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Importance of Steric Influences in the Construction of Multicomponent Hybrid Polymetallic Clusters

机译:空间影响在多组分杂交多金属集群施工中的重要性

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The straightforward room temperature synthesis of hybrid polymetallic manganese clusters is investigated, exploiting complementary ligand combinations of p-tert-butylcalix[4]arene and salicylaldoximes. Eight new [Mn(7)(III)7Mn(II)] clusters have been prepared wherein the simple substitution of alkyl or aryl groups at well-defined positions of the salicylaldoxime scaffold leads to two distinct structure types that, while exhibiting the same general topology, contain the unique Mn-II ion in different positions. Incorporation of a methyl, ethyl, or isopropyl group at the 3-position of the aromatic skeleton or a phenyl group at the oximic carbon gives structure type A that displays competing weak ferromagnetic and antiferromagnetic interactions. Substitution of a methyl or ethyl group at the oximic carbon atom invokes structure type B, incorporating an additional bulky chloride or nitrate into the metallic core due to the smaller steric imposition and position of the methyl or ethyl group. The distortion of the cluster core is consequently enhanced, switching the magnetic properties and resulting in single-molecule magnet behavior. The presence of tert-butyl groups at the 3- and 5-positions of the salicylaldoxime skeleton leads to a new [(Mn2Mn2III)-Mn-IV] cluster that is found to be a single-molecule magnet. The bulky tert-butyl group in the 3-position is too large to facilitate Mn-8 cluster formation, and thus assembly occurs by an alternative pathway. Characteristic bonding modes of the constituent ligands are retained in every case, and the results presented here give insight into the potential of ligand combinations in future studies, highlighting the importance of steric factors in evaluating their relevant compatibilities.
机译:研究了杂种多金属锰簇的直接室温合成,利用p-叔丁基碱[4]芳烃和水杨氧基的互补配体组合。已经制备了八种新的[Mn(7)(III)7MN(II)簇,其中在水杨氧基肟支架的明确定义位置处的烷基或芳基的简单取代导致两个不同的结构类型,同时表现出相同的一般拓扑,包含不同位置的独特Mn-II离子。在氧化碳的芳族骨架或苯基的3位掺入甲基,乙基或异丙基,赋予结构类型A,显示竞争弱铁磁性和反铁磁相互作用。在肟碳原子中取代甲基或乙基调用结构型B,由于较小的空间施加和甲基或乙基的位置,将额外的体积氯化物或硝酸盐掺入金属芯中。因此,增强了簇芯的变形,切换磁性,并导致单分子磁体行为。水杨氧基氧基骨架的3-和5-位的叔丁基的存在导致了发现是单分子磁体的新[(MN2MN2IIII)-MN-IV]簇。 3位的庞大叔丁基太大,不能促进Mn-8簇形成,因此组装通过替代途径发生。在每种情况下,组分配体的特征粘合模式保留,并且在此呈现的结果介绍了未来研究中配体组合的潜力,突出了空间因素在评估其相关兼容性方面的重要性。

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