首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >A tetrapodal pentaamine for stabilizing square pyramidal co-ordination modules: synthesis, structure and reactivity of cobalt (III) complexes of 2, 2'-dimethyl-2, 2'-iminodimethylene-bis(1, 3-propanediamine)
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A tetrapodal pentaamine for stabilizing square pyramidal co-ordination modules: synthesis, structure and reactivity of cobalt (III) complexes of 2, 2'-dimethyl-2, 2'-iminodimethylene-bis(1, 3-propanediamine)

机译:用于稳定方形金字塔配位模块的四足五元胺:2,2'-二甲基-2,2'-亚氨基二亚甲基-双(1,3-丙二胺)的钴(III)配合物的合成,结构和反应性

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A facile synthesis of the tetrapodal pentaamine ligand 2, 2'-dimethyl-2, 2'-iminodimethylenebis(1, 3-propanediamine), ditame, has been achieved and some unusual effects of its topology and preference for square pyramidal co-ordination in cobalt (III) complexes explored. Potential influences of the ditame structure on substitution chemistry in [Co(ditame)X]~(n+) systems are defined by crystal structure analyses for [Co(ditame)Cl][ZnCl_4] and [Co(ditame)(NH_3)]Cl[ZnCl_4]. Proton exchange, nitrogen inversion and chloride anation reactivity, and substitution stereochemistry studies have been carried out on the [Co(ditame)Cl]~(2+) and [Co(ditame)(OD_2)]~(3+) complexes by using ~(13) C NMR spectroscopy. The base hydrolysis rate constant for [Co(ditame)Cl]~(2+) (68 dm~3 mol~(-1) s~(-1) at 25 deg C, I 1.0 mol dm~(-3)) is 250 fold greater than that for the analogous [Co(NH_3)_5Cl]~(2+) ion. This difference is attributed to an enhanced trans influence and a bond-coupled co-operative mechanism that facilitate the Cl~- dissociation in the conjugate base of [Co(ditame)Cl]~(2+). The bond-coupled mechanism also aids dissociative processes for the relatively fast aquation and anation chemistry of [Co(ditame)Cl]~(2+) and [Co(ditame)(OH_2)]~(3+). Two results for the reactivity of the [Co(ditame)X]~(n+) (X = Cl~- or H_2O) ions are attributed to restricted rearrangement of the square pyramidal Co(ditame) fragment in the course of X~(n-3) substitutions. One is the very small amount of [Co(ditame)(N_3)]~(2+) (1.1 +- 0.3%) formed in competition with [Co(ditame)(OH]~(2+) during base hydrolysis in aqueous 1 mol dm~(-3)NaN_3, which indicates an unusually short lifetime for the proposed intermediate. Also, there were no species detected that arise from partial dissociation of the amine, neither in the base hydrolysis nor in the aquation and anation experiments, even at temperatures>50 deg C and in the presence of strong acids. There are important consequences for substitution chemistry in other [M(pentaamine)X]~(n+) systems where rearrangement of the MN_5 (amine) fragment is restricted. The quantitatively simple substitution processes also make these reagents valuable as protective groups in synthetic applications such as peptide cleavage and synthesis.
机译:轻松合成了四足五胺五胺配体2,2'-二甲基-2,2'-亚氨基二亚甲基双(1,3-丙二胺),苯二胺,并对其拓扑结构和对方形金字塔配位的偏爱产生了一些不寻常的影响钴(III)配合物的探索。通过[Co(ditame)Cl] [ZnCl_4]和[Co(ditame)(NH_3)] Cl的晶体结构分析,确定了苯胺结构对[Co(ditame)X]〜(n +)系统中取代化学的潜在影响。 [ZnCl_4]。利用[Co(ditame)Cl]〜(2+)和[Co(ditame)(OD_2)]〜(3+)配合物进行了质子交换,氮转化和氯化物阴离子反应性以及取代立体化学研究。 〜(13)NMR谱。 [Co(ditame)Cl]〜(2+)的碱水解速率常数(68 dm〜3 mol〜(-1)s〜(-1)在25摄氏度,I 1.0 mol dm〜(-3))比类似的[Co(NH_3)_5Cl]〜(2+)离子大250倍。该差异归因于增强的反式影响和促进[Co(ditame)Cl]〜(2+)共轭碱中Cl〜-解离的键耦合合作机制。键耦合机理还有助于[Co(ditame)Cl]〜(2+)和[Co(ditame)(OH_2)]〜(3+)相对快的水合和阳离子化反应的离解过程。 [Co(ditame)X]〜(n +)(X = Cl〜-或H_2O)离子的反应性的两个结果归因于在X〜(n -3)替换。一种是在水溶液中碱水解过程中与[Co(ditame)(OH)〜(2+)竞争形成的极少量[Co(ditame)(N_3)]〜(2+)(1.1 +-0.3%) 1 mol dm〜(-3)NaN_3,表明所建议的中间体的寿命异常短;此外,在碱水解以及水合和阴离子化实验中均未检测到由于胺的部分解离而产生的物质,即使在温度高于50摄氏度且存在强酸的情况下,在限制MN_5(胺)片段重排的其他[M(五胺)X]〜(n +)系统中,取代化学也具有重要意义。简单的取代过程也使这些试剂在合成应用(如肽的裂解和合成)中具有作为保护基的价值。

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