Femtosecond IR study of ultrafast electron injection in nanocrystalline thin film electrodes

John B. Asbury, Encai Hao, Yongqiang Wang, Tianquan Lian

Research output: Contribution to journalArticle

1 Citation (Scopus)

Abstract

Ultrafast electron transfer dynamics from Re(CO)3Cl(dcbpy) and derivatives on TiO2 nanocrystalline thin films were studied by simultaneously measuring the injected electron absorption and the transient absorption of the sensitizer by ferntosecond IR spectroscopy.

Original languageEnglish (US)
Pages (from-to)450-452
Number of pages3
JournalSpringer Series in Chemical Physics
Volume66
StatePublished - Dec 1 2001

Fingerprint

Electron absorption
Electron injection
Carbon Monoxide
Infrared spectroscopy
injection
Derivatives
Thin films
Electrodes
electrodes
Electrons
thin films
electron transfer
electrons
spectroscopy

All Science Journal Classification (ASJC) codes

  • Physical and Theoretical Chemistry

Cite this

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title = "Femtosecond IR study of ultrafast electron injection in nanocrystalline thin film electrodes",
abstract = "Ultrafast electron transfer dynamics from Re(CO)3Cl(dcbpy) and derivatives on TiO2 nanocrystalline thin films were studied by simultaneously measuring the injected electron absorption and the transient absorption of the sensitizer by ferntosecond IR spectroscopy.",
author = "Asbury, {John B.} and Encai Hao and Yongqiang Wang and Tianquan Lian",
year = "2001",
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journal = "Springer Series in Chemical Physics",
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Femtosecond IR study of ultrafast electron injection in nanocrystalline thin film electrodes. / Asbury, John B.; Hao, Encai; Wang, Yongqiang; Lian, Tianquan.

In: Springer Series in Chemical Physics, Vol. 66, 01.12.2001, p. 450-452.

Research output: Contribution to journalArticle

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AU - Asbury, John B.

AU - Hao, Encai

AU - Wang, Yongqiang

AU - Lian, Tianquan

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Y1 - 2001/12/1

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AB - Ultrafast electron transfer dynamics from Re(CO)3Cl(dcbpy) and derivatives on TiO2 nanocrystalline thin films were studied by simultaneously measuring the injected electron absorption and the transient absorption of the sensitizer by ferntosecond IR spectroscopy.

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