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首页> 外文期刊>Angewandte Chemie >Conformationally Flexible Bis(9-fluorenylidene)porphyrin Diradicaloids
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Conformationally Flexible Bis(9-fluorenylidene)porphyrin Diradicaloids

机译:构象柔性BIS(9-芴基)卟啉Diradicoids

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摘要

A stable 5,10-bis(9-fluorenylidene)porphyrin (Por-Fl) diradicaloid was synthesized. It shows a quinoidal, saddle-shaped geometry in the single crystal but can be thermally populated to a triplet diradical both in solution and in the solid state. Coordination with the Ni2+ ion (Por-Fl-Ni) does not significantly change the contorted conformation but reduces the singlet-triplet gap. Heat-induced geometric change can explain the observed paramagnetic properties as well as unusual hysteresis in SQUID measurements. On the other hand, protonation (Por-Fl-2H(+)) dramatically changes the conformation while maintains the closed-shell electronic structure. Our studies demonstrate how heat, coordination, and protonation affect the geometry, diradical character, and physical properties of conformationally flexible open-shell singlet diradicaloids.
机译:合成稳定的5,10-双(9-芴基)卟啉(POR-FL)Diradical opid。 它显示单晶中的Quinoid,鞍形几何形状,但可以在溶液和固态中热填充到Dradical的三重态。 与Ni2 +离子(POR-FL-NI)的协调不会显着改变扭曲的构象,但减少了单态三态间隙。 热引起的几何变化可以解释观察到的顺磁性特性以及鱿鱼测量中的异常滞后。 另一方面,质子化(POR-FL-2H(+))显着地改变了构象,同时保持封闭壳体电子结构。 我们的研究表明了热,协调和质子化如何影响构型柔性开壳单态曲面的几何形状,Diradical和物理性质。

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