First Principles Study on the Interfacial Structure and Electronic Properties of a Metal-Free Organic Dye/TiO2 Photoanode for Water Oxidation
- 作者: Lei Zhang 1,2, Qiaoyi Wang 3
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隶属关系:
- Jiangsu Key Laboratory for Optoelectronic Detection of Atmosphere and Ocean, Nanjing University of Information Science and Technology
- Department of Applied Physics, School of Physics and Optoelectronic Engineering, Nanjing University of Information Science and Technology
- Department of Electrical and Electronic Engineering, University of Bristol
- 期: 卷 92, 编号 8 (2018)
- 页面: 1631-1635
- 栏目: Photochemistry and Magnetochemistry
- URL: https://bakhtiniada.ru/0036-0244/article/view/170106
- DOI: https://doi.org/10.1134/S0036024418080162
- ID: 170106
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详细
Recently, metal-free organic dyes have been successfully incorporated in dye-sensitized water oxidation photoanode utilizing red light. In order to understand the interfacial structures and the related electronic/optical properties of the dye-sensitized water oxidation photoanode at nanoscale level, a metal free porphyrin dye/TiO2 interface that has been applied in a water splitting system experimentally is modelled via first principles. The DFT calculations predict vertical adsorption of the organic dye onto the TiO2 substrate via its carboxylic acid anchor. The calculated UV–Vis absorption spectra of the porphyrin organic dye/TiO2 system demonstrate peak absorption wavelengths at ca. 500, 580, and 620 nm, consistent with the experiments. Detailed electronic structure analysis including band structure, density of states and orbital distributions suggests effective dye sensitization and interfacial electron transfer in the organic dye/TiO2 system in the water oxidation photoanode, which is essential for water splitting efficiency.
作者简介
Lei Zhang
Jiangsu Key Laboratory for Optoelectronic Detection of Atmosphere and Ocean,Nanjing University of Information Science and Technology; Department of Applied Physics, School of Physics and Optoelectronic Engineering,
Nanjing University of Information Science and Technology
编辑信件的主要联系方式.
Email: 002699@nuist.edu.cn
中国, Nanjing, 210044; Nanjing, 210044
Qiaoyi Wang
Department of Electrical and Electronic Engineering, University of Bristol
Email: 002699@nuist.edu.cn
英国, Bristol, BS8 1UB
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