梁汉锋

发布日期:2020-11-17     浏览次数:次   

副教授, 博导
办公室:化学楼575(思明校区)
主页: www.meselab.net
邮箱: hfliang@xmu.edu.cn

个人简历:
2021.07-至今      固体表面物理化学国家重点实验室, 固定研究人员
2020.11-至今      厦门大学化学化工学院,副教授/博士生导师
2015.12-2020.08   阿卜杜拉国王科技大学,博士后
2011.09-2015.09   厦门大学/威斯康星-麦迪逊大学,联合培养博士


获得荣誉:

科睿唯安全球高被引科学家(交叉领域),2024

全球顶尖前2%科学家 - 终身科学影响力排行榜,2023/2024

全球顶尖前2%科学家 - 年度科学影响力排行榜,2020/2021/2022/2023/2024

瑞典IAAM科学家奖,2023

Materials Futures (IOP Science) 优秀青年编委奖

厦门大学南强青年拔尖人才计划B类


学术兼职:

国际先进材料协会会士

Int. J. Hydrogen Energy 学科编辑

The Innovation, Nano-Micro Lett., Chin. Chem. Lett. 等期刊青年编委

Catal. Commun., Appl. Catal. O 早期职业生涯编委/客座编辑

国际先进材料协会中国理事会成员


研究兴趣:
电催化;水系电池;功能涂层;纳米材料


承担的课题:
国家自然科学基金、科技部、工信部、JW科技委、福建省科技厅、厦门市自然科学基金、厦门大学校长基金等科研项目/课题/子课题


近期主要代表论著:

  1. 1. B. Wei,⁺ J. Zheng,⁺ Abhishek, X. Liu, J. Wu, Z. Qi,* Z. Hou, R. Wang, J. Ma, A. N. Gandi,* Z. Wang, H. Liang,* Design principle of insulating surface protective layers for metallic Zn anodes: A case study of ZrO2, Adv. Energy Mater. 2024, 14, 2401018 (Front Cover)

  2. 2. W. Zhu, F. Yao,* K. Cheng, M. Zhao, C.-J. Yang, C.-L. Dong,* Q. Hong, Q. Jiang,* Z. Wang, H. Liang,* Direct dioxygen radical coupling driven by octahedral ruthenium-oxygen-cobalt collaborative coordination for acidic oxygen evolution reaction. J. Am. Chem. Soc. 2023, 145, 17995-18006 (ESI HOT Paper)

  3. 3. J. Zheng, X. Liu, Y. Zheng, A. N. Gandi, X. Kuai, Z. Wang, Y. Zhu,* Z. Huang, H. Liang,* AgxZny protective coatings with selective Zn2+/H+ binding enable reversible Zn anodes. Nano Lett. 2023, 23, 6156-6163 (ESI Highly Cited Paper)

  4. 4. Y. Zeng,⁺ M. Zhao,⁺ H. Zeng, Q. Jiang,* F. Ming, K. Xi,* Z. Wang, H. Liang,* Recent progress in advanced catalysts for electrocatalytic hydrogenation of organics in aqueous conditions. eScience 2023, 3, 100156 (Inside Front Cover | Invited Review)

  5. 5. W. Zhu, X. Zhang, F. Yao,* R. Huang, Y. Chen, C. Chen, J. Fei, Y. Chen, Z. Wang, H. Liang,* A hydrazine‐nitrate flow battery catalyzed by a bimetallic RuCo precatalyst for wastewater purification along with simultaneous generation of ammonia and electricity. Angew. Chem. Int. Ed. 2023, 62, e202300390

  6. 6. W. Zhu,⁺ F. Yao,⁺ Q. Wu, Q. Jiang, J. Wang, Z. Wang, H. Liang,* Weakened d-p orbital hybridization in in situ reconstructed Ru/β-Co(OH)2 heterointerfaces for accelerated ammonia electrosynthesis from nitrates. Energy Environ. Sci. 2023, 16, 2483-2493 (Back Cover | ESI Highly Cited Paper)

  7. 7. J. Zheng, Y. Wu, H. Xie, Y. Zeng, W. Liu,* A. N. Gandi, Z. Qi, Z. Wang,* H. Liang,* In situ alloying sites anchored on an amorphous aluminum nitride matrix for crystallographic reorientation of zinc deposits. ACS Nano 2023, 17, 337-345 (Front Cover)

  8. 8. Y. Zeng, M. Zhao, Z. Huang, W. Zhu, J. Zheng, Q. Jiang,* Z. Wang, H. Liang,* Surface reconstruction of water splitting electrocatalysts. Adv. Energy Mater. 2022, 12, 2201713 (Front Cover | ESI Highly Cited Paper)

  9. 9. J. Zheng, Z. Huang, Y. Zeng, W. Liu,* B. Wei, Z. Qi,* Z. Wang, C. Xia, H. Liang,* Electrostatic shielding regulation of magnetron sputtered Al-based alloy protective coatings enables highly reversible zinc anodes. Nano Lett. 2022, 22, 1017–1023 (ESI Highly Cited Paper)

  10. 10. J. Zheng,⁺ G. Zhu,⁺ X. Liu, H. Xie, Y. Lin, Y. Zeng, Y. Zhang,* A. N. Gandi, Z. Qi, Z. Wang,* H. Liang,* Simultaneous dangling bond and zincophilic site engineering of SiNx protective coatings toward stable zinc anodes. ACS Energy Lett. 2022, 7, 4443-4450

 

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