首页> 外文期刊>Journal of physical chemistry letters >Ultrafast Intersystem Crossing in Isolated Ag-29(BDT)(12)(3-) Probed by Time-Resolved Pump-Probe Photoelectron Spectroscopy
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Ultrafast Intersystem Crossing in Isolated Ag-29(BDT)(12)(3-) Probed by Time-Resolved Pump-Probe Photoelectron Spectroscopy

机译:通过时间分辨泵探针光电子谱探测的孤立AG-29(BDT)(12)(3-)中的超短速度交叉

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The photophysics of the isolated trianion Ag-29(BDT)(12)(3-) (BDT = benzenedithiolate), a ligand-protected cluster comprising BDT-based ligands, terminating a shell of silver thiolates and a core of silver atoms, was studied in the gas phase by femtosecond time-resolved, pump-probe photoelectron spectroscopy. UV excitation at 490 nm populates one or more singlet excited states with significant charge transfer (CT) character in which electron density is shifted from shell to core. These CT states relax on an average time scale of several hundred femtoseconds by charge recombination to yield either the vibrationally excited singlet ground state (internal conversion) or a long-lived triplet (intersystem crossing). Our study is the first ultrafast spectroscopic probe of a ligand-protected coinage metal cluster in isolation. In the future, it will be interesting to study how cluster size, overall charge state, or heteroatom doping can be used to tune the corresponding relaxation dynamics in the absence of solvent.
机译:分离的TriaNion Ag-29(BDT)(12)(3-)(BDT =苯二甲酸酯),一种包含BDT基配体的配体保护簇,终止壳硫醇酸盐和银原子的核心,是通过飞秒时间分辨,泵探针光电子谱研究在气相中研究。 490 nm的紫外线激发填充一个或多个单线型激发状态,具有显着的电荷转移(CT)特征,其中电子密度从壳体转移到核心。这些CT状态通过电荷重组在几百毫升秒的平均时间尺度上放松,以产生振动激励的单线态(内部转换)或长寿命的三联体(界面交叉)。我们的研究是分离的配体保护的币金属簇的第一个超快光谱探针。在未来,研究群集大小,总电荷状态或杂原子掺杂可以用于在没有溶剂的情况下调整相应的弛豫动态。

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