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Intrinsic electronic transitions of the absorption spectrum of (OPy)2Ti(TAP)2: implications toward photostructural modifications.

作者信息

De Silva Channa R, Musgraves J David, Schneider Z, Potter B G, Boyle T J, Simmons-Potter K, Corrales L René

机构信息

Department of Materials Science and Engineering, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Phys Chem A. 2009 May 14;113(19):5598-601. doi: 10.1021/jp9016008.

Abstract

Theoretical calculations based on time-dependent density functional theory are used to characterize the electronic absorption spectrum of a heteroleptic Ti-alkoxide molecule, (OPy)(2)Ti(TAP)(2) [OPy = pyridine carbinoxide, TAP = 2,4,6 tris(dimethylamino)phenoxide] under investigation as a photosensitive precursor for use in optically initiated solution synthesis of the metal oxide. Computational results support the assignment of UV absorption features observed in solid-state precursor films to key intrinsic ground-state transitions that involve ligand-to-metal charge transfer and pi-pi* transitions within the cyclic ligand moieties present. The nature of electron density redistribution associated with these transitions provides early insight into the excitation wavelength dependence of photostructural modification previously observed in this precursor system.

摘要

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