论文标题

晶体固体中的元粘合:它如何崩溃?

Metavalent bonding in crystalline solids: how does it collapse?

论文作者

Guarneri, L., Jakobs, S., von Hoegen, A., Maier, S., Cojocaru-Mirédin, O., Raghuwanshi, M., Drögeler, M., Stampfer, C., Lobo, R. P. S. M., Piarristeguy, A., Pradel, A., Xu, M., Wuttig, M.

论文摘要

化学键是化学中最强大但有争议的概念之一,可以解释固体的性质趋势。最近,已经在几个较高的葡萄干剂中鉴定出了一种新型的化学键合,其特征是独特的性质投资组合,非常规键断裂和相邻原子之间约一个电子的共享。除了共价,离子和金属粘结外,元键是一种基本的粘结类型,这提出了一个相关问题,如果元元和共价键之间存在明确定义的过渡。对于三种不同的伪二进制线,即gete1-XSEX,SB2TE3(1-X)SE3X和BI2-2XSB2XSE3,突然下降了几种特性,包括光学介电常数,天生有效电荷,一旦观察到了一次关键的SE SE或SB浓度。这一发现提供了蓝图,以探索元粘合物对相变材料和热电学中使用的有吸引力特性的影响。

The chemical bond is one of the most powerful, yet controversial concepts in chemistry, explaining property trends in solids. Recently, a novel type of chemical bonding has been identified in several higher chalcogenides, characterized by a unique property portfolio, unconventional bond breaking and sharing of about one electron between adjacent atoms. Metavalent bonding is a fundamental type of bonding besides covalent, ionic and metallic bonding, raising the pertinent question, if there is a well-defined transition between metavalent and covalent bonding. For three different pseudo-binary lines, namely GeTe1-xSex, Sb2Te3(1-x)Se3x and Bi2-2xSb2xSe3, a sudden drop in several properties, including the optical dielectric constant, the Born effective charge, the electrical conductivity as well as the bond breaking is observed once a critical Se or Sb concentration is reached. This finding provides a blueprint to explore the impact of metavalent bonding on attractive properties utilized in phase change materials and thermoelectrics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源