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Density functional study of intramolecular ferromagnetic interaction through m-phenylene coupling unit (I): UBLYP, UB3LYP, and UHF calculations

机译:通过间亚苯基偶联单元进行分子内铁磁相互作用的密度泛函研究(I):UBLYP,UB3LYP和UHF计算

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Polyradicals comprised of m-phenylene-bridged organic radicals are well known as building blocks of organic ferromagnets, in which radical groups are connected with each other at the meta position in the benzene ring, and the parallel-spin configurations between radical sites are more stabilized than the antiparallel ones. Topological rules for spin alignments enable us to design organic high-spin dendrimers and polymers with the ferromagnetic ground states by linking various radical species through an m-phenylene unit. However, no systematic ab initio treatment of such spin dendrimers and magnetic polymers has been reported until now, though experimental studies on these materials have been performed extensively in the past ten years. As a first step to examine the possibilities of ferromagnetic dendrimers and polymers constructed of m-phenylene units with organic radicals, we report density functional and molecular orbital calculations of six m-phenylene biradical units with radical substituents and polycarbenes linked with an m-phenylene-type network. The relative stability between the spin states and spin density population are estimated by BLYP or B3LYP and Hartree—Fock calculations in order to clarify their utility for constructions of large spin denderimers and periodic magnetic polymers, which are final targets in this series of papers. It is shown that neutral polyradicals with an m-phenylene bridge are predicted as high-spin ground-state molecules by the computations, while m-phenylene-bridged ion-radical species formed by doping may have the low-spin ground states if zwitterionic configurations play significant roles to stabilize low-spin states. Ab initio computations also show an important role of conformations of polyradicals for stabilization of their high-spin states. The computational results are applied to molecular design of high-spin dendrimers and polymers. Implications of them are also discussed in relation to recent experimental results for high-spin organic molecules.
机译:由间亚苯基桥连的有机基团组成的多基团是有机铁磁体的基本组成部分,其中基团在苯环的间位相互连接,并且基团位点之间的平行自旋构型更稳定比反平行的自旋排列的拓扑规则使我们能够通过将各种自由基物种通过间亚苯基单元连接起来,设计具有铁磁基态的有机高自旋树枝状聚合物和聚合物。然而,到目前为止,还没有报道对这种自旋树枝状大分子和磁性聚合物进行从头开始的处理,尽管在过去的十年中已经对这些材料进行了广泛的实验研究。作为研究铁磁树枝状聚合物和由带有有机自由基的间苯撑单元构成的聚合物的第一步,我们报告了六个具有自由基取代基的间苯撑双自由基单元和与间苯撑甲基连接的聚碳烯的密度泛函和分子轨道计算。类型网络。通过阐明BLYP或B3LYP和Hartree-Fock计算,估计了自旋态与自旋密度种群之间的相对稳定性,以阐明它们在大型自旋二聚体和周期磁性聚合物的结构中的实用性,这是本系列论文的最终目标。通过计算表明,具有间苯撑桥的中性多自由基被计算为高自旋基态分子,而通过掺杂形成的间苯撑桥联的离子自由基物质如果具有两性离子构型,则可能具有低自旋基态。在稳定低旋转状态方面起着重要作用。从头算起也显示出多基构象对于稳定其高自旋态起着重要作用。计算结果应用于高纺树枝状聚合物和聚合物的分子设计。还针对高旋转有机分子的最新实验结果讨论了它们的含义。

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