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Diradicals acting through diamagnetic phenylene vinylene bridges: Raman spectroscopy as a probe to characterize spin delocalization

机译:通过反磁性亚苯基亚乙烯基桥作用的双自由基:拉曼光谱作为表征自旋离域的探针

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摘要

We present a complete Raman spectroscopic study in two structurally well-defined diradical species of different lengths incorporating oligo p-phenylene vinylene bridges between two polychlorinated triphenylmethyl radical units, a disposition that allows sizeable conjugation between the two radicals through and with the bridge. The spectroscopic data are interpreted and supported by quantum chemical calculations. We focus the attention on the Raman frequency changes, interpretable in terms of: (i) bridge length (conjugation length); (ii) bridge conformational structure; and (iii) electronic coupling between the terminal radical units with the bridge and through the bridge, which could delineate through-bond spin polarization, or spin delocalization. These items are addressed by using the “oligomer approach” in conjunction with pressure and temperature dependent Raman spectroscopic data. In summary, we have attempted to translate the well-known strategy to study the electron (charge) structure of π?conjugated molecules by Raman spectroscopy to the case of electron (spin) interactions via the spin delocalization mechanism.
机译:我们提供了一个完整的拉曼光谱研究,研究了两个不同长度的结构明确定义的双自由基物种,在两个多氯代三苯甲基自由基单元之间结合了低聚对亚苯基亚乙烯基桥,这种结构允许两个自由基通过并与桥发生较大的共轭。光谱数据由量子化学计算解释和支持。我们将注意力集中在拉曼频率变化上,可以用以下方式解释:(i)桥的长度(共轭长度); (ii)桥构型结构; (iii)末端自由基单元与桥之间以及通过桥之间的电子耦合,其可以描绘通过键的自旋极化或自旋离域。通过使用“低聚物方法”以及与压力和温度有关的拉曼光谱数据,可以解决这些问题。总之,我们试图将通过拉曼光谱研究ππ共轭分子的电子(电荷)结构的公知策略转化为通过自旋离域机制进行电子(自旋)相互作用的情况。

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