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Spin–Orbit Coupling Drives Femtosecond Nonadiabatic Dynamics in a Transition Metal Compound

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Figshare2017-03-08 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Spin_Orbit_Coupling_Drives_Femtosecond_Nonadiabatic_Dynamics_in_a_Transition_Metal_Compound/4736509
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Transient absorption measurements conducted using broadband, 6 fs laser pulses reveal unexpected femtosecond dynamics in the [IrBr6]2– model system. Vibrational spectra and the X-ray crystal structure indicate that these dynamics are not induced by a Jahn–Teller distortion, a type of conical intersection typically associated with the spectral features of transition metal compounds. Two-dimensional electronic spectra of [IrBr6]2– contain 23 cross peaks, which necessarily arise from spin–orbit coupling. Real-valued 2D spectra support a spectroscopic basis where strong nonadiabatic coupling, ascribed to multiple conical intersections, mediates rapid energy relaxation to the lowest-energy excited state. Subsequent analysis gives rise to a more generalized description of a conical intersection as a degeneracy between two adiabatic states having the same total angular momentum.
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2017-03-08
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