Unbalanced racemates: solid state solutions containing enantiomeric pairs crystallizing in Sohncke space groups with (L:D) ratios other than (1:1) – illustrated with crystals of a Co(III) coordination compound

IF 0.9 4区 材料科学 Q3 CRYSTALLOGRAPHY
I. Bernal, R. Lalancette
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引用次数: 0

Abstract

Abstract Herein we describe materials of composition [Co(NH3)4(X-leucinato)]I2·H2O in which the amino acid ligand is either L or D, and in which (a) while in pure enantiomorphic form (L), crystallizes in a Sohncke space group with Z′ = 2.0; but, whose packing closely resembles that of its racemate. Such substances are labeled a Racemic Mimic; and (b) crystals in which the L:D ratio of the amino acid ligand in the asymmetric unit is (71:29), which interestingly crystallize in the same space group and cell constants as those of the former. Moreover, the packing behavior is essentially the same in both—the difference being that the (1:1) species is fully ordered, while that with L:D (71:29) ratio has a partially disordered propyl chain. The (71:29) species we describe herein as an Unbalanced Racemate.
不平衡外消旋物:在Sohncke空间群中以(L:D)比非(1:1)结晶的含有对映体对的固态溶液——以Co(III)配位化合物的晶体为例
摘要在本文中,我们描述了组成为[Co(NH3)4(X-leucinato)]I2·H2O的材料,其中氨基酸配体为L或D,并且其中(a)在纯对映形态(L)中结晶在Z′=2.0的Sohncke空间群中;但是,其包装与外消旋体的包装非常相似。这些物质被标记为种族模仿;和(b)不对称单元中氨基酸配体的L:D比为(71:29)的晶体,有趣的是,它们在与前者相同的空间群和细胞常数中结晶。此外,两者的堆积行为基本相同——不同之处在于(1:1)物种是完全有序的,而L:D(71:29)比例的物种具有部分无序的丙基链。我们在这里描述的(71:29)物种是不平衡的种族配偶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.00
自引率
16.70%
发文量
55
期刊介绍: Zeitschrift für Kristallographie – Crystalline Materials was founded in 1877 by Paul von Groth and is today one of the world’s oldest scientific journals. It offers a place for researchers to present results of their theoretical experimental crystallographic studies. The journal presents significant results on structures and on properties of organic/inorganic substances with crystalline character, periodically ordered, modulated or quasicrystalline on static and dynamic phenomena applying the various methods of diffraction, spectroscopy and microscopy.
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