JOURNAL ARTICLE

Photoinduced Electron Injection from Ru(dcbpy)2(NCS)2 to SnO2 and TiO2 Nanocrystalline Films

Gábor BenköPasi MyllyperkiöJie PanArkady YartsevVilly Sundström

Year: 2003 Journal:   Journal of the American Chemical Society Vol: 125 (5)Pages: 1118-1119   Publisher: American Chemical Society

Abstract

Photoinduced electron injection from the sensitizer Ru(dcbpy)2(NCS)2 (RuN3) into SnO2 and TiO2 nanocrystalline films occurs by two distinct channels on the femto- and picosecond time scales. The faster electron injection into the conduction band of the different semiconductors originates from the initially excited singlet state of RuN3, and occurs in competition with intersystem crossing. The rate of singlet electron injection is faster to TiO2 (1/55 fs-1) than to SnO2 (1/145 fs-1), in agreement with higher density of conduction band acceptor states in the former semiconductor. As a result of competition between the ultrafast processes, for TiO2 singlet, whereas for SnO2 triplet electron injection is dominant. Electron injection from the triplet state is nonexponential and can be fitted with time constants ranging from ~1 ps (2.5 ps for SnO2) to ~50 ps for both semiconductors. The major part of triplet injection is independent of the semiconductor and is most likely controlled by intramolecular dynamics in RuN3. The overall time scale and the yield of electron injection to the two semiconductors are very similar, suggesting that processes other than electron injection are responsible for the difference in efficiencies of solar cells made of these materials.

Keywords:
Chemistry Semiconductor Intersystem crossing Picosecond Electron Singlet state Nanocrystalline material Triplet state Singlet fission Photochemistry Excited state Atomic physics Optoelectronics Materials science Optics Crystallography Physics

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Citation History

Topics

Advanced Photocatalysis Techniques
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
TiO2 Photocatalysis and Solar Cells
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Quantum Dots Synthesis And Properties
Physical Sciences →  Materials Science →  Materials Chemistry

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