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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Dynamic chiral-at-metal stability of tetrakis(d/l-hfc)Ln(III) complexes capped with an alkali metal cation in solution
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Dynamic chiral-at-metal stability of tetrakis(d/l-hfc)Ln(III) complexes capped with an alkali metal cation in solution

机译:溶液中碱金属阳离子封端的四(d / l-hfc)Ln(III)配合物的金属手性动态稳定性

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摘要

Chiral tetrakis(β-diketonate) Ln(iii) complexes Δ-[NaLa(d-hfc) _4(CH _3CN)] (1) and Λ-[NaLa(l-hfc) _4 (CH _3CN)] (2) (d/l-hfc ~- = 3-heptafluo-robutylryl-(+)/(-)- camphorate) are a pair of enantiomers and crystallize in the same Sohncke space group (P2 _12 _12 _1) with dodecahedral (DD) geometry. Typically positive and negative exciton splitting patterns around 320 nm were observed in the solid-state circular dichroism (CD) spectra of complexes 1 and 2, which indicate that their shell configurational chiralities are Δ and Λ, respectively. The apparent bisignate couplets in the solid-state CD spectra of [CsLn(d-hfc) _4(H _2O)] [Ln = La (3), Yb (5)] and [CsLn(l-hfc) _4(H _2O)] [Ln = La (4), Yb (6)] show that they are a pair of enantiomers and their absolute configurations are denoted Δ and Λ, respectively. The crystallographic data of 5 reveals that its coordination polyhedron is the square antiprism (SAP) geometry and it undergoes a phase transition from triclinic (α phase, P1) to monoclinic (β phase, C2) upon cooling. The difference between the two phases is brought about by the temperature dependent behaviour of the coordination water molecules, but this did not affect the configurational chirality of the Δ-SAP-[Yb(d-hfc) _4] ~- moiety. Furthermore, time-dependent CD, UV-vis and ~(19)F NMR were applied to study the solution behavior of these complexes. It was found that the chiral-at-metal stability of the three pairs of complexes is different and affected by both the Ln ~(3+) and M ~+ ion size. The results show that the Cs ~+ cation can retain the metal center chirality and stablize the structures of [Ln(d/l-hfc) _4] ~- or the dissociated tris(d/l-hfc)Ln(iii) species in solution for a longer time than that of the Na ~+ cation, and it is important that the Cs + ion successfully lock the configurational chirality around the Yb ~(3+) center of the complex species in solution. This is reasoned by the short Cs ~+?FC, Cs ~+?O-Yb and Cs ~+? Yb ~(3+) interactions observed in the crystal structure of α-5 and further confirmed by the chiral self-assembly of 5 or 6 from [Yb(H _2O)(d/l-hfc) _3] induced by CsI in a CHCl _3 solution.
机译:手性四(β-二酮酸)Ln(iii)配合物Δ-[NaLa(d-hfc)_4(CH _3CN)](1)和Λ-[NaLa(1-hfc)_4(CH _3CN)](2)( d / l-hfc〜-= 3-七氟-丁基丁酯-(+)/(-)-樟脑酸酯)是一对对映异构体,在十二面体(DD)几何形状的同一Sohncke空间组(P2 _12 _12 _1)中结晶。在配合物1和2的固态圆二色性(CD)光谱中,通常观察到320 nm附近的正激子分裂图和负激子分裂图,这表明它们的壳构型手性分别为Δ和Λ。 [CsLn(d-hfc)_4(H _2O)] [Ln = La(3),Yb(5)]和[CsLn(1-hfc)_4(H _2O) )] [Ln = La(4),Yb(6)]表明它们是一对对映异构体,其绝对构型分别表示为Δ和Λ。 5的晶体学数据表明,其配位多面体为方形反棱镜(SAP)几何形状,冷却后经历了从三斜晶(α相,P1)到单斜晶(β相,C2)的相变。两相之间的差异是由配位水分子的温度依赖性行为引起的,但这并不影响Δ-SAP-[Yb(d-hfc)_4]〜-部分的构型手性。此外,时间依赖的CD,紫外可见和〜(19)F NMR用于研究这些配合物的溶液行为。发现三对配合物在金属上的手性稳定性不同,并且受Ln〜(3+)和M〜+离子尺寸的影响。结果表明,Cs〜+阳离子可以保留金属中心手性并稳定[Ln(d / l-hfc)_4]〜-或离解的tris(d / l-hfc)Ln(iii)物种的结构。溶液比Na〜+阳离子的溶解时间更长,并且Cs +离子成功锁定溶液中复合物的Yb〜(3+)中心周围的构型手性很重要。这是由短的Cs〜+?FC,Cs〜+?O-Yb和Cs〜+?造成的。在α-5的晶体结构中观察到Yb〜(3+)相互作用,并进一步由CsI诱导的[Yb(H _2O)(d / l-hfc)_3的5或6的手性自组装进一步证实CHCl_3溶液。

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