姓名:康文裴 | 系属:新能源材料 |
|
学位:博士 | 职称:副教授 | |
专业:化学 | 导师类别:硕导 | |
电子邮箱:wpkang@upc.edu.cn | ||
通讯地址:山东省青岛市黄岛区长江西路66号 | ||
概况 | ||
u 研究方向 1、无机功能材料 2、锂/钠二次电池 u 教育经历 2008.09-2013.06,山东大学,胶体与界面化学,博士 2004.09-2008.07,山东大学,化学(基地),学士 u工作经历 2018.08-至今,kaiyun体育登录网页入口(华东),副教授, 2017.01-2018.07 kaiyun体育登录网页入口(华东),理学院,副教授,破格晋升 2016.06-2016.11,kaiyun体育登录网页入口(华东),理学院,讲师 2013.05-2016.05,香港城市大学,高级研究助理 u主讲课程 本科生:《大学化学》《新能源材料与器件概论》 研究生:《新能源材料创新设计与评价》 u指导研究生及博士后 协助指导博士生2人,硕士生4人。 u承担项目 1、国家自然科学基金1项 2018.01—2020.12,P2型Na-Cu-M-O(M = Mn, Ni, Co, Fe)钠离子电池正极材料的结构调控与储能机制(项目编号51702366),主持。 2、山东省自然科学基金1项 2017.08—2019.12,层状金属硫族化合物原位插层结构的可控制备及电化学性能研究(项目编号ZR2017BB046),主持。 4、自主创新 2017.01—2019.12,基于层状金属硫族化合物的原位插层结构在二次电池中的应用研究(项目编号17CX02037A),主持。 u 论文 1. Wenpei Kang*, Ping Ma, Zhanning Liu, Yuyu Wang, Xiaotong Wang, Huang Chen, Tinglei He, Weicong Luo, and Daofeng Sun*. “Tunable electrochemical activity of P2−Na0.6Mn0.7Ni0.3O2−xFx microspheres as high-rate cathodes for high-performance sodium ion batteries”. ACS Appl. Mater. Interfaces, 2021, 13, 15333−15343. 2. Wenpei Kang*, Yuyu Wang, Yufen Wan, Yongxiao Tuo, Xiaotong Wang, Daofeng Sun*. “Embedding anion-doped Fe7S8 in N-doped carbon matrix and shell for fast and stable sodium storage”. Mater. Chem. Phys., 2021, 264, 124456. 3. Xiaotong Wang, Dongwei Cao, Wenpei Kang*, Yuyu Wang, Daofeng Sun*. “Embedding ZnS in N-doped-carbon frameworks decorated with Co4S3 nanoparticles for efficient sodium storage”. Appl. Surf. Sci., 2021, 552, 149494. 4. Dongwei Cao#, Wenpei Kang#*, Wenhong Wang, Kaian Sun, Yuyu Wang, Ping Ma, Daofeng Sun*.“Okra-like Fe7S8/C@ZnS/N-C@C with core-double-shelled structures as robust and high rate sodium anode”. Small, 2020, 16, 1907641. 5. Yuyu Wang#, Wenpei Kang#*, Ping Ma, Dongxu Cao, Dongwei Cao, Zixi Kang, Daofeng Sun*. “SnS@C nanospheres coated with few-layer MoS2 nanosheets and nitrogen, phosphorus-codoped carbon as robust sodium ion battery anodes”. Mater. Chem. Front., 2020, 4, 1212-1221. 6. Yuyu Wang,# Dongxu Cao,# Kailiang Zhang, Wenpei Kang*, Xiaotong Wang, Ping Ma, Yufen Wan, Dongwei Cao, Daofeng Sun*. “Cation-exchange construction of ZnSe/Sb2Se3 hollow microspheres coated by nitrogen-doped carbon with enhanced sodium ion storage capability”. Nanoscale,2020, 12, 17915-17924. 7. Junjun Zhang,# Dongwei Cao,# Yang Wu, Xialan Cheng, Wenpei Kang*, Jun Xu*, “Phase transformation and sulfur vacancy modulation of 2D layered tin sulfide nanoplates as highly durable anodes for pseudocapacitive lithium storage”. Chem. Eng. J., 2020, 392, 123722. 8. Yang Wu,# Yuyu Wang,# Shengqi Shao, Yuanming Ma, Junjun Zhang, Wenpei Kang*,Jun Xu*. “Transformation of two-dimensional iron sulfide nanosheets from FeS2 to FeS as high-rate anodes for pseudocapacitive sodium storage”. ACS Appl. Energy Mater., 2020, 3, 12, 12672–12681. 9. Ping Ma, Wenpei Kang*, Yuyu Wang, Dongwei Cao, Lili Fan, Daofeng Sun. “Binary metal co-substituted P2-type Na0.67Mn0.7Cu0.15Ni0.15O2 microspheres as robust cathode for high-power sodium ion battery”. Appl. Surf. Sci., 2020, 529, 147105. 10. Ping Ma, Wenpei Kang*, Yuyu Wang, Dongwei Cao, Daofeng Sun. “Phytic acid assisted synthesis of carbon-coated Na3V2(PO4)3 as a superior cathode material for sodium ion batteries”. Mater. Today Commun., 2020,22, 100855. 11.YuyuWang, Yunxiao Wang, Wenpei Kang*, Dongwei Cao, Chenxu Li, Dongxu Cao, Zixi Kang, Daofeng Sun*, Rongming Wang, Yuliang Cao* “TiO2-coated interlayer-expanded MoSe2/phosphorus-doped carbon nanospheres for ultrafast and ultralong cycling sodium storage”. Adv.Sci., 2019, 6, 1801222. 12. Dongwei Cao, Wenpei Kang*, Shuilong Wang, Yuyu Wang, Kaian Sun, Lingzhi Yang, Xi Zhou, Daofeng Sun*, Yuliang Cao*. “In situ N-doped carbon modified (Co0.5Ni0.5)9S8 solidsolution hollow spheres as high-capacity anodes for sodium-ion batteries”.J. Mater. Chem. A, 2019, 7, 8268-8276. 13. Dongwei Cao#, Wenpei Kang#*, Zhaodi Huang, Hong Li, Mao Yang, Jiayang Li, Yiwen Gao, Yuyu Wang, Ping Ma, Daofeng Sun*. “N-doped carbon matrix supported Fe3Ni6S8 hierarchical architecture with excellent sodium storage capability and electrocatalytic properties”. Electrochim. Acta, 2019, 325, 134925. 14. Dongwei Cao, Weidong Fan, Wenpei Kang*, Yuyu Wang, Kaian Sun, Jinchong Zhao, Zhenyu Xiao, Daofeng Sun*. “Metal-organic framework derived porous hollow ternary sulfide as robust anode material for sodium ion batteries”. Mater. Today Energy, 2019, 12, 53-61. 15. Dongxu Cao#, Yuyu Wang#, Wenpei Kang*, Chenxu Li, Dongwei Cao, Lili Fan, Rongming Wang, Daofeng Sun*. “ZnSxSe1-x/N-C (x = 0.24) hierarchical nanosphere with improved energy storage capability as sodium ion battery anode”. J. Alloys Compd., 2019, 771,147-155. 16. Yuyu Wang, Wenpei Kang, * Dongwei Cao, Minghui Zhang, Zixi Kang, Zhenyu Xiao, Rongming Wang *, Daofeng Sun. “A yolk–shelled Co9S8/MoS2–CN nanocomposite derived from a metal–organic framework as a high performance anode for sodium ion batteries”. J. Mater. Chem. A, 2018, 6, 4776–4782. 17. Wenpei Kang*, Yuyu Wang, Dongwei Cao, Zixi Kang, Daofeng Sun**. “In-situ transformation into MoSe2/MoO3 heterogeneous nanostructures with enhanced electrochemical performance as anode material for sodium ion battery ”. J. Alloys Compd., 2018, 743, 410-418. 18. Wenpei Kang, Yuyu Wang, Jun Xu*. “Recent progress in layered metal dichalcogenide nanostructures as electrodes for high-performance sodium-ion batteries”. J. Mater. Chem. A, 2017, 5, 7667–7690. 19. Junjun Zhang, Meihui Wu, Tong Liu, Wenpei Kang*, Jun Xu*. “Hierarchical nanotubes constructed from interlayer-expanded MoSe2 nanosheets as a highly durable electrode for sodium storage”. J. Mater. Chem. A, 2017, 5, 24859-24866. 20. Wenpei Kang, Yu Zhang, Lili Fan, Liangliang Zhang, Fangna Dai, Rongming Wang*, Daofeng Sun*. “Metal organic framework derived porous hollow Co3O4/N-C polyhedron composite with excellent energy storage capability”. ACS Appl. Mater. Interfaces, 2017, 9, 10602-10609. 21. Junjun Zhang#, Wenpei Kang#, Miao Jiang, Yu You, Yulin Cao, Tsz-Wai Ng, Denis Y. W. Yu, Chun-Sing Lee*, Jun Xu*. “Conversion of 1T-MoSe2 to 2H-MoS2xSe2−2x mesoporous nanospheres for superior sodium storage performance”. Nanoscale, 2017, 9, 1484-1490. 22. Wenpei Kang, Denis Y. W. Yu*, Pui-Kit Lee, Zhenyu Zhang, Haidong Bian, Wenyue Li, Tsz-Wai Ng, Wenjun Zhang, Chun-Sing Lee*. “P2-type NaxCu0.15Ni0.20Mn0.65O2 cathodes with high voltage for high-power and long-life sodium-ion batteries”. ACS Appl. Mater. Interfaces, 2016, 8, 31661. 23. Zheng-Tian Shi#, Wenpei Kang#, Jun Xu*, Yi-Wen Sun, Miao Jiang, Tsz-Wai Ng, Hong-Tao Xue, Denis Y.W. Yu, Wenjun Zhang, Chun-Sing Lee*. “Hierarchical nanotubes assembled from MoS2-Carbon monolayer sandwiched superstructure nanosheets for high-performance sodium ion batteries”. Nano energy, 2016, 22, 27. 24. Zheng-Tian Shi#, Wenpei Kang#, Jun Xu*, Lian-Ling Sun, Chunyan Wu, Li Wang, Yong-Qiang Yu, Denis Y.W. Yu*, Wenjun Zhang, Chun-Sing Lee*. “Carbon doped Mo(Se0.85S0.15)2 hierarchical nanotubes as stable anode for high performance sodium-ion batteries”. Small, 2015,11, 5667. 25. Wenpei Kang, Zhenyu Zhang, Pui-Kit Lee, Tsz-Wai Ng, Wenyue Li, Yongbing Tang, Wenjun Zhang, Chun-Sing Lee*, Denis Y. W. Yu*. “Copper substituted P2-type Na0.67CuxMn1-xO2: a stable high-power sodium-ion battery cathode”. J. Mater. Chem. A, 2015, 3, 22846. 26. Wenpei Kang, Denis Yau Wai Yu, Wenyue Li, Zhenyu Zhang, Xia Yang, Tsz-Wai Ng, Rujia Zou, Yongbing Tang*, Wenjun Zhang, Chun-Sing Lee*. “Nanostructured porous manganese carbonate spheres with capacitive effects on the high lithium storage capability”. Nanoscale, 2015, 7, 10146. 27. Wenpei Kang, Yongbing Tang*, Wenyue Li, Xia Yang, Hongtao Xue, Chun-Sing Lee*. “High interfacial storage capability of porous NiMn2O4/C hierarchical tremella-like nanostructures as lithium ion battery anode”. Nanoscale, 2015, 7, 225. 28. Wenpei Kang, Yongbing Tang*, Wenyue Li, Zhangpeng Li, Xia Yang, Jun Xu, Chun-Sing Lee*. “Porous CuCo2O4 nanocubes wrapped by reduced graphene oxide as high-performance lithium-ion battery anodes”. Nanoscale, 2014, 6, 6551. 29. Fan Feng, Wenpei Kang*, Faqi Yu, He Zhang, Qiang Shen*. “High-rate lithium storage capability of cupric-cobaltous oxalate induced by unavoidable crystal water and functionalized graphene oxide”. J. Power Source, 2015, 282, 109. 30. Wenpei Kang, Qiang Shen*. “The shape-controlled synthesis and novel lithium storage mechanism of as-prepared CuC2O4•xH2O superstructures”. J. Power Source, 2013, 238, 203. 31. He Zhang, Faqi Yu, Wenpei Kang*, Qiang Shen*. “Encapsulating selenium into macro-/micro-porous biochar-based framework for highperformance lithium-selenium batteries”. Carbon, 2015, 95, 354. 32. Wenpei Kang, Chenhao Zhao, Rui Liu, Fenfen Xu, Qiang Shen*. “Ethylene glycol-assisted nanocrystallization of LiFePO4 for a rechargeable lithium-ion battery cathode”. CrystEngComm, 2012, 14, 2245. 33. Wenpei Kang, Fenglin Liu, Yunlan Su, Dujin Wang, Qiang Shen*. “The catanionic surfactant-assisted syntheses of 26-faceted and hexapod-shaped Cu2O and their electrochemical performances”.CrystEngComm, 2011, 13, 4174. 34. Wenpei Kang, Fan Feng, Miaomiao Zhang, Shaojie Liu, Qiang Shen*. “Structural features and electrochemical properties of spinel ZnCo2O4 synthesized by oxalate precursor method”. J Nanopart Res., 2013, 15, 1891. 35. Xinru Liu, Chenhao Zhao, Fan Feng, Faqi Yu, Wenpei Kang*, Qiang Shen*. “The controlling synthesis and improved electrochemical cycleability of Mn doped Fe2O3hollow porous quadrangular prisms as lithium-ion battery anodes”. RSC Adv., 2015, 5, 7604. 36. Wenpei Kang, Bin Dong, Yanan Gao, Liqiang Zheng*. “Aggregation behavior of long-chain imidazolium ionic liquids in ethylammonium nitrate”. Colloid Polym Sci., 2010, 288, 1225. 37. Wenpei Kang, Chenhao Zhao, Qiang Shen*. “Lithium storage capability of nanocrystalline CuO improved by its water-based interactions with sodium alginate”. Int. J. Electrochem. Sci., 2012, 7, 8194. u专利 1. 康文裴;马平;曹东炜;王玉玉;孙道峰一种球状钠离子电池正极材料及其制备方法,ZL201910442293.1 2. 康文裴;王玉玉;曹东炜;孙道峰;二硫化钼和双碳层共修饰的硫化亚锡纳米球及其制备方法,ZL201910187941.3
|