Cunningham Ethan M, Taxer Thomas, Heller Jakob, Ončák Milan, van der Linde Christian, Beyer Martin K
Institut für Ionenphysik und Angewandte Physik, Universität Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria.
Phys Chem Chem Phys. 2021 Feb 7;23(5):3627-3636. doi: 10.1039/d0cp06112c. Epub 2021 Feb 1.
The structures, along with solvation evolution, of size-selected Zn(HO) (n = 2-35) complexes have been determined by combining infrared multiple photon photodissociation (IRMPD) spectroscopy and density functional theory. The infrared spectra were recorded in the O-H stretching region, revealing varying shifts in band position due to different water binding motifs. Concordant with previous studies, a coordination number of 3 is observed, determined by the sudden appearance of a broad, red-shifted band in the hydrogen bonding region for clusters n > 3. The coordination number of 3 seems to be retained even for the larger clusters, due to incoming ligands experiencing significant repulsion from the Zn valence 4s electron. Evidence of spectrally distinct single- and double-acceptor sites are presented for medium-sized clusters, 4 ≤n≤ 7, however for larger clusters, n≥ 8, the hydrogen bonding region is dominated by a broad, unresolved band, indicative of the increased number of second and third coordination sphere ligands. No evidence of a solvated, six-fold coordinated Zn ion/solvated electron pair is present in the spectra.
通过结合红外多光子光解离(IRMPD)光谱和密度泛函理论,确定了尺寸选择的Zn(HO)(n = 2 - 35)配合物的结构以及溶剂化演化。在O - H伸缩区域记录了红外光谱,揭示了由于不同的水结合模式导致的谱带位置的变化。与先前的研究一致,观察到配位数为3,这是由n > 3的团簇在氢键区域突然出现一个宽的、红移的谱带所确定的。即使对于较大的团簇,配位数3似乎也得以保留,这是因为进入的配体受到来自锌价4s电子的显著排斥。对于中等尺寸的团簇4≤n≤7,给出了光谱上不同的单受体和双受体位点的证据,然而对于较大的团簇n≥8,氢键区域由一个宽的、未解析的谱带主导,这表明第二和第三配位层配体的数量增加。光谱中没有溶剂化的六配位锌离子/溶剂化电子对的证据。