姓名 | 黃華傑 | 性别 | 男 | ||||
民族 | 漢 | 籍貫 | 江蘇張家港 | ||||
出生年月 | 1987年4月 | 政治面貌 | 中共黨員 | ||||
最高學曆 | 研究生 | 最高學位 | 博士 | ||||
現任職務 | 無 | 技術職稱 | 副教授 | ||||
通訊地址 | 江蘇省常州市金壇區bv伟德官方网站56号樓326室 | ||||||
電話 | - | huanghuajie@hhu.edu.cn | |||||
個人簡介: 黃華傑,男,2014年6月畢業于南京理工大學,獲工學博士學位,專業為材料科學與工程;2012至2013年在美國萊斯大學(Rice University)從事訪問研究工作;2014年9月加入bv伟德官方网站。近年來,以第一作者及通訊作者在Adv. Mater., ACS Nano, Chem. Sci., Coordin. Chem. Rev., Chem. Mater., Small, J. Energy Chem., J. Mater. Chem. A等材料學國際著名刊物上發表論文80餘篇,其中中科院一區論文40餘篇,引用合計6000餘次,單篇引用超過100次的論文15篇,14篇論文入選“ESI高被引論文”,H因子為43;授權國家發明專利10餘件,實現成果轉化4件;主持包括國家自然科學基金、江蘇省自然科學基金、國家博士後科學基金特别資助等項目。 歡迎本校和外校材料、化學、物理、環境、電化學等相關專業,有志于從事科學研究的同學報考本課題組研究生!有意向的同學可通過郵件與老師聯系。 主要研究方向: (1)新型燃料電池及産氫催化劑; (2)新能源(超級電容器、锂電池等)電極材料; (3)低維納米材料(石墨烯、MXene等)的合成、性質及應用。 學術、社會兼職: (1)中國顆粒學會青年理事 (2)江蘇省顆粒學會理事,專委會副主任 獲獎及榮譽: (1)2015年度江蘇省科學技術一等獎(氧化石墨的雜化及其在能源中的應用) (2)2015年度江蘇省優秀博士學位論文 (3)江蘇省第五期“333”工程“中青年學術技術帶頭人” 指導研究生: (1)2018屆碩士李苗苗獲2019年度“江蘇省優秀碩士學位論文” (2)2020屆碩士嚴敏敏獲2018及2019年度“碩士研究生國家獎學金” (3)2021屆碩士楊營獲2020年度“碩士研究生國家獎學金” (4)2021屆博士楊翠珍(合作指導)獲2020年度“博士研究生國家獎學金” (5)2023屆碩士薛雅獲2022年度“碩士研究生國家獎學金” (6)2023屆碩士郭相傑獲2022年度“碩士研究生國家獎學金” (7)2024屆碩士沈斌鋒獲2023年度“碩士研究生國家獎學金” (8)2023年研究生沈斌鋒等獲“第十六屆全國大學生節能減排社會實踐與科技競賽”國家級三等獎 (9)2023年研究生沈斌鋒等獲“江蘇省研究生新材料設計科研創新實踐大賽”一等獎 指導本科生: (1)2021屆本科生沈斌鋒獲評2021年度“江蘇省本科優秀畢業論文”二等獎 (2)2022屆本科生章绮獲評2022年度“江蘇省本科優秀畢業論文”二等獎 (3)2021年本科生黎亞男等“第十四屆全國大學生節能減排社會實踐與科技競賽”國家級三等獎 (4)2021年本科生謝永帥等“江蘇省顆粒科技創新大賽”一等獎 (5)2022年本科生陳楊等“大學生創新創業訓練”國家級項目結題優秀 (6)2020年本科生任婧萱等“大學生創新創業訓練”省級項目結題優秀 近期發表論文: (1) H. Huang, X. Guo, C. Zhang, L. Yang, Q. Jiang, H. He, M. A. Amin, W. Alshahrani, J. Zhang,* Xingtao Xu,* Yusuke Yamauchi*, Advancements in Noble Metal–Decorated Porous Carbon Nanoarchitectures: Key Catalysts for Direct Liquid Fuel Cells, ACS Nano, 2024, accepted. (IF=17.1,中科院一區) (2) Q. Zhang, Q. Jiang, X. Yang, C. Zhang, J. Zhang, L. Yang, H. He, G. Ying*, H. Huang*, Heterointerface engineering of rhombic Rh nanosheets confined on MXene for efficient methanol oxidation, Journal of Energy Chemistry, 2024, 93, 2024, 419-428. (IF=13.1,中科院一區) (3) C. Ma, H. He*, J. Qin, L. Luo, Y. Lan, J. Zhang, L. Yang, Q. Jiang*, H. Huang*,The marriage of hydrazone-linked covalent organic frameworks and MXene enables efficient electrocatalytic hydrogen evolution, Small Structures, 2024, 5, 2300279. (IF=15.9,中科院二區) (4) Q. Zhang, M. Yan, W. Du, C. Yin, J. Zhang, L. Yang, Y. Kang, H. He*, H. Huang*, Spatial construction of ultrasmall Pt-decorated 3D spinel oxide-modified N-doped graphene nanoarchitectures as high-efficiency methanol oxidation electrocatalysts. Rare Metals, 2024, 43, 186-197. (IF=8.8,中科院一區) (5) Y. Wang, X. Yang, Y. Zhang, C. Zhang, L. Yang, Q. Jiang, H. He, G. Ying*, H. Huang*, Carbon nanotube-bridged MXene nanoarchitectures decorated with ultrasmall Rh nanoparticles for efficient methanol oxidation, Materials Today Energy, 2024, 40, 101495. (IF=9.3,中科院二區) (6) H. Huang, D. Xiao, Z. Zhu, C. Zhang, L. Yang, H. He, J. You, Q. Jiang*, X. Xu * and Y. Yamauchi*, A 2D/2D heterojunction of ultrathin Pd nanosheet/MXene towards highly efficient methanol oxidation reaction: the significance of 2D material nanoarchitectonics,Chemical Science, 2023, 14, 9854-9862. (IF=8.4,中科院一區,ESI熱點論文) (7) B. Shen, Y. Feng, Y. Wang, P. Sun, L. Yang, Q. Jiang, H. He, H. Huang*, Holey MXene nanosheets intimately coupled with ultrathin Ni-Fe layereddouble hydroxides for boosted hydrogen and oxygen evolution reactions, Carbon, 2023, 212,118141. (IF=10.9,中科院二區,ESI高被引論文) (8) J. Qin, H. Huang*, J. Zhang, F. Zhu, L. Luo, C. Zhang, L. Yang, Q. Jiang and H. He*,Stereoassembly of ultrasmall Rh-decorated zeolite imidazolate framework–MXene heterostructures for boosted methanol oxidation reaction,Journal of Materials Chemistry A, 2023, 11, 2848-2856. (IF=11.9,中科院二區,ESI高被引論文) (9) C. Yang, T. Wang, C. Li, H. He, D. Liu*, and H. Huang*,PdMo bimetallene coupled with MXene nanosheets as efficient bifunctional electrocatalysts for formic acid and methanol oxidation reactions,ACS Applied Materials & Interfaces, 2023, 15, 49195-49203. (IF=9.5,中科院二區) (10) C. Ma, H. He*, J. Qin, L. Hao, L. Jia, L. Yang, H. Huang*, Combining MXene nanosheets with iron-based metal-organic frameworks for enhanced electrocatalytic hydrogen evolution reaction, Materials Today Chemistry, 2023, 30, 101531. (IF=7.3,中科院二區) (11) H. He, Y. Chen, C. Yang, L. Yang, Q. Jiang* and H. Huang*, Constructing 3D interweaved MXene/graphitic carbon nitride nanosheets/graphene nanoarchitectures for promoted electrocatalytic hydrogen evolution, Journal of Energy Chemistry, 2022, 67, 483-491. (IF=13.1,中科院一區,ESI高被引論文) (12) W. Meng, H. He, L. Yang, Q. Jiang, B. Yuliarto, Y. Yamauchi, X. Xu, and H. Huang*, 1D-2D hybridization: nanoarchitectonics for grain boundary-rich platinum nanowires coupled with MXene nanosheets as efficient methanol oxidation electrocatalysts, Chemical Engineering Journal, 2022, 450, 137932. (IF=15.1,中科院一區,ESI高被引論文) (13) X. Guo, Q. Zhang, Y. Li, Y. Chen, L. Yang, H. He, X. Xu and H. Huang*, Nanosized Rh grown on single-walled carbon nanohorns for efficient methanol oxidation reaction, Rare Metals, 2022, 41, 2108-2117. (IF=8.8,中科院一區,ESI高被引論文) (14) Q. Zhang, Y. Li, H. He, and H. Huang*, Building 3D interconnected MoS2 nanosheet–graphene networks decorated with Rh nanoparticles for boosted methanol oxidation reaction, ACS Sustainable Chemistry & Engineering, 2022, 10, 8940-8948. (IF=8.4,中科院一區) (15) D. Xiao, Q. Jiang*, C. Xu, C. Yang, L. Yang, H. He and H. Huang*, Interfacial engineering of worm-shaped palladium nanocrystals anchored on polyelectrolyte-modified MXene nanosheets for highly efficient methanol oxidation, Journal of Colloid and Interface Science, 2022, 616, 781-790. (IF=9.9,中科院一區,ESI高被引論文) (16) H. Huang, Y. Xue, Y. Xie, Y. Yang, L. Yang, H. He, Q. Jiang* and G. Ying*, MoS2 quantum dot-decorated MXene nanosheets as efficient hydrogen evolution electrocatalysts, Inorganic Chemistry Frontiers, 2022, 9, 1171-1178. (IF=7.0,中科院一區,ESI高被引論文) (17) C. Yang, H. Huang*, H. He, L. Yang, Q. Jiang, and W. Li*, Recent advances in MXene-based nanoarchitectures as electrode materials for future energy generation and conversion applications, Coordination Chemistry Reviews, 2021, 435, 213806. (IF=20.6,中科院一區) (18) H. Huang*, Y. Wei, Y. Yang, M. Yan, H. He, Q. Jiang, X. Yang* and J. Zhu, Controllable synthesis of grain boundary-enriched Pt nanoworms decorated on graphitic carbon nanosheets for ultrahigh methanol oxidation catalytic activity, Journal of Energy Chemistry, 2021, 57, 601-609. (IF=13.1,中科院一區,ESI高被引論文) (19) C. Yang, Q. Jiang, H. Liu, L. Yang, H. He, H. Huang*, W. Li*, Pt-on-Pd bimetallic nanodendrites stereoassembled on MXene nanosheets as high-efficiency electrocatalysts toward methanol oxidation reaction. Journal of Materials Chemistry A, 2021, 9, 15432-15440. (IF=11.9,中科院二區) (20) H. Huang*, M. Yan, C. Yang, H. He, Q. Jiang, L. Yang, Z. Lu, Z. Sun, X. Xu*, Yoshio Bando and Yusuke Yamauchi*, Graphene nanoarchitectonics: recent advances in graphene-based electrocatalysts for hydrogen evolution reaction, Advanced Materials, 2019, 31, 1903415. (IF=29.4,中科院一區,ESI高被引論文) | |||||||
個人主頁 | https://orcid.org/0000-0001-5685-4994 | ||||||
更新時間 | 2024年3月20日 | ||||||