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个人简介

工作及教育经历: 厦门大学-物理科学与技术学院 2018年8月-至今 副教授 厦门大学-物理与机电工程学院 助理教授 2014年9月-2018年8月 新加坡南洋理工大学-化学与生物医学工程学院 高级研究员 2014年1月-2014年9月 新加坡环境与水技术研发中心 研发科学家 2011年7月-2013年12月 新加坡南洋理工大学-化学与生物医学工程学院 博士后 2008年8月-2011年7月 厦门大学化学系 博士学位 2003年9月-2008年7月 厦门大学化学工程与工艺系 学士学位 1999年9月-2003年7月

研究领域

光催化纳米材料的合成及其应用 无机功能纳米材料的合成及应用 固体废弃物(建筑废土、印染淤泥、铁尾矿等)的资源化利用与环保建材;

近期论文

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X. Ye, J. Xu, Q. C. Xu*, Oxidant-Templating Fabrication of Pure Polypyrrole Hydrogel Beads as Highly Efficient Dye Adsorbent, RSC Advances, 2019, in press. K. Zhou, Y. He, Q. C. Xu, Q. Zhang, A. Zhou, Z. Lu, L. K. Yang, Y. Jiang, H. Bai, A Hydrogel of Ultrathin Pure Polyaniline Nanofibers: Oxidant-Templating Preparation and Supercapacitor Application, ACS Nano, 2018, 12, 5888. (一区,IF:13.709) X. Y. Li, H. Q. Wang, Q. C. Xu*, J. Xu*, Ultrathin AuAg Nanofilms from ice-templated Assembly of AuAg Nanowires, Advanced Materials Interfaces, 2018, 1800256-1800263. (二区,IF:4.279) J. L. Yang, Q. C. Xu*, Z. Q. Tian, et. al. Quantitative detection using two-dimension shell-isolated nanoparticle film, Journal of Raman Spectroscopy, 2017, 48, 919-924. (二区,IF:2.395) Q. C. Xu*, F. X. Xiao, X. Liu, et. al. Ligand-triggered electrostatic self-assembly of CdS nanosheet/Au nanocrystal nanocomposites for versatile photocatalytic redox applications, Nanoscale, 2016, 8, 19161-19173. (一区,IF:7.76) Q. C. Xu*, J. Zeng, X. Li, J. Xu, X. Liu, et. al. 3D nano-macroporous structured TiO2-foam glass as an efficient photocatalyst for organic pollutant treatment, RSC Advance, 6 (2016) 518888-518893. (三区,IF:3.29) C. Y. Li, Q. C. Xu*, J. F. Li*, et al. In-situ electrochemical shell-isolated Ag nanoparticles-enhanced raman spectroscopy study of adenine adsorption on smooth Ag electrodes, Electrochimica Acta, 199 (2016) 388. (一区,IF:4.80) B. Y. Wen, Q. C. Xu*, J. F. Li, et al. Shell-isolated nanoparticle-enhanced Raman spectroscopy study of the adsorption behavior of DNA bases on Au(111) electrode surfaces, Analyst, 141 (2016) 3731. (二区,IF:4.03) J. Y. Wu, Q. C. Xu*, Z. L. Zhang, Structural instability and mechanical properties, of MoS2 toroidal nanostructures, Phys. Chem. Chem. Phys., 17 (2015) 32425. (二区,IF:4.45) Q. C. Xu, et al. Anti-cAngptl4 Ab-conjugated N-TiO2/NaYF4:Yb,Tm Nanocomposite for Near Infrared-Triggered Drug Release and Enhanced Targeted Cancer Cell Ablation, Adv. Healthcare Mater., 1 (2012) 470-474. (一区,IF:5.76) Q. C. Xu, Timothy T. Y. Tan, et al. Enhanced Visible-light Photocatalytic Activity of C-N-codoped TiO2 Films Prepared via an Organic-free Approach, Journal of Hazardous Materials, 188 (2011) 172. (一区,IF:4.84) Q. C. Xu, Timothy T. Y. Tan, et al. A three-way synergy of triple-modified Bi2WO6/Ag/N-TiO2 nanojunction film for enhanced photogenerated charges utilization, Chemical communications, 47 (2011) 8641. (二区,IF:6.57) Q. C. Xu, Timothy T. Y. Tan, et al. Synthesis of Porous and Visible-light-absorbing Bi2WO6/TiO2 Heterojunction Films with Improved Photoelectrochemical and Photocatalytic Performances, The Journal of Physical Chemistry: C, 115 (2011) 7419–7428. (二区,IF:4.51) Q. C. Xu, Timothy T. Y. Tan, et al. Superhydrophilicity-Assisted Preparation of Transparent and Visible Light Activated N-doped TiO2 Film, Nanoscale, 2 (2010) 1122. (一区,IF:7.76) Q. C. Xu, Timothy T. Y. Tan et al. Transparent visible light activated C-N-F-codoped TiO2 films for self-cleaning applications, Journal of Photochemistry and Photobiology A: Chemistry, 210 (2010) 181 (JCR三区,IF:2.625). Q. C. Xu, D. W. Liao et al. Effects of solvent stabilizer in the preparation of highly active potassium-promoted Ru/MgO catalysts for ammonia synthesis, Catalysis Communications, 9 (2008) 1214-1218 (JCR三区,IF:3.33). Q. C. Xu, D. W. Liao et al. Microwave-assisted synthesis of MgO–CNTs supported ruthenium catalysts for ammonia synthesis, Catalysis Communications, 8 (2007) 1881-1885 (JCR三区,IF:3.33). Q. C. Xu, D. W. Liao et al. Combination and interaction of ammonia synthesis ruthenium catalysts, Journal of Molecular Catalysis –A: Chemical, 259 (2006) 218-222 (JCR二区,IF:4.211). Y. Chen, Q. C. Xu, B. Hu, J. Xu, J. Weng, Unconvertional synthesis of Cu-Au dendritic nanowires with enhanced electrochemical activity, RSC Advance, 6 (2016) 2464 (JCR二区,IF:3.29). S. F. Xie, Q. C. Xu, X. Q. Huang, Defect-Rich metal nanocrystals in catalysis, ChemCatChem. 8 (2016) 480-485, (JCR二区,IF:4.803).

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