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黄凯

发布者: [发表时间]:2019-02-26 [来源]: [浏览次数]:

物理实验中心



                                                                               


姓  名:黄凯

职  称:副教授

办 公 室:理学楼113

电子邮件:huang-kai@bupt.edu.cn

个人简介

现为赛高酱粉白透明制服资源副教授(特聘副研究员),博士和硕士研究生导师。截止20233月,在Nature CommunicationsAngewandte Chemie International EditionAdvanced Functional MaterialsNano EnergyJournal of Materials Chemistry AChemical CommunicationsAdvanced MaterialsSmallNano ResearchChemical ScienceAdvanced Composites and Hybrid MaterialsSmall StructuresChinese Journal of CatalysisJournal of Materials Science and TechnologyACS Sustainable Chemistry & EngineeringAdvanced Optical MaterialsElectrochimica Acta等国内外顶级学术期刊发表论文60余篇(包括第一作者或共同一作论文20余篇,通讯作者论文10余篇,ESI热点论文或高被引论文5),谷歌学术总引用3945次,H因子33,授权专利10余项。荣获2020年中国材料研究学会科学技术奖一等奖(第三完成人)2021年中国材料研究学会科学技术奖二等奖(第四完成人) 2022年中国材料研究学会科学技术奖一等奖(第三完成人)

研究方向

长期从事低维凝聚态复合功能材料表界面关键科学问题与前沿应用研究,主要包括:

1.“柔、轻、宽、薄”电磁吸收与屏蔽功能薄膜

2. 电极功能材料三相界面调控与能源器件

3. 电子、信息、人工智能与功能材料交叉前沿

科研项目

1、 氮掺杂介孔碳复合材料的控制合成与应用研究,国家自然科学基金青年基金项目,519020272020-2022

2、 北京邮电大学优秀引进人才B类项目,2018-2022

3、 二维半导体的热压制备与光电性能研究,重点实验室开放课题,2019-2021

4、 多元高熵化二维光电材料制备与应用,重点实验室开放课题,2021-2023

5、 5G电子器件中导电浆料的材料与技术,横向课题,2020-2021

6、 海绵金属化电磁屏蔽材料与技术,横向课题,2022-2023

代表性科研成果

1. K. Huang, L. Zhang, T. Xu et al. (2019) -60 °C solution synthesis of atomically dispersed cobalt electrocatalyst with superior performance. Nature Communications, 10(1), 606.

2. H. Wei, K. Huang, D. Wang et al. (2017) Iced photochemical reduction to synthesize atomically dispersed metals by suppressing nanocrystal growth. Nature Communications, 8, 1490.

3. K. Huang, R. Wang, S. Zhao et al. (2020) Atomic species derived CoOx clusters on nitrogen doped mesoporous carbon as advanced bifunctional electro-catalysts for Zn-air battery. Energy Storage Materials, 29, 156-162.

4. K. Huang, C. Lin, G. Yu et al. (2022) Ru/Se-RuO2 Composites via Controlled Selenization Strategy for Enhanced Acidic Oxygen Evolution. Advanced Functional Materials, 2211102.

5. H. Wei, K. Huang, L. Zhang et al. (2018) Ice melting to release reactants in solution syntheses. Angewandte Chemie International Edition. 57(13), 3354-3359.

6. K. Huang, R. Wang, H. Wu et al. (2019). Direct immobilization of an atomically dispersed Pt catalyst by suppressing heterogeneous nucleation at -40° C. Journal of Materials Chemistry A, 7(45), 25779-25784.

7. K. Huang, Y. Xu, Y. Song et al. (2021). NiPS3 quantum sheets modified nitrogen-doped mesoporous carbon with boosted bifunctional oxygen electrocatalytic performance. Journal of Materials Science & Technology, 65, 1-6.

8. K. Huang*, S. Guo, R. Wang et al. (2020). Two-dimensional MOF/MOF derivative arrays on nickel foam as efficient bifunctional coupled oxygen electrodes. Chinese Journal of Catalysis, 41(11), 1754-1760.

9. P. Du, K. Huang* et al. (2022) Wet-milling synthesis of immobilized Pt/Ir nanoclusters as promising heterogeneous catalysts. Nano Research, 15 (4), 3065-3072.

10. R. Wang, ..., H. Tang*, K. Huang* et al. (2022) Nucleation growth quenching for superior cluster catalysts, Nano Research,15, 7933-7939.

11. P. Du, ..., K. Huang* et al. (2022) In-situ Joule-heating drives rapid and on-demand catalytic VOCs removal with ultralow energy consumption, Nano Energy, 102, 107725.

12. R. Wang, ..., K. Huang* et al. (2022) Efficient synthesis of sulfur-modified cobalt hydroxide self-supported electrocatalysts for enhanced oxygen evolution. Advanced Composites and Hybrid Materials, 5, 2491-2499.

13. Z. Zhao, …, K. Huang* et al. (2021) Activity origin and catalyst design principles for electrocatalytic oxygen evolution on layered transition metal oxide with halogen doping, Small Structures, 2021, 2, 2100069.

14. Z. Zhao, …, K. Huang* et al. (2022) Tailoring manganese oxide nanoplates enhances oxygen evolution catalysis in acid, Journal of Catalysis, 405, 265-272.

15. K. Huang, J. Liu, L. Wang et al. (2019) Mixed valence CoCuMnOx spinel nanoparticles by sacrificial template method with enhanced ORR performance. Applied Surface Science, 487, 1145-1151.

学生培养

每年拟招收博士研究生1~2名,硕士研究生2-3名,本科生大学生创新创业项目1~2项,欢迎材料、物理和电子等相关背景学生积极联系。