首页> 美国卫生研究院文献>Acta Crystallographica Section E: Crystallographic Communications >mer-Tri­chlorido­tris­(tetra­hydro­thio­phene-κS)iridium(III): preparation and comparison with other mer-tri­chlorido­tris­(tetra­hydro­thio­phene-κS)metal complexes
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mer-Tri­chlorido­tris­(tetra­hydro­thio­phene-κS)iridium(III): preparation and comparison with other mer-tri­chlorido­tris­(tetra­hydro­thio­phene-κS)metal complexes

机译:mer-Trichlorochloridotris­(四氢噻吩基-κS)铱(III):与其他mer-trichloridotris­(四氢噻吩基-κS)金属配合物的制备和比较

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摘要

The title complex, [IrCl3(C4H8S)3], was prepared according to a literature method. A suitable crystal was obtained by diffusion of pentane into a di­chloro­methane solution and analyzed by single-crystal X-ray diffraction at 100 K. The title complex is isotypic with mer-tri­chlorido­tris­(tetra­hydro­thio­phene-κS)rhodium(III). However, the orientation of the tetra­hydro­thio­phene rings is different from an earlier report of mer-tri­chlorido­tris­(tetra­hydro­thio­phene-κS)iridium(III) deposited in the Cambridge Structural Database. The IrS3Cl3 core shows a nearly octa­hedral structure with various bond angles within 1–2° of the perfect 90 or 180° expected for an octa­hedron. The structure of the title compound is compared with the previous iridium complex as well as the rhodium and other octa­hedral metal tris-tetra­hydro­thio­phene compounds previously structurally characterized. DFT calculations were performed, which indicate the mer isomer is significantly lower in energy than the fac isomer by 50.1 kJ mol−1, thereby accounting for all compounds in the CSD being of the mer geometry. Powder X-ray diffraction of the bulk material showed that the preparation method yielded only the isomorph reported in this communication.
机译:根据文献方法制备标题配合物[IrCl 3(C 4 H 8 S)3]。通过戊烷向二氯甲烷溶液中的扩散获得合适的晶体,并在100 K下通过单晶X射线衍射进行分析,标题化合物为同型,具有三氯巯基三三(四氢噻吩基-κS)铑(III)。然而,四氢噻吩并噻吩环的取向与剑桥结构数据库中沉积的三氯巯基三(四氢噻吩-κS)铱(III)的早期报道不同。 IrS3Cl3磁芯显示出接近八面体的结构,其键角在八面体的理想90或180°的1-2°之内。将标题化合物的结构与先前的铱配合物以及先前在结构上表征的铑和其他八面体金属三-四氢噻吩基化合物进行比较。进行了DFT计算,结果表明该异构体的能量比fac异构体低50.1 kJ mol -1 ,从而说明CSD中的所有化合物均为异构体。散装材料的粉末X射线衍射表明,该制备方法仅产生该通报中报道的同晶型。

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