Time-resolved Laue diffraction of excited species at atomic resolution: 100 ps single-pulse diffraction of the excited state of the organometallic complex Rh2(μ-PNP)2(PNP)2·BPh4

The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh( i ) dinuclear complex. The observed contraction of the Rh-Rh distance of 0.154 (13) is less than predicted by a series of theoretical calculations, a difference...

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Published inChemical communications (Cambridge, England) Vol. 47; no. 6; pp. 174 - 176
Main Authors Benedict, Jason B, Makal, Anna, Sokolow, Jesse D, Trzop, Elzbieta, Scheins, Stephan, Henning, Robert, Graber, Timothy, Coppens, Philip
Format Journal Article
LanguageEnglish
Published England 14.02.2011
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Abstract The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh( i ) dinuclear complex. The observed contraction of the Rh-Rh distance of 0.154 (13) is less than predicted by a series of theoretical calculations, a difference attributed to the constraining effect of the crystal lattice. Structural changes on excitation of a Rh( i ) complex determined by Laue synchrotron pump-probe experiments: blue: ground state; green: excited state.
AbstractList The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh(I) dinuclear complex. The observed contraction of the Rh-Rh distance of 0.154 (13) Å is less than predicted by a series of theoretical calculations, a difference attributed to the constraining effect of the crystal lattice.
The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh( i ) dinuclear complex. The observed contraction of the Rh-Rh distance of 0.154 (13) is less than predicted by a series of theoretical calculations, a difference attributed to the constraining effect of the crystal lattice. Structural changes on excitation of a Rh( i ) complex determined by Laue synchrotron pump-probe experiments: blue: ground state; green: excited state.
Author Benedict, Jason B
Henning, Robert
Makal, Anna
Trzop, Elzbieta
Coppens, Philip
Scheins, Stephan
Graber, Timothy
Sokolow, Jesse D
AuthorAffiliation University of Chicago
Chemistry Department
University at Buffalo
The Consortium for Advanced Radiation Sources
State University of New York
University of Aarhus
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– name: a Chemistry Department, University at Buffalo, State University of New York, Buffalo, NY 14260-3000, USA
– name: b Chemistry Department, University of Aarhus, Denmark
– name: c The Consortium for Advanced Radiation Sources, University of Chicago, Chicago, IL 60637, USA
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Snippet The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh( i ) dinuclear...
The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump-probe experiments of the triplet excited state of a Rh(I) dinuclear complex....
The polychromatic Laue technique has been applied in 100 ps delay synchrotron pump–probe experiments of the triplet excited state of a Rh(I) dinuclear complex....
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SubjectTerms Algorithms
Molecular Structure
Organometallic Compounds - chemistry
Photochemistry
Rhodium - chemistry
Synchrotrons
Temperature
Time Factors
X-Ray Diffraction - methods
Title Time-resolved Laue diffraction of excited species at atomic resolution: 100 ps single-pulse diffraction of the excited state of the organometallic complex Rh2(μ-PNP)2(PNP)2·BPh4
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