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环境工程系

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孙松美

发布时间:2020-12-10

孙松美教授   博士生导师

电子邮箱:sunsm@dhu.edu.cn

联系方式:021-67792159

办公地址:松江区人民北路2999号,东华大学,松江校区四号学院楼5136室

个人简介

孙松美,2010年博士毕业于中国科学院上海硅酸盐研究所材料物理与化学专业,现为东华大学环境科学与工程学院教授,博士生导师。主要从事复合氧化物为主的新型纳米催化材料的设计合成、催化机理及催化剂构效关系的研究工作,特别在环境纳米催化材料、人工光合成、废塑料低温水热解、二氧化碳催化转化等方面开展了深入的研究。入选上海市高层次人才计划,承担国家自然科学基金、上海市自然科学基金等科研项目和多项企事业委托课题,在Advanced Materials,Journal of the American Chemical Society,ACS Catalysis,Environmental Science & Technology等期刊发表论文100余篇,论文他引8900余次,h-index 56,入选2021~2024年全球前2%顶尖科学家榜单,曾获2023年度上海市自然科学二等奖。

教育经历

2005.09-2010.07,中国科学院上海硅酸盐研究所,材料物理与化学,博士

工作经历

2020.08-至今:东华大学,环境科学与工程学院,教授

2019.03-2020.08:英国卡迪夫大学,卡迪夫催化研究所,玛丽-居里研究员

2016.11-2019.03:日本九州大学,碳中和能源国际研究所,副教授

2012.10-2016.10:中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,副研究员

2010.07-2012.09:中国科学院上海硅酸盐研究所,高性能陶瓷和超微结构国家重点实验室,助理研究员

主讲课程

1、环境材料

2、环境工程CAD

3、管理学

研究方向

功能纳米材料制备、光催化污染物降解、人工光合成制太阳能燃料、废塑料低温催化水热解、二氧化碳催化转化

承担科研项目

1、国家自然科学基金面上项目-量子限域局域表面等离基元光催化材料构筑及其二氧化碳还原性能研究(2022-2025)

2、国家自然科学基金面上项目-太阳能燃料制备用原子尺度铋氧基化合物材料可控合成及构效关系研究(2016-2020)

3、国家自然科学基金青年项目-环境净化用石墨烯/BiMO复合光催化剂的基础研究(2012-2014)

4、欧盟玛丽-居里项目-Noble Metal Loaded Oxygen-deficient Mesoporous Tungsten Trioxide for Green Catalysis under Solar Light(2019-2020)

5、上海市自然科学基金-量子限域过渡金属氧硫化物半导体催化材料构筑及其太阳能催化CO2还原研究(2021-2024)

6、上海市自然科学基金-基于量子限域效应的低维铋基氧化物材料的构筑及其催化性能研究(2016-2019)

代表性论著

1.Zhenghua Ye, Lei Liu, Xi Luo, Panpan Gao, Tong Wu, Songmei Sun*, Pore-Controllable Synthesis of Phthalic Acid-Derived Hierarchical Activated Carbon for Dilute CO2 Capture, Inorganic Chemistry, 2025, 64, 519−529.

2.Yuehui Chen, Liang Zhang, Shuo Chen, Songmei Sun*, Hui Cheng, Shouzhu Li, Jianyong Yu, Bin Ding, Jianhua Yan*, Synthesis of Heteromorphic Bi2WO6 Films With an Interpenetrate 1D/2D Network Structure for Efficient and Stable Photocatalytic Degradation of VOCs, Advanced Materials, 2024, 36, 2407400.

3.Mei Ren, Jun Li, Manhong Huang, Donghui Chen, Xuelian Chen, Qi An*, Songmei Sun*, Efficient Low-Temperature catalytic depolymerization of LLDPE into valuable compounds using H-ZSM-5 catalysts and water, Fuel, 2024, 366, 31356.

4.Songmei Sun*, Panpan Gao, Yidi Shen, Tong Wu, Qi An*, Enhanced Water Dissociation Promotes Photocatalytic CO2 Hydrogenation to Methane: A Case Study of Pt-Loaded MoO3 Catalyst, ACS Sustainable Chemistry & Engineering, 2024, 12, 14760−14770.

5.Yupeng Zou, Yidi Shen, Panpan Gao, Tong Wu, Qinlin Zhou, Lei Liu, Xuelian Chen, Songmei Sun*, Qi An, Enhanced selective photocatalytic CO2 reduction to CO on AuPd decorated Bi2O2.33 nanosheets, Journal of Environmental Chemical Engineering, 2024, 12, 112742.

6.Mei Ren, Jun Li, Manhong Huang, Donghui Chen, Xiaoliang Li, Xiaoliang Yan, Qi An*, Songmei Sun*, Solar-Driven Reforming of Methane and Nitrogen to Methanol and Ammonium on Iron-Modified Zeolite under Ambient Conditions in Water, Inorganic Chemistry, 2023, 62, 14804−14814.

7.Caihong Ni, Manhong Huang, Mei Ren, Xiaoliang Li, Xiaoliang Yan, Songmei Sun*, Effect of microstructure and reaction medium on photocatalytic performance and stability of BiO catalyst for CO2 reduction, Catalysis Communications, 2023, 173, 106565.

8.Songmei Sun*, Nicholas F. Dummer*, Takudzwa Bere, Alexandra J. Barnes, Greg Shaw,  Mark Douthwaite, Samuel Pattisson, Richard J. Lewis, Nia Richards, David J. Morgan, Graham J. Hutchings*, Selective oxidation of methane to methanol and methyl hydroperoxide over palladium modified MoO3 photocatalyst under ambient conditions, Catalysis Science & Technology, 2022,12, 3727−3736. 

9.Songmei Sun*, Alexandra J. Barnes, Xiaoxiao Gong, Richard J. Lewis, Nicholas F. Dummer*,  Takudzwa Bere, Greg Shaw, Nia Richards, David J. Morgan, Graham J. Hutchings*, Lanthanum modified Fe-ZSM-5 zeolites for selective methane oxidation with H2O2, Catalysis Science & Technology, 2021,11, 8052−8064.

10.Songmei Sun*, Qi An, Motonori Watanabe, Junfang Cheng, Hack Ho Kim, Taner Akbay, Atsushi Takagaki, Tatsumi Ishihara*. Highly correlation of CO2 reduction selectivity and surface electron Accumulation: A case study of Au-MoS2 and Ag-MoS2 catalyst, Applied Catalysis B: Environmental, 2020, 271, 118931. 

11.Songmei Sun*, Ji Wu, Motonori Watanabe, Taner Akbay, Tatsumi Ishihara*, Single-Electron-Trapped Oxygen Vacancy on Ultrathin WO3·0.33H2O {100} Facets Suppressing Backward Reaction for Promoted H2 Evolution in Pure Water Splitting, Journal of Physical Chemistry Letters, 2019, 10, 2998−3005.

12.Songmei Sun*, Motonori Watanabe, Pangpang Wang, Tatsumi Ishihara, Synergistic Enhancement of H2 and CH4 Evolution by CO2 Photoreduction in Water with Reduced Graphene Oxide–Bismuth Monoxide Quantum Dot Catalyst, ACS Applied Energy Materials, 2019, 2, 3, 2104−2112. 

13.Songmei Sun*, Motonori Watanabe, Ji Wu, Qi An, Tatsumi Ishihara*, Ultrathin WO3·0.33H2O Nanotubes for CO2 Photoreduction to Acetate with High Selectivity, Journal of the American Chemical Society, 2018, 140, 6474−6482. 

14.Songmei Sun, Qi An, Wenzhong Wang*, Ling Zhang, Jianjun Liu, William A. Goddard III, Efficient photocatalytic reduction of dinitrogen to ammonia on bismuth monoxide quantum dots, Journal of Materials Chemistry A, 2017, 5, 201–209.

15.Songmei Sun, Xiaoman Li, Wenzhong Wang*, Ling Zhang, Xiang Sun, Photocatalytic robust solar energy reduction of dinitrogen to ammonia on ultrathin MoS2, Applied Catalysis B: Environmental, 2017, 200, 323–329.

16.Songmei Sun, Wenzhong Wang*, Dezhi Li, Ling Zhang, Dong Jiang, Solar Light Driven Pure Water Splitting on Quantum Sized BiVO4 without any Cocatalyst, ACS Catalysis, 2014, 4, 3498−3503.

17.Songmei Sun, Wenzhong Wang*, Advanced chemical compositions and nanoarchitectures of bismuth based complex oxides for solar photocatalytic application, RSC Advances, 2014, 4, 47136−47152. 

18.Songmei Sun, Wenzhong Wang*, Dong Jiang, LingZhang, JingZhou, Infrared light induced photoelectrocatalytic application via graphene oxide coated thermoelectric device, Applied Catalysis B: Environmental, 2014, 158-159,136−139. 

19.Songmei Sun, Wenzhong Wang*, Dong Jiang, Ling Zhang, Xiaoman Li, Yali Zheng, Qi An, Bi2WO6 Quantum Dots Intercalated Ultrathin Montmorillonite Nanostructure and its Enhanced Photocatalytic Performance, Nano Research, 2014, 7, 1497−1506. 

20.Songmei Sun, Wenzhong Wang*, Ling Zhang, Erping Gao, Dong Jiang, Yongfu Sun, Yi Xie, Ultrathin {001}-Oriented Bismuth Tungsten Oxide Nanosheets as Highly Efficient Photocatalysts, ChemSusChem, 2013, 6, 1873–1877.

21.Songmei Sun, Wenzhong Wang*, Ling Zhang, Bi2WO6 Quantum Dots Decorated Reduced Graphene Oxide: Improved Charge Separation and Enhanced Photoconversion Efficiency, The Journal of Physical Chemistry C, 2013, 117, 9113−9120. 

22.Songmei Sun, Wenzhong Wang*, Ling Zhang, Efficient Contaminant Removal by Bi2WO6 Films with Nanoleaflike Structures through a Photoelectrocatalytic Process, The Journal of Physical Chemistry C, 2012, 116, 19413–19418. 

23.Songmei Sun, Wenzhong Wang*, Ling Zhang, Facile preparation of three-dimensionally ordered macroporous Bi2WO6 with high photocatalytic activity, Journal of Materials Chemistry, 2012, 22, 19244−19249. 

24.Songmei Sun, Wenzhong Wang*, Ling Zhang, JiehuiXu, Bi2WO6/SiO2 photonic crystal film with high photocatalytic activity under visible light irradiation, Applied Catalysis B: Environmental, 2012, 125,144−148. 

25.Songmei Sun, Wenzhong Wang*, Jiehui Xu, LuWang, ZhijieZhang, Highly efficient photocatalytic oxidation of phenol over ordered mesoporous Bi2WO6, Applied Catalysis B: Environmental, 2011, 106, 559−564.

26.Songmei Sun, Wenzhong Wang*, Shaozhong Zeng, Meng Shang, Ling Zhang, Preparation of ordered mesoporous Ag/WO3 and its highly efficient degradation of acetaldehyde under visible-light irradiation, Journal of Hazardous Materials, 2010, 178, 427−433. 

27.Songmei Sun, Wenzhong Wang*, Meng Shang, Jia Ren, Ling Zhang, Efficient catalytic oxidation of tetraethylated rhodamine over ordered mesoporous manganese oxide, Journal of Molecular Catalysis A: Chemical, 2010, 320, 72−78. 

28.Songmei Sun, Wenzhong Wang*, Ling Zhang, Lin Zhou, Wenzong Yin, Meng Shang, Visible Light-Induced Efficient Contaminant Removal by Bi5O7I, Environmental Science & Technology, 2009, 43, 2005−2010. 

29.Songmei Sun, Wenzhong Wang*, Ling Zhang, Meng Shang, Visible Light-Induced Photocatalytic Oxidation of Phenol and Aqueous Ammonia in Flowerlike Bi2Fe4O9 Suspensions, The Journal of Physical Chemistry C, 2009, 113, 12826−12831. 

30.Songmei Sun, Wenzhong Wang*, Ling Zhang, Meng Shang, Lu Wang, Ag@C core/shell nanocomposite as a highly efficient plasmonic photocatalyst, Catalysis Communications, 2009, 11, 290−293.

31.Songmei Sun, Wenzhong Wang*, Lin Zhou, Haolan Xu, Efficient Methylene Blue Removal over Hydrothermally Synthesized Starlike BiVO4, Industrial & Engineering Chemistry Research, 2009, 48, 1735−1739. 

32.Songmei Sun, Wenzhong Wang*, Haolan Xu, Lin Zhou, Meng Shang, Ling Zhang, Bi5FeTi3O15 Hierarchical Microflowers: Hydrothermal Synthesis, Growth Mechanism, and Associated Visible-Light-Driven Photocatalysis, The Journal of Physical Chemistry C, 2008, 112, 17835−17843. 

专利授权

1、一种二氧化碳还原有序介孔催化材料及其制备方法, ZL202110016905.8

2、一种多功能柔性光催化薄膜的制备方法, ZL202210545615.7 

3、一种用于室内空气净化的多功能壁布的制备方法, ZL202210526276.8

4、一种对苯二甲酸印染白泥活性炭及其制备方法, ZL202211322884.3

5、一种高效太阳能固氮光催化材料及其制备方法, ZL201610015669.7

6、一种三维有序大孔Bi2WO6光催化材料的制备方法, ZL201210247712.4 

7、一种超薄蒙脱土纳米片及其制备方法和应用, ZL201410315091.8

8、钨酸铋量子点及其与石墨烯复合材料的制备方法, ZL201210536401.X 

9、一种钛铋铁系光催化剂的制备方法, ZL200710173619.2

荣誉及获奖

1、上海市自然科学二等奖(2023)

2、欧盟玛丽-居里学者(2019)

3、上海市高层次人才计划(2020)