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ZHANG Liwu
Published:2015-01-09 Hits:1876


ZHANG Liwu, Ph.D., Professor
Email:zhanglw@fudan.edu.cn
Website:http://homepage.fudan.edu.cn/zhanglw/

 

EDUCATION
September 2004-July 2009: Ph.D. in Chemistry with top dissertation honor.
Tsinghua University, Beijing, China
September 2000-June 2004: B.Sc. (Applied Chemistry) with first class honors.
Beijing University of Chemical Technology, Beijing, China

 

EXPERIENCE
Oct. 2014 - now: Professor, Fudan University
July 2012-July 2014: Marie Curie Intra-European Fellowship
Postdoctoral research with Prof. Jeremy Baumberg, FRS (NanoPhotonics Centre, Cavendish Laboratory, University of Cambridge)
Dec. 2009-March 2012: Alexander von Humboldt Fellowship
Postdoctoral research with Prof. Dr. Detlef Bahnemann, Institute of Technical Chemistry, Leibniz University of Hannover, Germany

 

RESEARCH INTERESTS
Atmospheric chemistry, heterogeneous reaction, gas-phase pollutant decomposition;
CO2 utilization, artificial photosynthesis;
Photonic nanostructures for environmental pollutant detection.

 

SELECTED PUBLICATIONS
Xiuzhen Zheng, Liwu Zhang*, Photonic nanostructures for solar energy conversion, Energy Environ. Sci., available online,DOI: 10.1039/C6EE01182A, 2016. (Impact Factor 25.4)
Daniel O. Sigle, Liwu Zhang*, Sandrine Ithurria, Benoit Dubertret, and Jeremy J. Baumberg*, Ultrathin CdSe in Plasmonic Nanogaps for Enhanced Photocatalytic Water Splitting, J. Phys. Chem. Lett., 2015, 6 (7), pp 1099–1103. (Impact Factor 7.5)
Zhang, L. W.; Reisner E.; Baumberg J., Al-doped ZnO Inverse Opal Networks as Efficient Electron Collectors in BiVO4 Photoanodes for Solar Water Oxidation. Energy Environ. Sci. 2014, 7, 1402-1408. (Impact Factor 25.4)
Zhang, L. W.*, Chia‐Yu Lin, Ventsislav K Valev, Erwin Reisner, Ullrich Steiner, Jeremy J Baumberg*Plasmonic Enhancement in BiVO4 Photonic Crystals for Efficient Water Splitting; Small, 2014, 10, 3970-8; (Impact Factor 8.4)
Zhang, L. W.; Wang, Y. J.; Cheng, H. Y.; Yao, W. Q.; Zhu, Y. F., Synthesis of Bi2WO6Porous Thin Films as Efficient Visible-Active Photocatalyst. Adv. Mater. 2009, 21, 1286-1290. (Impact Factor 17.5) ("Highly cited papers" by ESI)
Zhang, L. W.; Dillert R.; Bahnemann D., Photo-induced hydrophilicity and self-cleaning: Models and reality. Energy Environ. Sci. 2012, 5, 7491-7507. (Impact Factor 25.4)
Zhang, L. W.; Fu, H. B.; Zhu, Y. F., Efficient TiO2 Photocatalysts from Surface Hybridization of TiO2 Particles with Graphite-like Carbon. Adv. Funct. Mater.2008, 18, 2180-2189. (Impact Factor 11.8) ("Highly cited papers" by ESI)
Zhang, L. W.; Wang, L.; Zhu, Y. F., Synthesis and performance of BaAl2O4 with a wide spectral range of optical absorption. Adv. Funct. Mater. 2007, 17, (18), 3781-3790. (Impact Factor 11.8)
Zhang, L. W.; Mohamed, H. H.; Dillert, R.; Bahnemann, D. Kinetics and mechanisms of charge transfer processes in photocatalytic systems. J. Photochem. Photobiol., C2012, 13, 263-276. (Impact Factor 16.1)
Zhang, L. W.; Baumanis, C.; Robben, L.; Kandiel, T.; Bahnemann, D., Bi2WO6Inverse Opals: Facile Fabrication, Efficient Visible-Light-Driven Photocatalytic and Photoelectrochemical Water Splitting Activity. Small, 2011, 7, 2714-2720. (Impact Factor 8.4)
Zhang, L. W.; Bahnemann, D. Synthesis of Nanovoid Bi2WO6 2D Ordered Arrays as Photoanodes for Photoelectrochemical Water Splitting. Chemsuschem 2013, 6, 283-290. (Impact Factor 7.7)
Xu, T. G.#; Zhang, L. W.# (#contribute equally); Cheng, H. Y.; Zhu, Y. F., Significantly enhanced photocatalytic performance of ZnO via graphene hybridization and the mechanism study. Appl. Catal. B-Environ 2011, 101, (3-4), 382-387. (Impact Factor 7.4) ("Highly cited papers" by ESI) (Awarded 2011 "Top 100 most cited Chinese papers published in International Journals")
Zhang, L. W.; Xu, T. G.; Zhao, X.; Zhu, Y. F., Controllable synthesis of Bi2MoO6 and effect of morphology and variation in local structure on photocatalytic activities. Appl. Catal. B-Environ 2010, 98, (3-4), 138-146. (Impact Factor 7.4)
Zhang, L. W.; Man, Y.; Zhu, Y. F., Effects of Mo Replacement on the Structure and Visible-light-induced Photocatalytic Performances of Bi2WO6 Photocatalyst. ACS Catalysis, 2011, 1, 841-848. (Impact Factor 9.3)

 

 

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