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Elementary Photoelectronic Processes at a Porphyrin Dye/Single‐Walled TiO2 Nanotube Hetero‐interface in Dye‐Sensitized Solar Cells: A First‐Principles Study
Authors:Dr Cunku Dong  Prof Xin Li  Wei Zhao  Pengfei Jin  Xiujuan Fan  Prof Jingyao Qi
Institution:1. Department of Chemistry and State Key Laboratory of Urban Water Resource and Harbin Institute of Technology, Harbin 150090 (P. R. China);2. School of Chemistry, Monash University, VIC 3800 (Australia);3. School of Municipal and Environmental Engineering and State Key Laboratory of Urban Water Resource and Environment, Harbin 150090 (P. R. China)
Abstract:A unique one‐dimensional (1D) sandwich single‐walled TiO2 nanotube (STNT) is proposed as a photoanode nanomaterial with perfect morphology and large specific surface area. We have thoroughly examined the elementary photoelectronic processes occurring at the porphyrin dye/STNT hetero‐interface in dye‐sensitized solar cells (DSSCs) by theoretical simulation. It is desirable to investigate the interfacial photoelectronic processes to elucidate the electron transfer and transport mechanism in 1D STNT‐based DSSCs. We have found that the photoexcitation and interfacial charge separation mechanism can be described as follows. A ground‐state electron of the dye molecule (localized around the electron donor) is first promoted to the excited state (distributed electron donor), and then undergoes ultrafast injection into the conduction band of the STNT, leaving a hole around the oxidized dye. Significantly, the injected electron in the conduction band is transported along the STNT by means of Ti 3durn:x-wiley:09476539:media:CHEM201301035:tex2gif-inf-3 orbitals, offering a unidirectional electron pathway toward the electrode for massive collection without the observation of trap states. Our study not only provides theoretical guidelines for the modification of TiO2 nanotubes as a photoanode material, but also opens a new perspective for the development of a novel class of TiO2 nanotubes with high power‐generation efficiency.
Keywords:ab initio calculations  dye‐sensitized solar cells  electron transport  interfacial electron transfer  solar cells  theoretical simulation  titania nanotubes
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