主要研究方向:环境功能材料的合成与调控、水中新兴污染物的催化氧化以及生物质废弃物的资源化利用
2022.10-至今,特任副研究员,中国科学技术大学
2020.12-2022.09,博士后,中国科学技术大学
2015.09-2020.11,博士,中国科学技术大学
2011.09-2015.06,本科,华中科技大学
1.环境功能材料的合成与调控
2.水中新兴污染物的催化氧化
3.生物质废弃物的资源化利用
Mei, S.-C.†; Rui X.-H.†; Li L.; Huang, G.-X.*; Pan X.-Q.; Ke M.-K.; Wang Z.-H.; Yu, H.-Q.*; Yu, Y.*, Quantitative co-assembly for precise synthesis of mesoporous nanospheres with pore structure-dependent catalytic performance. Adv. Mater. 2021, 33 (43), 2103130.
Ke, M.-K.; Huang, G.-X.*; Mei, S.-C.; Wang, Z.-H.; Zhang, Y.-J.; Hua, T.-W.; Zheng, L.-R.; Yu, H.-Q.*, Interface-promoted direct oxidation of p-arsanilic acid and removal of total arsenic by the coupling of peroxymonosulfate and Mn-Fe-mixed oxide. Environ. Sci. Technol. 2021, 55, 7063-7071.
Huang, G.-X.†; Si, J.-Y.†; Qian, C.; Wang, W.-K.; Mei, S.-C.; Wang, C.-Y.; Yu, H.-Q.*, Ultrasensitive fluorescence detection of peroxymonosulfate based on a sulfate radical-mediated aromatic hydroxylation. Anal. Chem. 2018, 90 (24), 14439-14446.
Huang, G.-X.; Wang, C.-Y.; Yang, C.-W.; Guo, P.-C.; Yu, H.-Q.*, Degradation of bisphenol A by peroxymonosulfate catalytically activated with Mn1.8Fe1.2O4 nanospheres: synergism between Mn and Fe. Environ. Sci. Technol. 2017, 51, 12611-12618.
Zhang, Y.-J.†; Huang, G.-X.†; Winter, L. R.; Chen, J.-J.; Tian, L.; Mei, S.-C.; Zhang, Z.; Chen, F.; Guo, Z.-Y.; Ji, R.; You, Y.-Z.; Li, W.-W.; Liu X.-W.; Yu, H.-Q.*, Elimelech M.*, Simultaneous nanocatalytic surface activation of pollutants and oxidants for highly efficient water decontamination. Nat. Commun. 2022, 13 (1), 3005.
Mei, S.-C.†; Huang, G.-X.†; Rui, X.-H.; Li, L.; Ke, M.-K.; Pan, X.-Q.; Wang, Z.-H.; Yang, X.-D.; Yu, H.-Q.; Yu, Y. Sequential assembly tailored interior of porous carbon spheres for boosted water decontamination through peroxymonosulfate activation. Adv. Funct. Mater. 2022, 32 (18), 2111184.
Huang, B.-C.†; Huang, G.-X.†; Jiang, J.; Liu, W.-J.; Yu, H.-Q.*, Carbon-based catalyst synthesized and immobilized under calcium salt assistance to boost singlet oxygen evolution for pollutant degradation. ACS Appl. Mater. Interfaces 2019, 11 (46), 43180-43187.