BAM Federal Institute for Materials Research and Testing, Richard-Willstätter Str. 11, D-12489 Berlin, Germany.
Nikolaev Institute of Inorganic Chemistry, Lavrentiev ave. 3, 630090 Novosibirsk, Russia.
Molecules. 2020 Feb 11;25(4):768. doi: 10.3390/molecules25040768.
Rhodium(III) octahedral complexes with amine and chloride ligands are the most common starting compounds for preparing catalytically active rhodium(I) and rhodium(III) species. Despite intensive study during the last 100 years, synthesis and crystal structures of rhodium(III) complexes were described only briefly. Some [RhCl(NH)] compounds are still unknown. In this study, available information about synthetic protocols and the crystal structures of possible [RhCl(NH)] octahedral species are summarized and critically analyzed. Unknown crystal structures of (NH)[Rh(NH)Cl], [Rh(NH)Cl]ClHO, and [Rh(NH)Cl]Cl are reported based on high quality single crystal X-ray diffraction data. The crystal structure of [Rh(NH)Cl]Cl was redetermined. All available crystal structures with octahedral complexes [RhCl(NH)] were analyzed in terms of their packings and pseudo-translational sublattices. Pseudo-translation lattices suggest face-centered cubic and hexagonal closed-packed sub-cells, where Rh atoms occupy nearly ideal lattices.
三价铑的八面体配合物与胺和氯配体是制备催化活性的一价铑和三价铑物种的最常见起始化合物。尽管在过去的 100 年中进行了深入的研究,但三价铑配合物的合成和晶体结构仅被简要描述过。一些[RhCl(NH)]化合物仍然未知。在这项研究中,总结并批判性地分析了可用的关于合成方案和可能的[RhCl(NH)]八面体物种的晶体结构的信息。基于高质量的单晶 X 射线衍射数据,报道了(NH)[Rh(NH)Cl]、[Rh(NH)Cl]ClHO 和[Rh(NH)Cl]Cl 的未知晶体结构。重新测定了[Rh(NH)Cl]Cl 的晶体结构。分析了所有具有八面体配合物[RhCl(NH)]的可用晶体结构,以研究其堆积和准平移亚晶格。准平移晶格表明存在面心立方和六方密堆积子晶格,其中 Rh 原子占据几乎理想的晶格。