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 表面物理化学,光催化 研究领域主要集中在利用表面光谱和表面电子谱的方法研究固体表面的物理化学性质,属于基础研究范畴。 • 光催化反应微观机理的表面谱学研究 • 固体表面物理化学性质的谱学研究 • 氧化物半导体掺杂体系 • 金属负载氧化物和混合氧化物体系

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H. Qiu, F. Gallino, C. Di Valentin and Y. Wang, Shallow donor states induced by in-diffused Cu in ZnO: a combined HREELS and hybrid DFT study, Phys. Rev. Lett., 106, 066401 (2011) H. Qiu, B. Meyer, Y. Wang, and Ch. Wöll, Ionization energies of shallow donor states in ZnO created by reversible formation and depletion of H interstitials, Phys. Rev. Lett. 101, 236401 (2008). (highlighted by InternetChemistry) H. Qiu, H. Idriss, Y. Wang, and C. Wöll, Carbon-carbon bond formation on model titanium oxide surfaces: Identification of surface reaction intermediates by HREELS, J. Phys. Chem. C 112, 9828 (2008). Y. Wang, X. Xia, A. Urban, H. Qiu, J. Strunk, B. Meyer, M. Muhler, and Ch. Wöll, Tuning the reactivity of oxide surfaces by charge-accepting coadsorbates, Angew. Chem. Int. Ed. 46, 7315 (2007). Y. Wang, R. Kovacik, B. Meyer, K. Kotsis, D. Stodt, V. Staemmler, H. Qiu, F. Traeger, D. Langenberg, M. Muhler, and Ch. Wöll, CO2 activation by ZnO via formation of an unusual tridentate surface carbonate, Angew. Chem. Int. Ed. 46, 5624 (2007). H. Qiu, J. Gao, B. Ma, Z. Zhang, Q. Jin, Spin reorientation transition and its gas absorption effect on Ni/fct-Fe Films at 110 K, J. Kor. Phys. Soc. 49, 2095 (2006) H. Noei, H. Qiu, Y. Wang, M. Muhler, and Ch. Wöll, Hydrogen Loading of Oxide Powder Particles: A Transmission IR Study for the Case of Zinc Oxide, Chem. Phys. Chem., 11, 3604 (2010) M. Calatayud, X. Yin, H. Qiu, Y. Wang, A. Birkner and Ch. Wöll, Comment on “Imaging of the hydrogen subsurface site in rutile TiO2”, Phys. Rev. Lett., 104, 119603 (2010). X.-L. Yin, M. Calatayud, H. Qiu, Y. Wang, A. Birkner, C. Minot, and Ch. Wöll, Absorption vs. Desorption: the complex behaviour of H atoms on an oxide surface, Chem. Phys. Chem. 9, 253 (2008). H. Noei, H. Qiu, Y. Wang, E. Löffler, and Ch. Wöll, The identification of hydroxyl groups on ZnO nanoparticles by infrared spectroscopy, Phys. Chem. Chem. Phys. 10, 7092 (2008).

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