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  • 黄浩量

    发布者:材料与化学工程学院  发布时间:2020-09-17  浏览次数:42

    一、个人基本资料

    姓名:黄浩量

    性别:男

    出生年月:1991.2

    籍贯:广东

    职位:首聘副教授


    二、联系方式

    邮箱:huanghaoliang@scau.edu.cn

    通讯地址:广州市天河区华南农业大学材料与化学工程学院

    邮编:510642


    三、个人简介

    20268月,进入华南农业大学材料与化学工程学院从事教学和科研工作,优秀青年人才、首聘副教授、硕士生导师。研究方向:纳米电催化剂材料的设计、表界面调控,以及固-液表界面的催化机制研究;原位、工况电化学谱学(同步辐射XASRamanDEMSICP-MSXRDATR-SEIRAS),特别是利用原位X射线吸收谱获取材料表面的精细结构。现主持国家自然科学基金1项、广东省自然科学基金2项。共发表学术论文62篇,其中第一作者/通讯作者/共同一作21篇,包括Nature CommunicationsACS NanoACS Energy LettersAdvanced MaterialsAdvanced. Functional Materials等催化化学、能源化学领域内高水平国际期刊。


    四、教育背景

    12016.10–2021.03,博士(公派留学),化学,英国南安普顿大学(QS86),导师:Andrea Russell教授;

    22013.09–2016.06,硕士(保研),化学工程与技术,华南农业大学,导师:刘英菊教授;

    32009.09–2013.06,学士,材料化学,华南农业大学。


    五、工作经历

    12026.08至今,华南农业大学材料与化学工程学院,首聘副教授;

    22024.01–2026.08,副研究员,能源转换与存储材料团队(团队PI:刘利峰研究员),松山湖材料实验室;

    32021.032024.01,博士后,中国科学院上海应用物理研究所,合作导师:张林娟/王建强研究员。


    六、科研方向

    1)新型电解水制氢和电合成催化材料的制备及应用研究

    2)先进多模态原位/工况电化学谱学表征技术。


    七、科研项目

    1. 钯基双金属材料电催化二氧化碳-甲酸相互转化的原位光谱研究(国家自然科学基金,2024–202630万元,主持);

    2. 低能耗非对称电解海水制氢关键材料及装置研发(广东省自然科学基金,2024–202730万元,主持);

    3. 原位电化学光谱研究可逆电催化二氧化碳-甲酸的固液表界面结构及机制(广东省自然科学基金,2025–202830万元,主持)。


    八、科研论著

    1. Haoliang Huang, Yu-Chung Chang, Yu-Cheng Huang, Lili Li, Alexander C. Komarek, Liu Hao Tjeng, Yuki Orikasa, Chih-Wen Pao, Ting-Shan Chan, Jin-Ming Chen, Shu-Chih Haw, Jing Zhou, Yifeng Wang, Hong-Ji Lin, Chien-Te Chen, Chung-Li Dong, Chang-Yang Kuo, Jian-Qiang Wang, Zhiwei Hu, Linjuan Zhang*. Unusual double ligand holes as catalytic active sites in LiNiO2. Nat. Commun. 2023,14, 2112 (高被引)

    2. Haoliang Huang, Yifeng Wang, Shengjie Zhang, Yu-Cheng Huang, Ying-Rui Lu, Chi-Liang Chen, Jingyuan Ma, Zhiwei Hu*, Jian-Qiang Wang*, Linjuan Zhang*. Role of Bi adatoms in Bi@Pd nanoparticles for electrochemical CO2 reduction. ACS Nano. 2025, 19, 15509-15521

    3. Chao Song, Haoliang Huang*, Yang Zhao, Kaiyang Xu, Weimian Zhang, Pengyue Shan, Qingsen Jia, Lijian Meng, Quanbing Liu*, Lifeng Liu*. Nanowire-based composite electrodes for ampere-level electrochemical reduction of CO2 to multi-carbon products via accelerated mass transport. ACS Energy Lett. 2026, 10.1021/acsenergylett.6c01954. (副封面)

    4. Weimian Zhang, Binwen Zeng, Haoliang Huang*, Fan Dang, Xin Liu, Jing Sun, Wei Liao, Mengxiang Han, Chao Song, Run Ran, Kaiyang Xu, Fei Lin, Wenlong Wang, Zhiming Cui, Quanbing Liu*, Lifeng Liu*. Steering active hydrogen in Pt single bond Cu single atom alloy nanowires for efficient nitrate reduction to ammonia. Chem. Eng. J.2026, 546, 179753.

    5. Yi Wei, Haoliang Huang, Xuejie Cao, Fei Lin*, Hongyang Zhou, Yinuo Gao, Yifan Zheng, Da Wang*, Lu Tao, Hongtian Mi, Tianran Zhang*, Kai Wang*. Pyrochlore Y2RuxMn2-xO7 with tunable B-site composition for efficient and durable acidic OER. Chin. Chem. Lett. 2026, 10.1016/j.cclet.2026.113078. 共同一作

    6. Binwen Zeng, Haoliang Huang, Lecheng Liang, Hengyu Li, Jinhui Liang, Fei Lin, Kaiyang Xu, Shao Ye, Chenyue Zhang, Huiyu Song, Lifeng Liu*, Zhiming Cui*. Enhanced hydrogen spillover and electronic coupling in Pt-CeZrO4 enables efficient and durable proton exchange membrane water electrolysis. Adv. Funct. Mater.2026, 36 (49), e75849共同一作

    7. Run, Ran, Haoliang Huang, Qingqing Chen, Fei Lin, Zhipeng Yu, Weifeng Su, Chenyue Zhang, Qingsen Jia, Jingwei Wang, Yang Zhao, Kaiyang Xu, Binwen Zeng, Yaowen Xu, Weimian Zhang, Zhijian Peng*, Lifeng Liu*. Electrochemical sulfion upgrading to multicolor sulfur quantum dots coupled with hydrogen production via hybrid electrolysis. Adv. Funct. Mater.2026, 36 (33), e25588共同一作

    8. Haoran Shen, Haoliang Huang, Bowen Shu, Peixin Zhang, Zhen-Lin Xu, Weipeng Liu*, Shizhang Chen*, Yingju Liu*. Spatially ordered dual-atom nanozymes for mimicking substrate-induced conformational locking in natural enzymes. Adv. Mater. 2025, 38 (10), e21184共同一作

    9. Weifeng Su, Tao-Jing Huang, Haoliang Huang, Zhipeng Yu, Fei Lin, Chenyue Zhang, Hao Tan, Kaiyang Xu, Run Ran, Weimian Zhang, Yaowen Xu, Chao Song, Guang-Jie Xia*, Zuxin Chen*, Lifeng Liu*. Joule‐heating synthesis of high‐entropy oxide nanoparticles as sulfion oxidation catalysts for efficient and durable hybrid seawater electrolysis. Adv. Funct. Mater.2025, 35 (46), 2506415.共同一作

    10. Yang Zhao, Binwen Zeng, Haoliang Huang, Huanhuan Yang, Zhipeng Yu, Chao Song, Jingwei Wang, Kaiyang Xu, Xinyi Xiang, Wei Wang, Fei Lin, Sheng Meng, Lijian Meng, Zhiming Cui*, Lifeng Liu*. Atomic dispersion of scandium in electrochemically reduced copper oxide nanosheets for efficient electrocatalytic CO2 reduction to C2+ products. Chem. Eng. J.2025, 524, 169132. 共同一作

    11. Peixin Zhang, Haoran Shen, Kangling Tang, Jinjiang Lv, Haoliang Huang*, Yingju Liu*. Ligand-driven charge redistribution in NiFe oxalate-decorated Ni3S2 for high performance in alkaline seawater electrolysis. J. Colloid Interface Sci.2025, 698, 138115.

    12. Haoliang Huang, Andrea E. Russell*. Approaches to achieve surface sensitivity in the in situ XAS of electrocatalysts. Curr. Opin. Electrochem.2021,27, 100681

    13. Haoliang Huang, Oliver F. Blackman, Veronica Celorrio, Andrea E. Russell*. Isolating the contributions of surface Sn atoms in the bifunctional behaviour of PtSn CO oxidation electrocatalysts. Electrochim. Acta2021,390, 138811.

    14. Haoliang Huang, Abu Bakr Ahmed Amine Nassr, Verónica Celorrio, Diego Gianolio, Christopher Hardacre, Dan JL Brett, Andrea E. Russell*. Contrasting the EXAFS obtained under air and H2 environments to reveal details of the surface structure of Pt-Sn nanoparticles. Phys. Chem. Chem. Phys.2021,23 (20), 11738-11745.

    15. Haoliang Huang, Edward TC Hayes, Diego Gianolio, Giannantonio Cibin, Fredrik S. Hage, Quentin M. Ramasse, Andrea E. Russell*. Role of SnO2 in the bifunctional mechanism of CO oxidation at Pt‐SnO2 electrocatalysts. ChemElectroChem2021,8 (13), 2572-2582.

    16. Haoliang Huang, Abu Bakr Ahmed Amine Nassr, Verónica Celorrio, S. F. Taylor, Vinod Kumar Puthiyapura, Christopher Hardacre, Dan JL Brett, Andrea E. Russell*. Effects of heat treatment atmosphere on the structure and activity of Pt3Sn nanoparticle electrocatalysts: a characterisation case study. Faraday Discuss.2018,208, 555-573.

    17. Haoliang Huang, Junying Huang, Weipeng Liu, Yueping Fang*, Yingju Liu*. Ultradispersed and single-layered MoS2 nanoflakes strongly coupled with graphene: an optimized structure with high kinetics for the hydrogen evolution reaction. ACS Appl. Mater. Interfaces2017,9 (45), 39380-39390.

    18. Haoliang Huang, Weihao Huang, Zhuohong Yang, Junying Huang, Jiadong Lin, Weipeng Liu*, Yingju Liu*. Strongly coupled MoS2 nanoflake–carbon nanotube nanocomposite as an excellent electrocatalyst for hydrogen evolution reaction. J. Mater. Chem. A2017,5 (4), 1558-1566. (热点文章)

    19. Haoliang Huang, Liqin Chen, Chuanhe Liu, Xinshun Liu, Senxuan Fang, Weipeng Liu, Yingju Liu*. Hierarchically nanostructured MoS2 with rich in-plane edges as a high-performance electrocatalyst for the hydrogen evolution reaction. J. Mater. Chem. A2016,4 (38), 14577-14585. (封面文章)

    20. Haoliang Huang, Zuyu He, Xiaomin Lin, Weishuo Ruan, Yingju Liu*, Zhuohong Yang*. Ultradispersed platinum nanoclusters on polydopamine-functionalized carbon nanotubes as an excellent catalyst for methanol oxidation reaction. Appl. Catal., A2015,490, 65-70.

    21. Haoliang Huang, Yingju Liu*, Qiongzhi Gao, Weishuo Ruan, Xiaomin Lin, Xin Li. Rational construction of strongly coupled metal-metal oxide-graphene nanostructure with excellent electrocatalytic activity and durability. ACS Appl. Mater. Interfaces2014,6 (13), 10258-64.


    九、写给学生的话

    多思考、多尝试,实践是检验真理的唯一标准!


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