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Ultrafast Excited State Relaxation of a Metalloporphyrin Revealed by Femtosecond X-ray Absorption Spectroscopy

Authors :
Michael W. Mara
Matthieu Chollet
Xiaosong Li
Megan L. Shelby
Henrik T. Lemke
Andrew B. Stickrath
Patrick J. Lestrange
Nicholas E. Jackson
Lin X. Chen
Kristoffer Haldrup
Brian M. Hoffman
Diling Zhu
Source :
Shelby, M L, Lestrange, P J, Jackson, N E, Haldrup, K, Mara, M W, Stickrath, A B, Zhu, D, Lemke, H T, Chollet, M, Hoffman, B M, Li, X & Chen, L X 2016, ' Ultrafast Excited State Relaxation of a Metalloporphyrin Revealed by Femtosecond X-ray Absorption Spectroscopy ', Journal of the American Chemical Society, vol. 138, no. 28, pp. 8752-8764 . https://doi.org/10.1021/jacs.6b02176
Publication Year :
2016

Abstract

Photoexcited Nickel(II) tetramesitylporphyrin (NiTMP), like many open-shell metalloporphyrins, relaxes rapidly through multiple electronic states following an initial porphyrin-based excitation, some involving metal centered electronic configuration changes that could be harnessed catalytically before excited state relaxation. While a NiTMP excited state present at 100 ps was previously identified by X-ray transient absorption (XTA) spectroscopy at a synchrotron source as a relaxed (d,d) state, the lowest energy excited state (J. Am. Chem. Soc., 2007, 129, 9616 and Chem. Sci., 2010, 1, 642), structural dynamics before thermalization were not resolved due to the similar to 100 ps duration of the available X-ray probe pulse. Using the femtosecond (fs) X-ray pulses of the Linac Coherent Light Source (LCLS), the Ni center electronic configuration from the initial excited state to the relaxed (d,d) state has been obtained via ultrafast Ni K-edge XANES (X-ray absorption near edge structure) on a time scale from hundreds of femtoseconds to 100 ps. This enabled the identification of a short-lived Ni(I) species aided by time-dependent density functional theory (TDDFT) methods. Computed electronic and nuclear structure for critical excited electronic states in the relaxation pathway characterize the dependence of the complex's geometry on the electron occupation of the 3d orbitals. Calculated XANES transitions for these excited states assign a short-lived transient signal to the spectroscopic signature of the Ni(I) species, resulting from intramolecular charge transfer on a time scale that has eluded previous synchrotron studies. These combined results enable us to examine the excited state structural dynamics of NiTMP prior to thermal relaxation and to capture intermediates of potential photocatalytic significance.

Details

ISSN :
15205126
Volume :
138
Issue :
28
Database :
OpenAIRE
Journal :
Journal of the American Chemical Society
Accession number :
edsair.doi.dedup.....97ed8b19b814053964ee227e3245469e
Full Text :
https://doi.org/10.1021/jacs.6b02176