Structures and bonding properties of lithium polysulfide clusters LiSnβ/0 (n = 3β5) and Li2S4β/0: size-selected anion photoelectron spectroscopy and theoretical calculations†
Abstract
The structures and bonding properties of several lithium polysulfide clusters LiSnβ/0 (n = 3β5) and Li2S4β/0 were investigated by size-selected anion photoelectron spectroscopy coupled with quantum chemistry calculations. The vertical detachment energies of LiS3β, LiS4β, and LiS5β were estimated to be 2.17 Β± 0.08, 3.30 Β± 0.08 and 3.66 Β± 0.08 eV, respectively, and that of Li2S4β was estimated to be 3.21 Β± 0.08 eV. It is found that LiS3β and LiS3 have planar quadrilateral structures, and LiS4β and LiS4 have distorted five-membered ring structures. LiS5β has a distorted six-membered ring structure while neutral LiS5 has a book-shaped structure. The lowest-lying structure of Li2S4β can be viewed as a S2 unit connecting to the LiβLi edge of a Li2S2 tetrahedron. The lowest-lying structure of neutral Li2S4 can be viewed as a S2 unit connecting to the S atoms of a Li2S2 quadrilateral. The natural population analysis (NPA) and electron localization function (ELF) analyses show that the excess electron of LiSnβ is mainly localized over the sulfur chains, especially on the S atoms interacting with Li, thus, the most stable structures of LiSnβ can be regarded as a Li+ cation interacting with a Sn2β dianion. The results may be useful for understanding the formation of lithium polysulfides in lithium sulfur batteries.