化学
激发态
光激发
氧烷
皮秒
飞秒
超快激光光谱学
价(化学)
反冲
原子物理学
吸收光谱法
分子物理学
谱线
激光器
光学
物理
有机化学
天文
作者
Roseanne J. Sension,Taylor P. McClain,Ryan M. Lamb,Roberto Alonso‐Mori,Frederico A. Lima,Fernando Ardana‐Lamas,Mykola Biednov,Matthieu Chollet,Taewon Chung,Aniruddha Deb,Paul A. Dewan,Leland B. Gee,Joel Huang Ze En,Yifeng Jiang,Dmitry Khakhulin,Jianhao Li,Lindsay B. Michocki,Nicholas A. Miller,Florian Otte,Yohei Uemura,Tim B. van Driel,James E. Penner‐Hahn
摘要
Femtosecond time-resolved X-ray absorption (XANES) at the Co K-edge, X-ray emission (XES) in the Co Kβ and valence-to-core regions, and broadband UV–vis transient absorption are combined to probe the femtosecond to picosecond sequential atomic and electronic dynamics following photoexcitation of two vitamin B12 compounds, hydroxocobalamin and aquocobalamin. Polarized XANES difference spectra allow identification of sequential structural evolution involving first the equatorial and then the axial ligands, with the latter showing rapid coherent bond elongation to the outer turning point of the excited state potential followed by recoil to a relaxed excited state structure. Time-resolved XES, especially in the valence-to-core region, along with polarized optical transient absorption suggests that the recoil results in the formation of a metal-centered excited state with a lifetime of 2–5 ps. This combination of methods provides a uniquely powerful tool to probe the electronic and structural dynamics of photoactive transition-metal complexes and will be applicable to a wide variety of systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI