易欢

博士,特聘教授(A类),硕导

环境科学、环境工程、环境科学与工程专业招生

资源与环境工程学院423 / 明义楼219

hyi@gzu.edu.cn



欢迎有交叉学科背景的优秀本科生、研究生加入(包括但不限于计算化学、环境功能材料、高级氧化、生物、环境健康)!课题组具有活跃、学术民主、互帮互助、追求卓越的氛围。感兴趣的同学,请发邮件至:hyi@gzu.edu.cn

一、研究领域和方向

1)水污染控制

2)环境功能材料和催化氧化处理技术

3)新污染物的分析方法、环境行为及其环境效应

4)新污染物环境暴露与健康


二、教育与工作经历

2024.09至今,贵州大学,特聘教授(A类)

2021.09-2024.08,湖南大学,环境科学与工程专业,博士后、副研究员、助理研究员

2016.09-2021.06,湖南大学,环境科学与工程专业,博士

2012.09-2016.06,湖南大学,环境科学专业,学士


三、学术任职及奖励

2020-2024,连续五年入选年度全球前2%顶尖科学家榜单

2023Processes期刊(SCI IF=3.5)、Applied Sciences (SCI IF=2.5) 客座编辑

2021,湖南省优秀博士后创新人才

2020-2021提名年度中国未来女科学家计划候选人

2019,钱易环境奖


四、科研教学及学术活动

已发表学术论文80余篇,论文被引频次总计10000次,h-index=55其中以第一作者/通讯作者在Water Research(自然指数期刊)、Advanced Energy MaterialsApplied Catalysis B: Environmental等期刊上发表高水平论文20篇,其中4篇入选ESI 0.1% Hot Paper热点论文,6篇入选ESI 1% Highly Cited Paper高被引论文。申请并授权国家发明专利16


五、近五年主持承担的主要科研项目

1)贵州大学一流学科特区人才引进项目(A类),80, 在研, 主持.

2国家自然科学基金青年科学基金项目,《空间限域强化Mn3O4@OMC自发氧化水体中双酚类化合物的效能及机制研究》, 2024.01-2026.1230万,在研,主持

3)中国博士后科学基金面上一等项目,《Hemin人工酶复合材料光芬顿氧化修复邻苯二甲酸酯污染水体及机理研究》, 2022.01-2023.1212万,结题,主持。

4)湖南省优秀博士后科技创新人才计划项目,《人工酶在环境修复中的应用》,省人才创新项目,2021.09-2023.0940万,结题,主持。


六、代表性论文

 (1) Yi Huan (易欢); Liu Shiyu et. al., Recent advance of transition‐metal‐based layered double hydroxide nanosheets: synthesis, properties, modification, and electrocatalytic applications. Advanced Energy Materials (SCI IF=26.8,中科院一区), 2021, 11: 2002863.(高被引论文,被引用252次)

 (2) Yi Huan (易欢)1; Yan Ming1 et. al., Synergistic effect of artificial enzyme and 2D nano-structured Bi2WO6 for eco-friendly and efficient biomimetic photocatalysis. Applied Catalysis B: Environmental (SCI IF=21.1,中科院一区). 2019, 250: 52–62.(热点论文&高被引论文,被引用366次)

 (3) Yi Huan (易欢); Almatrafi Eydhah et. al., Spatial confinement: a green pathway to promote the oxidation processes for organic pollutants removal from water. Water Research (自然指数期刊,SCI IF=12.9,中科院一区), 2023, 233: 119719. (高被引论文,被引用72次)

 (4) Yi Huan (易欢); Qin Lei et. al., Nano-structured bismuth tungstate with controlled morphology: fabrication, modification, environmental application and mechanism insight. Chemical Engineering Journal (SCI IF=13.5,中科院一区). 2019, 358: 480-496.(热点论文&高被引论文,被引用225次)

 (5) Yi Huan (易欢); Li Minfang et. al., Recent development of advanced biotechnology for wastewater treatment. Critical Reviews in Biotechnology (SCI IF=10.1,中科院一区). 2020, 40: 99-118.

 (6) Yi Huan (易欢)1; Lai Cui1 et. al., H2O2-free photo-Fenton system for antibiotics degradation in water via the synergism of oxygen-enriched graphitic carbon nitride polymer and nano manganese ferrite. Environmental Science: Nano (SCI IF=6.2,中科院二区). 2022, 9: 815-826.

 (7) Yi, Huan (易欢); Lai Cui; Almatraf Eydhah;Huo Xiuqin; Qin Lei; Fu Yukui; Zhou Chengyun; Zeng Zhuotong; Zeng Guangming., Efficient antibiotics removal via the synergistic effect of manganese ferrite and MoS2. Chemosphere (SCI 2023 IF=8.1,中科院二区). 2022, 288: 132494.

 (8) Yi Huan (易欢); Huang Danlian et. al., Selective prepared carbon nanomaterials for advanced photocatalytic application in environmental pollutant treatment and hydrogen production. Applied Catalysis B: Environmental (SCI IF=21.1,中科院一区). 2018, 239: 408-424.(热点论文&高被引论文,被引用407次)

 (9) Yi Huan (易欢); Zeng Guangming* et. al., Environment-friendly fullerene separation methods. Chemical Engineering Journal (SCI IF=13.5,中科院一区). 2017, 330: 134-145.(热点论文&高被引论文,被引用80次)

 (10) Yi Huan (易欢)1; Jiang Min1; Huang Danlian1 et. al., Advanced photocatalytic Fenton-like process over biomimetic Hemin-Bi2WO6 with enhanced pH tolerance. Journal of the Taiwan Institute of Chemical Engineers (SCI IF=6.3). 2018, 93: 184-192.(热点论文&高被引论文,被引用134次)

 (11) Yi Huan (易欢); Ma Dengsheng et. al., Facile introduction of coordinative Fe into oxygen-enriched graphite carbon nitride for efficient photo-Fenton degradation of tetracycline. Journal of colloid and interface science (SCI IF=9.7,中科院一区). 2024, 660: 692-702. (高被引论文,被引用33次)

 (12) Wei Xiaoyu; Yi Huan* (易欢*); Lai Cui* et. al., Synergistic effect of flower-like MnFe2O4/MoS2 on photo-Fenton oxidation remediation of tetracycline polluted water. Journal of Colloid and Interface Science (SCI IF=9.7,中科院一区). 2022, 608: 942-953.(通讯)

 (13) Qin Lei1; Yi Huan (易欢)1; et. al., Hierarchical porous carbon material restricted Au catalyst for highly catalytic reduction of nitroaromatics. Journal of Hazardous Materials (SCI IF=12.4,中科院一区). 2019, 380: 1-11.(共一,热点论文&高被引论文,被引用137次)

 (14) Huo Xiuqin1; Yi Huan (易欢)1 et. al., Porous Graphitic Carbon Nitride Nanomaterials for Water Treatment. Environmental Science: Nano (SCI IF=6.2,中科院二区). 2021, 8: 1835-1862.(共一)

 (15) Xia Wu1; Song Biao1; Yi Huan (易欢)1 et. al., From aquatic biota to autogenous N-doping biochar—using a highly efficient nonradical dominant process for sulfamethoxazole degradation. Journal of Cleaner Production (SCI IF=10.7,中科院一区). 2022, 373: 133750.(共一)

 (16) Xu Qianqian1; Yi Huan (易欢)1, Lai Cui et. al., Construction of 2D/2D nano-structured rGO-BWO photocatalysts for efficient tetracycline degradation. Catalysis Communications (SCI IF=4.3). 2019, 124: 113-117.(共一)

 (17) Hu Shuyuan; Qin Lei*; Yi Huan* (易欢*) et. al, Carbonaceous materials-based photothermal process in water treatment: from the originals to frontier applications. Small (SCI IF=12.5,中科院二区). 2023, 20 (5): 2305579.(通讯)

 (18) Lai Cui*; Ma Dengsheng; Yi Huan* (易欢*) et. al, Functional partition of Fe and Ti co-doped g-C3N4 for photo Fenton degradation of oxytetracycline: Performance, mechanism, and DFT study. Separation and Purification Technology (SCI IF=9,中科院一区). 2023, 306:122546.(通讯)

 (19) Ma Dengsheng; Huo, Xiuqin; Lai Cui*; Yi Huan* (易欢*); Zeng Lixi; Xu Fuhang; Yan Huchuan; Zhou Xuerong; Fan Xing; Tang Lin; Yan Ming. Hollow carbon nanocage-loaded Fe single-atom mediated electron transfer process for antibiotics removal: Coordination environment and mechanism investigation, Applied Catalysis B: Environmental (SCI IF=21.1,中科院一区). 2026, 381: 125894. (通讯)

 (20) Ma Dengsheng; Lai Cui*; Yi Huan* (易欢*); Huo, Xiuqin; Li Ling; Zhang Mingming; Xu Fuhang; Yan Huchuan; Hu Shuyuan; Luo Yucan, Confinement strategies for the design of efficient heterogeneous Fenton-like catalysts: From nano-space to atomic scale, Coordination Chemistry Reviews (SCI IF=23.5,中科院一区), 2025, 522: 216241.(通讯)