-865

[1] Qi Qi, Yuqiao Wang*, Shasha Wang,Haonan Qi, Tao Wei, Yueming Sun, Preparation of reduced graphene oxide/TiO2 nanocomposites and their photocatalytic properties, Acta Physico-Chimica Sinica, 2015, 31(12), 2332-2340

2014年

[3] Yuqiao Wang*, Wenjing Chu, Shasha Wang, Zehao Li, Yinghao Zeng,Shancheng Yan, Yueming Sun, Simple synthesis and photoelectrochemical characterizationsof polythiophene/Pd/TiO2 composite microspheres, ACS Applied Materials & Interfaces, 2014, 6 (22), 20197-20204

[2]Yuqiao Wang*, Bo Song, Jie Yin, YifanZhao, Yueming Sun, A stablequasi-solid-state dye-sensitized solar cells based on poly(1-vinyl-3-alkylimidazolium) iodide electrolyte, Nanoscience and Nanotechnology Letters, 2014, 6(11), 993-996  

[1] Yuqiao Wang*, Xueling Gao, Bo Song,Yunliang Gu, Yueming Sun, Photoelectrochemical properties of MWCNT-TiO2 hybrid materials as a counter electrode for dye-sensitizedsolar cells, Chinese Chemical Letters, 2014, 25(4), 491-495

已授权的发明专利

1 王育乔,孙岳明,施晓秋,钱乐,刘阳,谭佃龙,利用废酸洗液回收的氯化亚铁生产纳米氧化铁红的方法,专利号ZL201010106319.4

2 王育乔,孙岳明,赵一凡,刘琴,高雪玲,原位凝胶化组装准固态染料敏化太阳能电池的方法,专利号ZL201210154840.4

3 王育乔,顾云良,姚丹,王盼盼,孙岳明,多壁纳米碳管负载高密度高分散性纳米铂对电极的制备方法,专利号ZL201210396333.1

4 王育乔,孙岳明,印杰,宋坤忠,薛中群,一种用于大规模集成电路封装聚合物的制备方法,专利号ZL201410036302.4

5 王育乔,王莎莎,李红颜,孙岳明,氧化铜-氧化亚铜-铜三元复合电极材料的制备及应用,专利号ZL201610353359.6

6 王育乔,李红颜,王青青,刘斯琦,孙岳明,片状NiS包覆柱状NiS阵列电极的制备方法,专利号ZL201811540762.5

7 王育乔,刘亚娟,刘美婷,张春耀,孙岳明,基于两步可控制备过渡金属硫化物异质结的方法,专利号ZL201811473215.X

8 王育乔,李长盼,卢明龙,周天悦,张春耀,孙岳明,一种ZnO-C-MoS2双壳电极的制备方法,专利号ZL20181148787.7

9 王育乔,谢方,李梦恬,张亚轩,孙岳明,基于ZIF-67骨架的双壳层硫化物及其制备方法与应用,专利号ZL201811487891.2

10 王育乔,赵永强,任雨,张亚轩,孙岳明,一种沸石咪唑有机骨架结构ZnS对电极的制备方法,专利号ZL201910025404.9

11 王育乔,韩玄玄,李梦恬,黄存宏,孙岳明,一种基于氧化亚钴电极与高活性电解质体系的构建方法,专利号201811541058.1

12 王育乔,王青青,宋利黎,李东,朱世璠,一种硫掺杂的本征多孔磷化镍钴纳米片的制备方法及应用,ZL202010423480.8


科研项目

GF基础研究项目(2022—2025),课题负责人

国家重点研发计划“场地土壤污染成因与治理技术”重点专项(2019—2022),项目骨干

长江三角洲农药污染场地修复及安全利用关键技术研究与集成示范(2018YFC1803100)

国家自然科学基金面上项目(2018~2021),项目主持人

金属氧化物的表面氧空位对光电转换器件中电子输运的影响(61774033)

江苏省自然科学基金面上项目(2014~2017),项目主持人

非碘自凝胶化准固态染料敏化太阳能电池性能与衰减机理研究(BK20141338)

国家重点基础研究发展计划(973计划)(2013—2017),骨干成员

能带调控的纳米异质结构材料的可控制备与集成(2013CB932902)

国家重点基础研究发展计划(973计划)(2007—2011),骨干成员

半导体纳米线结构设计、可控制备与机理(2007CB936301)

中央高校基本科研业务费项目,项目主持人

 (1)原位聚合法制备凝胶电解质及其相关器件性能研究(22420135008),2013—2014

 (2)高效钙钛矿太阳能电池中材料界面修饰对其性能的影响(2242014K10025),2014—2015

 (3)三维纳米结构的多元复合光电功能材料及其器件集成(2242015K42064),2015—2016

 (4)表面氧空位对金属氧化物电极的电子输运过程的影响(2242017K40052),2016—2017


教研项目

2022年东南大学“美育”专项教学改革研究与实践项目:构建交叉学科协同美育实践模式研究

2021年江苏省高等教育教改研究课题(2021JSJG215)

2021年第二届全国大学生化学实验创新设计竞赛指导教师

2021年东南大学本科生优秀毕业设计(论文)团队培育项目

2021年东南大学暑期社会实践重大专项指导教师

2020年东南大学第三批校级示范课改革试点项目:本科生课程——物理化学

2019年第四届全国大学生材料设计邀请赛指导教师

2019年东南大学教师工作研究项目:前沿交叉研究领域青年教师培养的实践探索

2019年东南大学研究生示范课程建设试点项目:博士生课程——材料物理与化学

2019年东南大学教学改革与实践重点项目:面向跨学科、交叉科研领域的拔尖创新本科人才的培养实践

2018年东南大学本科生优秀团队毕业设计(论文)培育项目

2018年东南大学通选课程建设项目:能量转换与存储纳米材料前沿

2017年东南大学教学改革与实践项目:物理、化学、材料理工前沿交叉创新人才培养方式初探

2017年东南大学第一批校级示范性专题研讨课建设:纳米结构光电功能材料与器件集成

2015年东南大学第一批校级研讨课建设:物理化学进展与前沿


荣誉奖项

2021年东南大学教学成果奖

2020年江苏省本科优秀毕业论文指导团队荣誉称号(团队负责人)

2019年中国科协-江苏省科协高层次人才主题教育-北京大学研修班

2018年首届全国大学生创新创业实践联盟年会“优秀论文”

2018年东南大学中泰国立奖教金

2017年中国(国际)功能材料科技与产业高层论坛“优秀报告奖”

2017年东南大学校级示范性研讨课

2016年东南大学教学奖励金

2015年洁净能源国家实验室首届“太阳能转化科学理论与实验技术高等讲习班”

2014年东南大学第三期青年骨干教师

2013年江苏省教育厅“高校教师英语强化培训”

2012年东南大学第十九届青年教师授课竞赛

2011年东南大学飞航实业奖教金


讲授课程

讲授课程:物理化学(本科生),专题研讨课(本科生),材料物理与化学(博士生)

课程特色:课堂形式:开放、自由、互动、交叉、融合

               课程内容:突出原理、兼容并包、与时俱进

               考试/考查标准:过程考核为主(作业、报告、讨论等)


招生招聘

招收博士生

·本科生直博生

·硕博连读生

·申请-考核制

每年招收1-2名

专业:工科“材料物理与化学”和“化学工程与技术”

注意:博士生报名在9-10月,面试在11月份。

请在申请之前与导师E-mail联系,简历必须介绍学术背景和职业规划。

合则约见,非诚勿扰。

招收硕士生

  • 免试推荐生:获得所在学校免试推荐资格的优秀应届本科毕业生
  • 全国统一考试招生
  • 学术型硕士专业:“材料物理与化学”、“化学工程与技术”
  • 工程型硕士专业:“化学工程”

每年招收2-4名

招聘博士后

·研究专业:材料科学与工程(“双一流”建设学科)

·职位描述:光电转换、存储过程中界面、表面电子输运机理研究;器件性能衰减与关键材料结构介观尺度演变关系

·候选人要求:获得化学、物理、材料等专业博士学位3年以内(年龄不超过30岁);提供第一作者代表作2篇;身心健康,有强烈的进取心,良好的沟通协作能力,扎实的英文口头与书面表达能力。欢迎通过电子邮件与导师联系!

·工作职责:致力于原创性工作和发表高水平论文

·进站程序与待遇:请扫码关注“东南大学博士后服务平台”


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