首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Steric influence of salicylaldehyde-based Schiff base ligands on the formation of trans-[Re(PR3)(2)(Schiff base)](+) complexes
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Steric influence of salicylaldehyde-based Schiff base ligands on the formation of trans-[Re(PR3)(2)(Schiff base)](+) complexes

机译:基于水杨醛的Schiff碱配体对转基质形成的空间影响 - [Re(Pr3)(2)(Schiff Base)](+)复合物形成

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摘要

Complexes of the type trans-[Re(PR3)(2)(Schiff base)](+) (R = ethyl and/or phenyl) 2-7 were prepared by the reaction of (nBu(4)N)[ReOCl4] with H(2)sal(2)en or H(2)sal(2)ibn followed by addition of a tertiary phosphine. The trans-[Re(PR3)(2)(sal(2)en)](+) complexes 2-4 were stable in solution, whereas the trans-[Re(PR3)(2)(sal(2)ibn)](+) complexes 6-7 were observed to convert to their corresponding cis-[ReO(PR3)(sal(2)ibn)](+) products through a process involving ligand dissociation, metal oxidation, and Schiff base ligand rearrangement. The conversion of the trans-[Re(PR3)(2)(sal(2)ibn)](+) complexes is likely driven by steric interactions between the bulky backbone gem-dimethyl groups of the sal(2)ibn ligand and the phosphine ligands. These complexes were isolated and characterized by H-1 and C-13 NMR, FT-IR spectroscopy, cyclic voltammetry, and single crystal X-ray diffraction. The results reported herein provide insight into the factors that drive trans-[Re(PR3)(2)(Schiff base)](+) complex formation. This will aid in the development of novel Re-186/188 therapeutic agents and the design of novel bifunctional N2O2 Schiff base ligands.
机译:通过(NBU(4)N)[Reocl4]的反应,制备类型转备(Pr3)(2)(2)(2)(Schiff Base)(Schiff碱)](+)(+)(R =乙基和/或苯基)2-7的复合物。用H(2)SAL(2)烯或H(2)SAL(2)IBN,然后加入叔膦。反式 - [Re(pr3)(2)(SAL(2)烯)](+)复合物2-4在溶液中稳定,而转官[Re(Pr3)(2)(Sal(2)IBN)通过涉及配体解离,金属氧化和Schiff基碱配体重排的方法,观察到络合物6-7以通过涉及配体解离,金属氧化和Schiff碱配体重排的方法转化为相应的CIS-[REO(PR3)(SAL(2)IBN)](+)产物。反式[Re(pr3)(2)(SAL(2)IBN)](+)复合物的转化可能是通过SAL(2)IBN配体的庞大骨架绒毛珠宝基团和骨架的骨架底甲基二甲基之间的空间相互作用驱动膦配体。将这些复合物分离,其特征在于H-1和C-13 NMR,FT-IR光谱,环状伏安法和单晶X射线衍射。本文报道的结果提供了进入驱动转移转移的因素(2)(2)(Schiff Base)](+)复杂形成的因素的洞察力。这将有助于开发新型RE-186/188治疗剂和新型双官能N2O2席夫碱配体的设计。

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