Peters Bertram, Lichtenberger Niels, Dornsiepen Eike, Dehnen Stefanie
Fachbereich Chemie , Wissenschaftliches Zentrum für Materialwissenschaften (WZMW) , Philipps-Universität Marburg , Hans-Meerwein-Straße 4 , D-35043 Marburg , Germany . Email:
Chem Sci. 2019 Oct 21;11(1):16-26. doi: 10.1039/c9sc04363b. eCollection 2020 Jan 7.
This perspective summarizes highlights and most recent advances in tin cluster chemistry, thereby addressing the whole diversity of (mostly) discrete units containing tin atoms. Although being a (semi-)metallic element, tin is in the position to occur both in formally positive or negative oxidation states in these molecules, which causes a broad range of fundamentally different properties of the corresponding compounds. Tin(iv) compounds are not as oxophilic and not as prone to hydrolysis as related Si or Ge compounds, hence allowing for easier handling and potential application. Nevertheless, their reactivity is high due to an overall reduction of bond energies, which makes tin clusters interesting candidates for functional compounds. Beside aspects that point towards bioactivity or even medical applications, materials composed of naked or ligand-protected tin clusters, with or without bridging ligands, show interesting optical, and ion/molecule-trapping properties.
本综述总结了锡簇化学的亮点和最新进展,从而阐述了(主要是)含锡原子的离散单元的多样性。尽管锡是一种(半)金属元素,但在这些分子中它能够以形式上的正氧化态或负氧化态存在,这导致相应化合物具有一系列根本不同的性质。与相关的硅或锗化合物相比,四价锡化合物的亲氧性和水解倾向较低,因此更易于处理和具有潜在应用价值。然而,由于键能的整体降低,它们的反应活性较高,这使得锡簇成为功能化合物的有趣候选物。除了具有生物活性甚至医学应用的方面外,由裸态或配体保护的锡簇组成的材料,无论有无桥连配体,都表现出有趣的光学和离子/分子捕获特性。