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稀土-金-碲体系(稀土=镧、铈、镨、钕;碲=锗、铅)中从简单到复杂的晶体化学

From simple to complex crystal chemistry in the RE-Au-Tt systems (RE = La, Ce, Pr, Nd; Tt = Ge, Pb).

作者信息

Lotfi Sogol, Arrieta Roy, Peterson Gordon G C, Delgado Pablo, Brgoch Jakoah

机构信息

Department of Chemistry, University of Houston, Houston, Texas 77204, United States.

Texas Center for Superconductivity, Houston, Texas 77204, United States.

出版信息

ACS Org Inorg Au. 2022 Feb 21;2(4):318-326. doi: 10.1021/acsorginorgau.1c00057. eCollection 2022 Aug 3.

Abstract

Polar intermetallics are an intriguing class of compounds with complex relationships between composition and structure that are not fully understood. This work reports a systematic study of the underexplored ternary composition space RE-Au-Tt (RE = La, Ce, Pr, Nd; Tt = Ge, Pb) to expand our knowledge of the intriguing chemistry and diversity achievable with these metallic constituents. These composition spaces are particularly interesting because of the potential to find Au-bearing, highly polar intermetallic compounds. The elements were first reacted through arc welding under an inert atmosphere, followed by annealing at 850 °C. X-ray diffraction of the products identified seven unreported compounds ranging from the simple NaTl-type compounds LaAuPb and Nd AuPb to the more structurally complex LaAuPb in the HfCuSn-type structure and PuPd-type REAuGe (RE = La, Ce, Pr, Nd). First-principles electronic structure calculations investigate the combination of Fermi surface-Brillouin zone interactions, electrostatic interactions, and delocalized metallic bonding that contributes to the formation of these phases. These calculations show that a mixture of electrostatic and metallic bonding plays a dominant role in these phases. The RE-Au-Tt composition space remains full of potential for discovering materials with relevant magnetic and quantum properties, provided the crystal chemistry can be comprehended.

摘要

极性金属间化合物是一类有趣的化合物,其组成与结构之间存在复杂的关系,目前尚未完全被理解。这项工作报道了对尚未充分探索的三元成分空间RE-Au-Tt(RE = 镧、铈、镨、钕;Tt = 锗、铅)进行的系统研究,以拓展我们对这些金属成分所能实现的有趣化学性质和多样性的认识。这些成分空间特别有趣,因为有可能找到含金的、高度极性的金属间化合物。这些元素首先在惰性气氛下通过电弧焊进行反应,然后在850°C下退火。对产物进行的X射线衍射鉴定出七种未报道的化合物,从简单的NaTl型化合物LaAuPb和NdAuPb到结构更复杂的具有HfCuSn型结构的LaAuPb以及PuPd型的REAuGe(RE = 镧、铈、镨、钕)。第一性原理电子结构计算研究了费米面 - 布里渊区相互作用、静电相互作用和离域金属键合的组合,这些相互作用促成了这些相的形成。这些计算表明,静电键合和金属键合的混合在这些相中起主导作用。只要能够理解晶体化学,RE-Au-Tt成分空间在发现具有相关磁性和量子性质的材料方面仍充满潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3860/9954293/b0573adc9c72/gg1c00057_0001.jpg

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