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Trifunctional TiO2 Nanoparticles with Exposed {001} Facets as Additives in Cobalt-Based Porphyrin-Sensitized Solar Cells
期刊文章

Trifunctional TiO2 Nanoparticles with Exposed {001} Facets as Additives in Cobalt-Based Porphyrin-Sensitized Solar Cells

Peng Zhai, Tsung-Yu Hsieh, Chen-Yu Yeh, Kamani Sudhir K. Reddy, Chi-Chang Hu, Jhih-Hao Su, Tzu-Chien WeiShien-Ping Feng
Advanced Functional Materials, 卷.25(38), 頁碼.6093-6100
10/2015

摘要

aggregation cobalt mediator pore volume porphyrin sensitizer recombination {001} facets Electronic Optical and Magnetic Materials Biomaterials Condensed Matter Physics Electrochemistry
In this study, highly mesoporous TiO 2 composite photoanodes composed of functional {001}-faceted TiO 2 nanoparticles (NPs) and commercially available 20 nm TiO 2 NPs are employed in efficient porphyrin-sensitized solar cells together with cobalt polypyridyl-based mediators. Large TiO 2 NPs (approximately 50 nm) with exposed {001} facets are prepared using a fast microwave-assisted hydrothermal (FMAH) method. These unique composite photoanodes favorably mitigate the aggregation of porphyrin on the surface of TiO 2 NPs and strongly facilitate the mass transport of cobalt-polypyridyl-based electrolytes in the mesoporous structure. Linear sweep voltammetry reveals that the transportation of Co(polypyridyl) redox is a diffusion-controlled process, which is highly dependent on the porosity of TiO 2 films. Electrochemical impedance spectroscopy confirms that the FMAH TiO 2 NPs effectively suppress the interfacial charge recombination toward [Co(bpy) 3 ] 3+ because of their oxidative {001} facets. In an optimal condition of 40 wt% addition of FMAH TiO 2 NPs in the final formula, the power conversion efficiency of the dye-sensitized cells improves from 8.28% to 9.53% under AM1.5 (1 sun) conditions. A cost-efficient TiO 2 composite photoanode for YD2-oC8 dye-sensitized cells (DSCs) with a Co(polypyridyl) mediator is fabricated by blending exposed {001}-faceted TiO 2 nanoparticles (approximately 50 nm) with commercial 20 nm TiO 2 . This photoanode simultaneously overcomes sensitizer aggregation, interfacial recombination, and ionic diffusion in cobalt-mediated, porphyrin-sensitized DSCs.

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