The School of Pharmacy, Fujian Medical University, Fuzhou, 350108, P.R. China.
Laboratory of Theoretical and Computational Chemistry, Institute of Theoretical Chemistry, Jilin University, Changchun, 130023, P.R. China.
Chemistry. 2019 Mar 21;25(17):4358-4366. doi: 10.1002/chem.201806194. Epub 2019 Mar 5.
The potential application of the jellium model as guidance in the rational design of bimetallic superalkali cations is examined under gradient-corrected density functional theory for the first time. By using Li, Mg, and Al as atomic building blocks, a series of bimetallic cationic clusters with 2, 8, 20, and 40 valence electrons are obtained and investigated. As the corresponding neutral clusters tend to lose one valence electron to achieve closed-shell states in the jellium model, these studied cations exhibit much lower vertical electron affinities (EA , 3.42-4.95 eV) than the ionization energies (IEs) of alkali metal atoms, indicating their superalkali identities. The high stability of these cationic clusters is guaranteed by their considerable HOMO-LUMO gaps and binding energies per atom. Moreover, the feasibility of using the designed superalkalis as efficient reductants to activate CO and N molecules and as stable building blocks to assemble ionic superatom compounds is explored. Therefore, this study may provide an effective method for obtaining various metallic superatoms with extensive applications on the basis of the simple jellium rule.
首次在梯度校正密度泛函理论下,研究了类固体模型在双金属超碱阳离子的合理设计中的潜在应用。通过使用 Li、Mg 和 Al 作为原子构建块,获得并研究了一系列具有 2、8、20 和 40 价电子的双金属阳离子簇。由于相应的中性簇在类固体模型中倾向于失去一个价电子以达到满壳层状态,因此这些研究的阳离子表现出比碱金属原子的电离能(IEs)低得多的垂直电子亲和能(EA,3.42-4.95 eV),表明它们具有超碱性质。这些阳离子簇的高稳定性由它们相当大的 HOMO-LUMO 能隙和每个原子的结合能保证。此外,还探索了将设计的超碱用作有效还原剂来激活 CO 和 N 分子,以及作为稳定构建块来组装离子超原子化合物的可行性。因此,这项研究可能为在简单类固体规则的基础上获得具有广泛应用的各种金属超原子提供了一种有效的方法。