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首页> 外文期刊>Inorganic Chemistry Frontiers >Homochiral versus racemic polymorphs of spin-crossover iron(ii) complexes with reversible LIESST effect
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Homochiral versus racemic polymorphs of spin-crossover iron(ii) complexes with reversible LIESST effect

机译:Homochiral与旋转交叉铁(II)复合物的外消旋多晶型物,具有可逆的Liesst效应

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摘要

Homochiral complexes [Fe(RR-L)(NCSe)(2)] (RR-1; RR-L = (1R,2R)-N-1,N-2-bis(pyridin-2-ylmethyl)cyclohexane-1,2-diamine), [Fe(SS-L)(NCSe)(2)] (SS-1; SS-L = (1S,2S)-N-1,N-2-bis(pyridin-2-ylmethyl)cyclohexane-1,2-diamine), [Fe(RR-L)(NCSe)(2)](2) (RR-2) and [Fe(SS-L)(NCSe)(2)](2) (SS-2) and their racemic analogue complex rac-[FeL(NCSe)(2)] (rac-1; rac-L is a mixture of an equal ratio of RR-L and SS-L) were synthesized, characterized by single-crystal X-ray crystallography and circular dichroism (CD) spectroscopy, and investigated for their spin-crossover (SCO) behaviours. The enantiomers RR-1 and SS-1 show thermally induced non-hysteretic SCO behaviours centered at 146 K and their polymorphs RR-2 and SS-2 undergo more gradual SCO with a transition temperature of 162 K, while the racemic polymorph rac-1 is unexpectedly high spin only. The differences in SCO behaviours between the homochiral and racemic polymorphs are assigned to different intermolecular interactions. In addition, light-induced excited spin-state trapping (LIESST) effects were found in the four homochiral complexes, and bidirectional photo-switching of spin states can be realized reversibly. These results suggest that we may be able to finely tune the SCO behaviours of polymorphic complexes by alternating chiral and racemic ligands, though chirality itself doesn't exert effects on SCO.
机译:Homochiral络合物[Fe(RR-L)(NCSE)(NCSE)(2)](RR-1; RR-L =(1R,2R)-N-1,N-2-BIS(吡啶-2-基甲基)环己烷-1 ,2-二胺)[Fe(SS-L)(NCSE)(2)](SS-1; SS-L =(1S,2S)-N-1,N-2-BIS(吡啶-2-基甲基)环己烷-1,2-二胺),[Fe(RR-1)(NCSE)(2)](2)(2)(RR-2)和[Fe(SS-L)(NCSE)(2)](2) (SS-2)及其外消旋类似物复合RAC-[FER(NCSE)(2)](RAC-1; RAC-L是RR-L和SS-L的相等比例的混合物),其特征在于单晶X射线晶体学和圆形二色性(CD)光谱,并研究了它们的旋转交叉(SCO)行为。对映体RR-1和SS-1显示热诱导的非滞后性SCO行为,其定为于146 k,其多晶型物RR-2和SS-2经历更逐渐的SCO,其过渡温度为162 k,而外消旋多晶型物RAC-1仅意外高旋转。冠制和外消旋多晶晶之间的SCO行为的差异被分配到不同的分子间相互作用。此外,在四个同型络合物中发现了光诱导的激发旋转状态捕获(Liesst)效果,并且可以可逆地实现旋转状态的双向光电切换。这些结果表明,我们可以通过交替的手性和外消旋配体来精细调节多态复合物的SCO行为,尽管手性本身并不对SCO产生影响。

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