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A high-spin ground-state donor-acceptor conjugated polymer

机译:高旋转基态供体-受体共轭聚合物

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Interest in high-spin organic materials is driven by opportunities to enable far-reaching fundamental science and develop technologies that integrate light element spin, magnetic, and quantum functionalities. Although extensively studied, the intrinsic instability of these materials complicates synthesis and precludes an understanding of how fundamental properties associated with the nature of the chemical bond and electron pairing in organic materials systems manifest in practical applications. Here, we demonstrate a conjugated polymer semiconductor, based on alternating cyclopentadithiophene and thiadiazoloquinoxaline units, that is a ground-state triplet in its neutral form. Electron paramagnetic resonance and magnetic susceptibility measurements are consistent with a high-to-low spin energy gap of 9.30 × 10sup?3/sup kcal molsup?1/sup. The strongly correlated electronic structure, very narrow bandgap, intramolecular ferromagnetic coupling, high electrical conductivity, solution processability, and robust stability open access to a broad variety of technologically relevant applications once thought of as beyond the current scope of organic semiconductors.
机译:人们对高旋转有机材料的兴趣受到了实现深远基础科学和开发整合轻元素自旋,磁性和量子功能的技术的机会的推动。尽管已进行了广泛研究,但这些材料的内在不稳定性使合成变得复杂,并且使人们无法理解与有机材料系统中化学键和电子对的性质相关的基本性能在实际应用中如何体现出来。在这里,我们展示了基于交替的环戊二噻吩和噻二唑并喹喔啉单元的共轭聚合物半导体,它是中性形式的基态三重态。电子顺磁共振和磁化率测量值与9.30×10 ?3 kcal mol ?1 的高至低自旋能隙一致。高度相关的电子结构,非常窄的带隙,分子内铁磁耦合,高电导率,溶液可加工性以及坚固的稳定性,使人们一度被认为超出了有机半导体的当前应用范围,从而获得了广泛的技术相关应用。

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