Veenstra Aron P, Monzel Laurenz, Baksi Ananya, Czekner Joseph, Lebedkin Sergei, Schneider Erik K, Pradeep Thalappil, Unterreiner Andreas-Neil, Kappes Manfred M
Institute of Physical Chemistry, Karlsruhe Institute of Technology, 76128 Karlsruhe, Germany.
Institute of Nanotechnology, Karlsruhe Institute of Technology, 76344 Eggenstein-Leopoldshafen, Germany.
J Phys Chem Lett. 2020 Apr 2;11(7):2675-2681. doi: 10.1021/acs.jpclett.0c00482. Epub 2020 Mar 23.
The photophysics of the isolated trianion Ag(BDT) (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.
通过飞秒时间分辨泵浦-探测光电子能谱在气相中研究了孤立的三阴离子Ag(BDT)(BDT = 苯二硫醇盐)的光物理性质,它是一种由基于BDT的配体组成的配体保护簇,终止于硫醇银壳层和银原子核心。在490 nm处的紫外激发产生一个或多个具有显著电荷转移(CT)特征的单重激发态,其中电子密度从壳层转移到核心。这些CT态通过电荷复合在几百飞秒的平均时间尺度上弛豫,产生振动激发的单重基态(内转换)或长寿命的三重态(系间窜越)。我们的研究是首次对孤立的配体保护的货币金属簇进行超快光谱探测。未来,研究在没有溶剂的情况下如何利用簇尺寸、整体电荷状态或杂原子掺杂来调节相应的弛豫动力学将是很有趣的。