Department of Optoelectronic Science &Technology, College of Elecrical &Information Engineering, Shanxi University of Science &Technology, Xian, 710021, China.
Department of Physics, Shaanxi University of Science &Technology, Xi'an, 710021, China.
Sci Rep. 2017 Mar 22;7:45149. doi: 10.1038/srep45149.
We have performed an unbiased structure search for a series of neutral and anionic FeL (L = BO, CN, NO, NO, OH, CH, NH, BH and LiH) clusters using the CALYPSO (Crystal structure Analysis by Particle Swarm Optimization) structure search method. To probe the superhalogen properties of neutral and anionic FeL clusters, we used density-functional theory with the B3LYP functional to examine three factors, including distribution of extra electron, pattern of bonding and the nature of the ligands. Theoretical results show that Fe(BO), Fe(NO) and Fe(NO) can be classified as magnetic superhalogen due to that their electron affinities even exceed those of the constituent ligands. The magnetic moment of Fe atom is almost entirly maintained when it is decorated with various ligands except for neutral and anionic (LiH). Moreover, the current work is also extended to the salt moieties formed by hyperhalogen/superhalogen anion and Na ion. It is found that these salts against dissociation into Na + FeL are thermodynamic stable except for Na[Fe(OH)]. These results provides a wealth of electronic structure information about FeL magnetic superhalogens and offer insights into the synthesis mechanisms.
我们使用 CALYPSO(基于粒子群优化的晶体结构分析)结构搜索方法,对一系列中性和阴离子 FeL(L=BO、CN、NO、NO、OH、CH、NH、BH 和 LiH)团簇进行了无偏结构搜索。为了探究中性和阴离子 FeL 团簇的超卤素性质,我们使用密度泛函理论中的 B3LYP 函数研究了三个因素,包括额外电子的分布、键的模式和配体的性质。理论结果表明,Fe(BO)、Fe(NO)和 Fe(NO)可以被归类为磁性超卤素,因为它们的电子亲和能甚至超过了组成配体的电子亲和能。当 Fe 原子被各种配体修饰时,其磁矩几乎完全保持,除了中性和阴离子(LiH)。此外,本工作还扩展到了由超卤素/超卤素阴离子和 Na 离子形成的盐部分。结果发现,除了 Na[Fe(OH)]之外,这些盐都很难分解为 Na+FeL,热力学上是稳定的。这些结果提供了丰富的关于 FeL 磁性超卤素的电子结构信息,并为其合成机制提供了深入的了解。