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1H NMR spectroscopic elucidation in solution of the kinetics and thermodynamics of spin crossover for an exceptionally robust Fe2+ complex

机译:1H NMR光谱阐明了强健的Fe2 +络合物的自旋交叉动力学和热力学

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摘要

A series of Fe2+ spin crossover (SCO) complexes [Fe(5/6)](2+) employing hexadentate ligands (5/6) with cis/trans-1,2-diamino cyclohexanes (4) as central building blocks were synthesised. The ligands were obtained by reductive amination of 4 with 2,2'-bipyridyl-6-carbaldehyde or 1,10-phenanthroline-2-carbaldehyde 3. The chelating effect and the rigid structure of the ligands 5/6 lead to exceptionally robust Fe2+ and Zn2+ complexes conserving their structure even in coordinating solvents like dmso at high temperatures. Their solution behavior was investigated using variable temperature (VT) H-1 NMR spectroscopy and VT Vis spectroscopy. SCO behavior was found for all Fe2+ complexes in this series centred around and far above room temperature. For the first time we have demonstrated that the thermodynamics as well as kinetics for SCO can be deduced by using VT H-1 NMR spectroscopy. An alternative scheme using a linear correction term C-1 to model chemical shifts for Fe2+ SCO complexes is presented. The rate constant for the SCO of [Fe(rac-trans-5)](2+) obtained by VT H-1 NMR was validated by Laser Flash Photolysis (LFP), with excellent agreement (1/(k(HL) + k(LH)) = 33.7/35.8 ns for NMR/LFP). The solvent dependence of the transition temperature T-1/2 and the solvatochromism of complex [Fe(rac-trans-5)](2+) were ascribed to hydrogen bond formation of the secondary amine to the solvent. Enantiomerically pure complexes can be prepared starting with R,R- or S,S-1,2-diaminocyclohexane( R,R-trans-4 or S, S-trans-4). The high robustness of the complexes reduces a possible ligand scrambling and allows preparation of quasiracemic crystals of [Zn(R, R-5)][Fe(S,S-5)](ClO4)(4)center dot(CH3CN) composed of a 1 : 1 mixture of the Zn and Fe complexes with inverse chirality.
机译:合成了一系列使用六齿配体(5/6)和顺/反式1,2-二氨基环己烷(4)作为中心结构单元的Fe2 +自旋交联(SCO)配合物[Fe(5/6)](2+) 。配体是通过将2与2,2'-联吡啶基-6-甲醛或1,10-菲咯啉-2-甲醛3还原胺化而获得的。配体5/6的螯合作用和刚性结构导致Fe2 +极其坚固Zn2 +和Zn2 +配合物即使在高温的dmso等配位溶剂中也能保持其结构。使用可变温度(VT)H-1 NMR光谱和VT Vis光谱研究了它们的溶液行为。发现该系列中所有Fe2 +配合物的SCO行为均以室温为中心并远高于室温。我们首次证明,使用VT H-1 NMR光谱可以推断SCO的热力学和动力学。提出了使用线性校正项C-1模拟Fe2 + SCO配合物化学位移的替代方案。通过VT H-1 NMR获得的[Fe(rac-trans-5)](2+)的SCO速率常数已通过激光闪光光解法(LFP)验证,具有极好的一致性(1 /(k(HL)+对于NMR / LFP,k(LH))= 33.7 / 35.8ns。过渡温度T-1 / 2对溶剂的依赖性以及配合物[Fe(rac-trans-5)](2+)的溶剂变色归因于仲胺与溶剂的氢键形成。对映体纯的复合物可以从R,R-或S,S-1,2-二氨基环己烷(R,R-trans-4或S,S-trans-4)开始制备。配合物的高鲁棒性减少了可能的配体加扰,并允许制备由[Zn(R,R-5)] [Fe(S,S-5)](ClO4)(4)中心点(CH3CN)构成的准外消旋晶体Zn和Fe配合物的1:1混合物具有反手性。

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