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首页> 外文期刊>Journal of physical chemistry letters >Electron Binding in a Superatom with a Repulsive Coulomb Barrier: The Case of [Ag-44(SC6H3F2)(30)](4-) in the Gas Phase
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Electron Binding in a Superatom with a Repulsive Coulomb Barrier: The Case of [Ag-44(SC6H3F2)(30)](4-) in the Gas Phase

机译:具有排斥库仑屏障的超大中的电子结合:气相中[Ag-44(SC6H3F2)(30)](4-)的情况

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摘要

The electron binding mechanism in [Ag-44(SC6H3F2)(30)](4-) (SC6H3F2 = 3,4-difluorobenzenethiolate) tetra-anion was studied by photoelectron spectroscopy (PES), collision-induced dissociation mass spectrometry (CID-MS), and density functional theory (DFT) computations. PES showed that [Ag-44(SC6H3F2)(30)](4-) is energetically metastable with respect to electron autodetachment {[Ag-44(SC6H3F2)(30)](3-) + e(-)} and features a repulsive Coulomb barrier (RCB) with a height of 2.7 eV. However, CID-MS revealed that [Ag-44(SC6H3F2)(30)](4-) does not release an electron upon collisional excitation but undergoes dissociation. DFT computations performed on the known structure of [Ag-44(SC6H3F2)(30)](4-) confirmed the negative adiabatic electron affinity of [Ag-44(SC6H3F2)(30)](3-) and interpreted the experimental PE spectrum by taking into account tunneling electron photodetachment through the RCB.
机译:通过光电子谱(PES)研究[Ag-44(SC6H3F2)(30)](4-)](4-)(SC6H3F2 = 3,4-二氟苯磺酸甲磺酸盐)四阴离子的电子结合机制(SC6H3F2 = 3,4-二氟苯甲酸甲磺酸盐)(CID- MS)和密度泛函理论(DFT)计算。 PES表明[Ag-44(SC6H3F2)(30)](4-)对于电子AutoDetachment(SC-44(SC6H3F2)(30)](3-)+ E( - )}和特征是有能量的稳定性的 一种令人厌恶的库仑屏障(RCB),高度为2.7eV。 然而,CID-MS显示[Ag-44(SC6H3F2)(30)](4-)在碰撞激发时不会释放电子,而是经历解离。 对[Ag-44(SC6H3F2)(30)](4-)的已知结构进行的DFT计算证实[AG-44(SC6H3F2)(30)](3-)的负绝热电子亲和力并解释了实验性PE 通过RCB考虑隧道电子光探测来频谱。

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