王耀辉

姓名:王耀辉

职称:教授

电话:18959288481

邮箱:yaohuiwang@xmu.edu.cn

个人简历

王耀辉,理学博士,博士生导师,国家优秀青年基金获得者,厦门大学南强青年拔尖人才;2020年获厦门大学博士学位,2021-2023年在厦门大学进行博士后研究,2023年至今在厦门大学工作;获得“2021年福建省优秀博士学位论文”、“2022年宁德时代杯新能源创新大赛金奖(第一名)”等荣誉;主要从事界面水的原位谱学研究,分子层面揭示界面水在电催化反应以及界面水相关的物理化学过程中的关键作用。


研究领域

界面水的原位谱学(拉曼、红外、和频)研究,电催化,电解水


主要科研成果

近三年,共发表SCI论文20余篇,以第一作者或通讯作者(含共同)在Nature、Nature Protoc.、Joule、Angew. Chem. Int. Ed.、Nano Lett.、Nano Res.等高水平期刊发表论文;授权发明专利2项。


主要代表学术论著与论文

1.Wang, Y. H., Zheng, S., Yang, W. M., Zhou, R. Y., He, Q. F., Radjenovic. P., Dong, J. C., Li, S., Zheng, J., Yang, Z. L., Attard, G., Pan, F.*, Tian, Z. Q., Li, J. F.*, In situ Raman spectroscopy reveals the structure and dissociation of interfacial water. Nature, 2021, 600, 81-85.

2.Wang, Y. H., Li, S., Zhou, R. Y., Zheng, S., Zhang, Y. J., Dong, J. C., Yang, Z. L., Pan, F.*, Tian, Z. Q., Li, J. F.*, In situ electrochemical Raman spectroscopy and ab initio molecular dynamics study of interfacial water on single crystal surface. Nature Protoc., 2022, 18, 883-901. 

3.Wang, Y. H., Jin X., Xue M., Cao M. F., Xu F., Lin G. X., Le J. B., Yang W. M., Yang Z. L., Cao Y., Zhou Y., Cai W., Zhang Z., Cheng J.*, Guo W., Li, J. F.*, Characterizing surface-confined interfacial water at graphene surface by in situ Raman spectroscopy. Joule, 2023, 7, 1-11. 

4.Wang, Y. H., Wang, X. T., Ze, H., Zhang, X. G., Radjenovic P., Zhang, Y. J.,* Dong, J. C.,* Tian, Z. Q., Li, J. F.*, Spectroscopic verification of adsorbed hydroxy intermediates in the bifunctional mechanism of the hydrogen oxidation reaction. Angew. Chem. Int. Ed., 2021, 60, 5708-5711. 

5.Wang, Y. H., Wei, J., Radjenovic, P., Tian, Z. Q., Li, J. F.* In situ analysis of surface catalytic reactions using shell-isolated nanoparticle-enhanced Raman spectroscopy. Anal. Chem., 2019, 91, 1675-1685. 

6.Lin, X. M., Wang X. T., Deng, Y. L., Chen X., Chen, H. N., Radjenovic. P., Zhang, X. G., Wang, Y. H.*, Dong, J. C.*, Tian, Z. Q., Li, J. F.*, In situ probing the hydrogen oxidation reaction intermediates on PtRu bimetallic catalyst surface by core-shell nanoparticle-enhanced Raman spectroscopy. Nano lett., 2022, 22, 5544-5552.

7.Liu, J., Zhong, H. L., Li, X., Yue, M. F., Yang, W. M., You, X.*, Tian, J. H.*, Wang, Y. H.*, Li, J. F.*, Core-shell nanoparticle enhanced Raman spectroscopy in situ probing the composition and evolution of interfacial species on PtCo surfaces. Nano Res., 2023: 10.1007/s12274-023-5473-9.

8.Huang, X. X., Wang, H. J., Yang, J. L., Yue, M. F., Wang, Y. H.*, Zhang, H.*, Li, J. F.*, Direct S-H evidence revealing the photo-electrocatalytic hydrogen evolution reaction mechanism on CdS using surface-enhanced Raman spectroscopy. J. Phys. Chem. Lett., 2023, 14, 4026-4032.


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