Zhou Xi, Zhao Cuihua, Chen Jianhua, Feng Yao
School of Resources, Environment and Materials, Guangxi University Nanning 530004 China
State Key Laboratory of Featured Metal Materials and Life-cycle Safety for Composite Structures, Guangxi University Nanning 530004 China.
RSC Adv. 2023 Sep 5;13(38):26516-26527. doi: 10.1039/d3ra03401a. eCollection 2023 Sep 4.
Models of jamesonite with different compositions were built by different amounts of Sb or Pb substitution at Fe sites, and their structures and electronic properties were studied using the DFT method. The structure and properties of jamesonite significantly changed after Sb or Pb substitution. The lengths of the Sb-S and Pb-S bonds are larger than those of the corresponding Fe-S bonds of pure jamesonite, and the polarization of iron atoms adjacent to substitute atoms is weakened. After one Sb atom substitution, the S atoms bonded to Sb (substitution atom) gain more charges than those before Sb substitution. The Sb atom has more positive charges than the corresponding Fe atom before Sb substitution. For one Pb substitution system, the electrons transfer from the substituted Pb to adjacent S atoms, and the larger negative charge of the S atoms causes a slightly stronger Pb-S bond. With increasing Sb or Pb content, the electronic structural changes of the adjacent atoms are similar to those of one Sb or Pb substitution. However, the increase of 4-coordination Sb or 4-coordination Pb with the decrease of Fe atom changes the electronic structure of jamesonite, which will change its flotation performance.
通过在铁位点上用不同量的锑或铅进行取代,构建了不同成分的脆硫锑铅矿模型,并使用密度泛函理论(DFT)方法研究了它们的结构和电子性质。锑或铅取代后,脆硫锑铅矿的结构和性质发生了显著变化。锑 - 硫键和铅 - 硫键的长度大于纯脆硫锑铅矿相应铁 - 硫键的长度,并且与取代原子相邻的铁原子的极化减弱。一个锑原子取代后,与锑(取代原子)键合的硫原子比锑取代前获得更多电荷。锑原子比取代前相应的铁原子具有更多正电荷。对于一个铅取代体系,电子从被取代的铅转移到相邻的硫原子,硫原子较大的负电荷导致铅 - 硫键稍强。随着锑或铅含量的增加,相邻原子的电子结构变化与一个锑或铅取代时相似。然而,四配位锑或四配位铅随着铁原子的减少而增加,改变了脆硫锑铅矿的电子结构,这将改变其浮选性能。