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个人简介

付明来 博士,研究员,博士生导师。1994年毕业于桂林理工大学,获分析化学学士学位,2006年获中国科学院福建物质结构研究所物理化学博士学位,2007-2008年在德国Karlsruhe Institute of Technology纳米研究所从事纳米团簇等材料领域的博士后研究工作,2008-2011年美国University of South Carolina化学与生物化学系从事构建有机无机杂化太阳能电池的博士后研究工作,2011年9月受聘中国科学院城市环境研究工作。 主持参加包括国家自然科学基金面上项目、国家高技术研究发展计划(863计划)、国际科技合作、福建省自然科学基金、厦门市重大科技计划项目和企业委托的多项国家、地方和企业项目。2004年曾获福建省科技进步二等奖,2012年获厦门市杰出青年科技项目资助,。

研究领域

纳米环境功能材料(TiO2基复合光催化材料、铁锰氧化物、硫属化物、碳基复合材料等);固体废物的资源化技术研发与应用

专利: (1)付明来,许东兴,石建稳,一种高效近红外光复合光催化剂及其制备方法,2015.07.15,中国,ZL201310284146.9 (2)石建稳,陈建炜,付明来,崔浩杰,一种低成本光催化杀菌抗菌剂及其制备方法,2015.04.08,中国,ZL201210121651.7 (3)石建稳,付明来,崔浩杰,一种氧化钛纳米页包裹粉煤灰微球的光催化剂,2015.03.25,中国,ZL201310233072.6 (4)苑宝玲,何强,付明来,曾秋生,利用含铁废弃物制备硅铝羟基铁复合催化剂的方法,2015.01.21,中国,ZL201310047405.6 (5)苑宝玲,付明来,曾秋生,一种氯代烯烃污染土壤和地下水的原位化学氧化修复方法,2014.06.04,中国,ZL201210310111.3 (6)石建稳,付明来,崔浩杰,一种碳掺杂氧化钛中空球光催化剂及其制备方法,2013.06.12,中国,ZL201110281286.1 (7)石建稳,付明来,崔浩杰,陈少华,一种具有拨浪鼓结构的共掺杂氧化钛多孔微球及其制备方法,2013.05.15,中国,ZL201110281289.5 承担科研项目情况(研究经费): 1.国家自然科学基金面上项目,51478449,炭载纳米尖晶石锰铁氧体复合材料同步去除水体中PPCPs/重金属的效能与机理,2015/01-2018/12,84万元,在研,主持; 2. 国家自然科学基金面上项目,51278481,层状硫属吸附剂的结构调控及对重金属离子的吸附解吸机理,2013/01-2016/12,80万元,在研,主持; 3. 国家“863”重点项目子课题,2012AA062606,饮用水中 PPCPs 类物质去除技术,50万元,在研,主持; 4. 厦门市杰出青年项目,高可见光响应的核壳量子点共敏化TiO2纳米管的构筑及环境中的应用,3502Z20126011,2011/10-2014/09,20万元,已结题,主持; 5. 国家国际科技合作项目,中国东南沿海城市群环境污染调控技术与示范,2011DFB91710,509万元,在研,参加。

近期论文

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1. Zhao, H.; Cui, H. J.; Fu, M. L., A general and facile method for improving carbon coat on magnetic nanoparticles with a thickness control. J Colloid Interf Sci 2016, 461, 20-24. 2. Chen, J. W.; Shi, J. W.; Fu, M. L., Nitrogen-doped anatase titania nanorods with reactive {101} + {010} facets exposure produced from ultrathin titania nanosheets for high photocatalytic performance. Catal Commun 2016, 76, 82-86. 3. Xu, J. G.; Li, Y. Q.; Yuan, B. L.; Cui, H. J.; Fu, M. L., Synthesis and Characterization of 3D Flower-like alpha-FeOOH Nanostructures. Chemical Journal of Chinese Universities-Chinese 2015, 36, (1), 48-54. 4. Wang, X.; Wang, Y. X.; Yuan, B. L.; Cui, H. J.; Fu, M. L., Fabrication of resin supported Au-Pd bimetallic nanoparticle composite to efficiently remove chloramphenicol from water. Rsc Advances 2015, 5, (24), 18806-18812. 5. Wang, X.; Li, J. R.; Fu, M. L.; Yuan, B. L.; Cui, H. J.; Wang, Y. F., Fabrication and evaluation of Au-Pd core-shell nanocomposites for dechlorination of diclofenac in water. Environ Technol 2015, 36, (12), 1510-1518. 6. Shi, J. W.; Wang, Z. Y.; He, C.; Wang, H. K.; Chen, J. W.; Fu, M. L.; Li, G. D.; Niu, C. M., CdS quantum dots modified N-doped titania plates for the photocatalytic mineralization of diclofenac in water under visible light irradiation. J Mol Catal a-Chem 2015, 399, 79-85. 7. Li, J. R.; Wang, Y. X.; Wang, X.; Yuan, B. L.; Fu, M. L., Intercalation and adsorption of ciprofloxacin by layered chalcogenides and kinetics study. J Colloid Interf Sci 2015, 453, 69-78. 8. Huang, M. Z.; Yuan, B. L.; Dai, L. Y.; Fu, M. L., Toward NIR driven photocatalyst: Fabrication, characterization, and photocatalytic activity of beta-NaYF4:Yb3+,Tm3+/g-C3N4 nanocomposite. J Colloid Interf Sci 2015, 460, 264-272. 9. Cui, H. J.; Huang, H. Z.; Yuan, B. L.; Fu, M. L., Decolorization of RhB dye by manganese oxides: effect of crystal type and solution pH. Geochem. Trans. 2015, 16, 8. 10. Zhao, H.; Cui, H. J.; Fu, M. L., Synthesis of core-shell structured Fe3O4@alpha-MnO2 microspheres for efficient catalytic degradation of ciprofloxacin. Rsc Advances 2014, 4, (74), 39472-39475. 11. Shi, J. W.; Ai, H. Y.; Chen, J. W.; Cui, H. J.; Fu, M. L., The composite of nitrogen-doped anatase titania plates with exposed {001} facets/graphene nanosheets for enhanced visible-light photocatalytic activity. J Colloid Interf Sci2014, 430, 100-107. 12. Lia, J. R.; Wang, X.; Yuan, B. L.; Fu, M. L.; Cui, H. J., Robust removal of heavy metals from water by intercalation chalcogenide CH3NH3 (2x)MnxSn3-xS6.0.5H(2)O. Appl Surf Sci 2014, 320, 112-119. 13. Cui, H. J.; Cai, J. K.; Zhao, H.; Yuan, B. L.; Ai, C. L.; Fu, M. L., One step solvothermal synthesis of functional hybrid gamma-Fe2O3/carbon hollow spheres with superior capacities for heavy metal removal. J Colloid Interf Sci 2014,425, 131-135. 14. Cui, H. J.; Cai, J. K.; Zhao, H.; Yuan, B. L.; Ai, C. L.; Fu, M. L., Fabrication of magnetic porous Fe-Mn binary oxide nanowires with superior capability for removal of As(III) from water. Journal of Hazardous Materials 2014, 279, 26-31. 15. Cui, H. J.; Cai, J. K.; Shi, J. W.; Yuan, B. L.; Ai, C. L.; Fu, M. L., Fabrication of 3D porous Mn doped alpha-Fe2O3 nanostructures for the removal of heavy metals from wastewater. Rsc Advances 2014, 4, (20), 10176-10179. 16. Ai, H. Y.; Shi, J. W.; Duan, R. X.; Chen, J. W.; Cui, H. J.; Fu, M. L., Sol-Gel to Prepare Nitrogen Doped TiO2 Nanocrystals with Exposed {001} Facets and High Visible-Light Photocatalytic Performance. Int J Photoenergy 2014. 17. Ai, H. Y.; Shi, J. W.; Chen, J. W.; Fu, M. L., The preparation of nitrogen-doped TiO2 nanocrystals with exposed {001} facets and their visible-light photocatalytic performances. Chinese Science Bulletin 2014, 59, (18), 2199-2207. 18. Yuan, B. L.; Xu, D. M.; Li, F.; Fu, M. L., Removal efficiency and possible pathway of odor compounds (2-methylisoborneol and geosmin) by ozonation. Separation and Purification Technology 2013, 117, 53-58. 19. Yuan, B. L.; Li, F.; Xu, D. M.; Fu, M. L., Comparison of two methods for the determination of geosmin and 2-methylisoborneol in algae samples by stable isotope dilution assay through purge-and-trap or headspace solid-phase microextraction combined with GC/MS. Anal Methods-Uk 2013, 5, (7), 1739-1746. 20. Yuan, B. L.; Li, F.; Chen, Y. M.; Fu, M. L., Laboratory-scale column study for remediation of TCE-contaminated aquifers using three-section controlled-release potassium permanganate barriers. Journal of Environmental Sciences 2013, 25, (5), 971-977.

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