云南大学化学科学与工程学院
专业/方向:物理化学/多相催化
研究团队:绿色催化与低碳转化
主讲课程:《高等催化化学》,《化学专业外语》,《催化与理论化学前沿》
电子邮箱:wenhao.fang@ynu.edu.cn
受教育经历及工作经历:
2020 – 至今,教授,云南大学
2015 – 2020,副教授,云南大学
2013 – 2015,博士后,法国国家科研中心/比利时索尔维集团
2010 – 2013,博士,法国里尔大学,导师:Louise Duhamel、Sebastien Paul、Franck Dumeignil教授
2007 – 2010,硕士,厦门大学,导师:王野教授
2003 – 2007,学士,厦门大学,导师:王野教授
研究领域和兴趣:
功能催化剂的设计、制备与表征
木质纤维素生物质热、光、电催化转化
催化反应机理
代表性论文:
1. Botao Fan, Hao Zhang, Bang Gu, Feng Qiu, Qiue Cao, Wenhao Fang*, Constructing Pr-doped CoOOH catalytic sites for efficient electrooxidation of 5-hydroxymethylfurfural, Journal of Energy Chemistry, 2025, 100, 234-244. IF=14
2. Qizhao Zhang, Botao Fan, Yuxi Wang, Bang Gu*, Qinghu Tang, Feng Qiu, Qiue Cao, Wenhao Fang*, Selective photooxidation of 5-hydroxymethylfurfural in water enabled by highly dispersed gold nanoparticles on graphitic carbon nitride, Chemical Synthesis, 2025, DOI: 10.20517/cs.2024.115.
3. Zhiyuan Ning, Pan Liu, Kai Xin, Li Liu, Wenhao Fang*, Ping Ning*, Deciphering the mechanisms of plasma-enhanced CO reduction of SO2 on Ag-based catalysts supported by Al2O3: An in-situ desorption approach, Separation and Purification Technology, 2025, 354, 129128. IF=8.1
4. Rong Shang, Yulong Li, Junjing Guo, Bang Gu, Feng Qiu, Qinghu Tang, Qiue Cao, Wenhao Fang*, Unraveling defect chemistry in doped-ceria catalyst for oxidative coupling of lignin-based aniline and benzyl alcohol, Journal of Catalysis, 2024, 434, 115537. IF=6.5
5. Qizhao Zhang, Bang Gu, Wenhao Fang*, Sunlight-driven photocatalytic conversion of furfural and its derivatives, Green Chemistry, 2024, 26, 6261-6288. IF=9.3
6. Wen Ding,1 Jianjun Li,1 Feng Li,* Qinghu Tang, Wenhao Fang*, Thorium-promoted Cu/Zn/Al syngas catalyst for methanol synthesis with enhanced activity and stability, Fuel, 2024, 367, 131470. IF=6.7
7. Hao Zhang,1 Tianyu Gao,1 Qizhao Zhang, Bang Gu, Qinghu Tang, Qiue Cao, Wenhao Fang*, Synergistic catalysis in loaded PtRu alloy nanoparticles to boost base-free aerobic oxidation of 5-hydroxymethylfurfural, Materials Today Catalysis, 2023, 3, 100013.
8. Wendi Zhang,1 Yongxing Wang,1 Bang Gu,* Qinghu Tang, Qiu-E Cao, Wenhao Fang*, Regulating the Interaction within Pd-Cu Dual Metal Sites for Selective Hydrogenation of Furfural Using Ambient H2 Pressure, ACS Sustainable Chemistry & Engineering, 2023, 11, 12798-12808. IF=7.1
9. Runze Zhang,1 Yinghao Wang,1 Wendi Zhang, Yaowei Lu, Qinghu Tang, Qiue Cao, Bang Gu*, Wenhao Fang*, Hydrogenation of levulinic acid to γ-valerolactone over single atom Pt confined in Sn-modified MIL-101(Fe), Chemical Communications, 2023, 59, 9134-9137. IF=4.3
10. Hao Zhang, Runze Zhang, Wendi Zhang, Bang Gu, Qinghu Tang, Qiue Cao, Wenhao Fang*, Base-free selective oxidation of 5-hydroxymethylfurfural over Pt nanoparticles on surface Nb-enriched Co-Nb oxide, Applied Catalysis B: Environmental, 2023, 330, 122670. IF=20.2
11. Hao Zhang, Yinghao Wang, Qizhao Zhang, Bang Gu, Qinghu Tang, Qiue Cao, Kun Wei*, Wenhao Fang*, Synergy in magnetic NixCo1Oy oxides enables base-free selective oxidation of 5-hydroxymethylfurfural on loaded Au nanoparticles, Journal of Energy Chemistry, 2023, 78, 526-536. IF=14
12. Qizhao Zhang, Hao Zhang, Bang Gu, Qinghu Tang, Qiue Cao, Wenhao Fang*, Sunlight-driven photocatalytic oxidation of 5-hydroxymethylfurfural over a cuprous oxide-anatase heterostructure in aqueous phase, Applied Catalysis B: Environmental, 2023, 320, 122006. IF=20.2
13. Rong Shang, Qizhao Zhang, Peng Lin, Bang Gu, Qinghu Tang, Qiue Cao, Wenhao Fang*, Aerobic activation of alcohols on Zn-promoted atomically-dispersed Ru sites encapsulated within UiO-66 framework for imine synthesis, Applied Catalysis B: Environmental, 2022, 319, 121904. IF=20.2
14. Yongxing Wang, Tianyu Gao, Yaowei Lu, Yinghao Wang, Qiue Cao, Wenhao Fang*, Efficient hydrogenation of furfural to furfuryl alcohol by magnetically recoverable RuCo bimetallic catalyst, Green Energy & Environment, 2022, 7, 275-287. IF=10.7
15. Yaowei Lu, Yongxing Wang, Qinghu Tang, Qiue Cao, Wenhao Fang*, Synergy in Sn-Mn oxide boosting the hydrogenation catalysis of supported Pt nanoparticles for selective conversion of levulinic acid, Applied Catalysis B: Environmental, 2022, 300, 120746. IF=20.2
16. Junjie Chen1, Weixiao Sun1, Yongxing Wang, Wenhao Fang*, Performant Au hydrogenation catalyst cooperated with Cu-doped Al2O3 for selective conversion of furfural to furfuryl alcohol at ambient pressure, Green Energy & Environment, 2021, 6, 546-556. (Front Cover Paper) IF=10.7
17. Hao Zhang, Tianyu Gao, Qiue Cao, Wenhao Fang*, Tailoring the Reactive Oxygen Species in Mesoporous NiO for Selectivity-Controlled Aerobic Oxidation of 5-Hydroxymethylfurfural on a Loaded Pt Catalyst, ACS Sustainable Chemistry & Engineering, 2021, 9, 6056−6067. IF=7.1
18. Yinhao Wang, Yongxing Wang, Yaowei Lu, Qiue Cao, Wenhao Fang*, Efficient hydrogenation of 5-hydroxymethylfurfural using a synergistically bimetallic Ru-Ir/C catalyst, Chemical Communications, 2021, 57, 1742-1745. (Back Cover Paper) IF=4.3
19. Weixiao Sun, Shipeng Wu, Yaowei Lu, Yongxing Wang, Qiu-E Cao, Wenhao Fang*, Effective Control of Particle Size and Electron Density of Pd/C and SnPd/C Nanocatalysts for Vanillin Production via Base-Free Oxidation, ACS Catalysis, 2020, 10, 7699-7709. IF=11.3 (highlighted by Synfacts)
20. Yongxing Wang, Yaowei Lu, Qiue Cao, Wenhao Fang*, A magnetic CoRu-CoOX nanocomposite efficiently hydrogenates furfural to furfuryl alcohol under ambient H2 pressure in water, Chemical Communications, 2020, 56, 3765-3768. IF=4.3
21. Shipeng Wu1, Weixiao Sun1, Junjie Chen, Jinghan Zhao, Qiue Cao, Wenhao Fang*, Qihua Zhao*, Efficient imine synthesis from oxidative coupling of alcohols and amines under air atmosphere catalysed by Zn-doped Al2O3 supported Au nanoparticles, Journal of Catalysis, 2019, 377, 110-121. IF=6.5
22. Tianyu Gao, Jing Chen, Wenhao Fang*, Qiue Cao, Weiping Su, Franck Dumeignil, Ru/MnXCe1OY catalysts with enhanced oxygen mobility and strong metal-support interaction: Exceptional performances in 5-hydroxymethylfurfural base-free aerobic oxidation, Journal of Catalysis, 2018, 368, 53-68. (Most Downloaded Articles) IF=6.5
23. Youwei Dou, Shuai Zhou, Claudio Oldani, Wenhao Fang*, Qiue Cao, 5-Hydroxymethylfurfural production from dehydration of fructose catalyzed by Aquivion@silica solid acid, Fuel, 2018, 214, 45-54. IF=6.7
24. Wenhao Fang*, Zhaoyu Fan, Hui Shi, Sheng Wang, Wei Shen, Hualong Xu, Jean-Marc Clacens, Floryan De Campo, Armin Liebens, Marc Pera-Titus*, AquivionÒ–carbon composites via hydrothermal carbonization: amphiphilic catalysts for solvent-free biphasic acetalization, Journal of Materials Chemistry A, 2016, 4, 4380-4385. IF=10.7
25. Wenhao Fang, Sébastien Paul, Mickaël Capron, Ankush V. Biradar, Shubhangi B. Umbarkar, Mohan K. Dongare, Franck Dumeignil, Louise Jalowiecki-Duhamel*, Highly loaded well dispersed stable Ni species in NiXMg2AlOY nanocomposites: application to hydrogen production from bioethanol, Applied Catalysis B: Environmental, 2015, 166-167, 485-496. IF=20.2
26. Wenhao Fang, Sébastien Paul, Mickaël Capron, Franck Dumeignil, Louise Jalowiecki-Duhamel*, Hydrogen production from bioethanol catalyzed by NiXMg2AlOY ex-hydrotalcite catalysts, Applied Catalysis B: Environmental, 2014, 152–153, 370-382. IF=20.2
27. Wenhao Fang, Jiashu Chen, Qinghong Zhang*, Weiping Deng, Ye Wang*, Hydrotalcite-Supported Gold Catalyst for the Oxidant-Free Dehydrogenation of Benzyl Alcohol: Studies on Support and Gold Size Effects, Chemistry - A European Journal, 2011, 17, 1247-1256. IF=3.9
28. Wenhao Fang, Qinghong Zhang*, Jing Chen, Weiping Deng, Ye Wang*, Gold nanoparticles on hydrotalcites as efficient catalysts for oxidant-free dehydrogenation of alcohols, Chemical Communications, 2010, 46, 1547-1549. IF=4.3 (highlighted by Synfacts)
竞争性科研项目:
1. 国家自然科学基金面上项目(22272149),2023-01至2026-12,主持,在研
2. 国家自然科学基金地区科学基金项目(22062025),2021-01至2024-12,主持,在研
3. 国家自然科学基金地区科学基金项目(21763031),2018-01至2021-12,主持,已结题
4. 国家自然科学基金青年科学基金项目(21603187),2017-01至2019-12,主持,已结题
5. 云南省基础研究计划优秀青年项目(202001AW070012),2020-09至2023-08,主持,已结题
6. 云南省基础研究计划面上项目(202101AT070171),2021-04至2024-03,主持,已结题
7. 云南省“千人计划”青年人才项目,2019-01至2023-12,主持,已结题
8. 云南省中青年学术和技术带头人后备人才项目(2019HB119),2019-01至2023-12,主持,已结题
发明专利授权:
1. 方文浩,张浩,顾榜,曹秋娥;一种铂钴铌多相催化剂及其制备方法和应用、2,5-呋喃二甲酸的制备方法;ZL202211282448.8;2024-03-08(授权日);2022-10-19(申请日)
2. 方文浩,张润泽,顾榜,曹秋娥;一种负载铂的锡铁双金属有机框架材料的制备方法及应用;ZL202211207442.4;2024-02-20(授权日);2022-09-30(申请日)
3. 方文浩,张浩,曹秋娥;磁性铂基催化剂及制备方法和应用;202010394571.3;2023-07-04(授权日);2020-05-11(申请日)
4. 方文浩,王英浩,曹秋娥;磁性金钴复合物催化剂及其制备方法和应用;ZL202110622614.3;2023-03-14(授权日);2021-06-04(申请日)
5. 方文浩,王永星,曹秋娥;一种催化转化糠醛制备糠醇的方法;ZL202010388357.7;2022-12-13(授权日);2020-05-10(申请日)
6. 方文浩,陆耀威;一种催化剂及其该催化剂的应用、制备、性能测试方法;ZL202010002928.9;2022-10-25(授权日);2020-01-02(申请日)
7. 方文浩,张浩,曹秋娥;磁性镍钴氧化物负载金催化剂及其制备方法和应用、2,5-呋喃二甲酸的制备方法;ZL202110622607.3;2022-10-18(授权日);2021-06-04(申请日)
8. 方文浩,尚嵘,曹秋娥,顾榜;一种镧锰双金属准有机框架材料及其制备方法和应用;ZL202210097944.X;2022-10-11(授权日);2022-01-27(申请日)
9. 方文浩,王英浩,曹秋娥;钌铱催化剂、其制备方法及在5-羟甲基糠醛氢解反应中的应用;ZL202010373283.X;2022-09-30(授权日);2020-05-07(申请日)
10. 方文浩,陆耀威,曹秋娥;一种镨基磁性催化剂及其制备方法和应用;ZL202110849092.0;2022-07-01(授权日);2021-07-27(申请日)
11. 方文浩,高天宇,曹秋娥;一种锰磷复合氧化物的制备方法及其负载铂的催化剂与应用;ZL201911009027.6;2022-05-13(授权日);2019-10-23(申请日)
12. 方文浩,林鹏,曹秋娥;一种负载型高分散纳米金催化剂及其制备方法和应用;ZL202110455152.0;2022-05-03(授权日);2021-04-26(申请日)
13. 方文浩,王永星,曹秋娥;一种磁性铁基催化剂及其制备方法和应用;ZL202110377916.9;2022-03-15(授权日);2021-04-08(申请日)
14. 方文浩,吴世鹏,赵琦华;磷掺杂的铈铁复合氧化物催化剂及其制备方法、应用;ZL202010277785.2;2021-02-02(授权日);2020-04-08(申请日)
15. 方文浩,曹秋娥,窦有伟;一种乙酰丙酸的制备方法;ZL201810074735.7;2021-02-02(授权日);2018-01-25(申请日)
16. 方文浩,孙维骁,曹秋娥;一种负载型纳米金催化剂的制备方法与应用;ZL201810472967.8;2021-01-15(授权日);2018-05-17(申请日)
17. 方文浩,陆耀威,谢小光;含锆负载型纳米钌催化剂的制备、性能测试方法及应用;ZL201910315236.7;2020-09-18(授权日);2019-05-28(申请日)
18. 方文浩,王永星,高天宇,曹秋娥;钌钴磁性催化剂的制备方法及其在选择加氢中的应用;ZL201910064587.5;2020-06-12(授权日);2019-01-23(申请日)
发明专利申请:
1. 方文浩,樊铂韬,张浩,顾榜,曹秋娥;一种钴基电催化剂及其制备方法和应用;2023113772019;2023-10-24
2. 方文浩,张奇钊,曹秋娥;一种铜钛异质结光催化剂及其制备方法和应用;202110493184.X;2021-05-07
奖励、荣誉和学术兼职:
2015年,入选云南大学引进人才
2017年,入选云南大学“东陆中青年骨干教师”
2017年,获云南大学“第十一届教师课堂教学比赛”一等奖
2017年,入选云南省首批“青千”
2019年,入选云南大学“青年英才培育计划”
2020年,入选云南省“优青”
2024年,担任云南省中青年学术和技术带头人
2024年,担任Molecular Catalysis青年编委