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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Tuning magnetoresistance and magnetic-field-dependent electroluminescence through mixing a strong-spin-orbital-coupling molecule and a weak-spin-orbital-coupling polymer
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Tuning magnetoresistance and magnetic-field-dependent electroluminescence through mixing a strong-spin-orbital-coupling molecule and a weak-spin-orbital-coupling polymer

机译:通过混合强自旋轨道耦合分子和弱自旋轨道耦合聚合物来调节磁阻和磁场相关的电致发光

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We report a tunable magnetoresistance by uniformly mixing strong-spin-orbital-coupling molecule fac-tris (2-phenylpyridinato) iridium [Ir(ppy)_3] and weak-spin-orbital-coupling polymer poly(N-vinyl carbazole) (PVK). Three possible mechanisms, namely charge transport distribution, energy transfer, and intermolecular spin-orbital interaction, are discussed to interpret the Ir(ppy)_3 concentration-dependent magnetoresistance in the PVK+Ir(ppy)_3 composite. The comparison between the magnetic field effects measured from energy-transfer and nonenergy-transfer Ir(ppy)_3 doped polymer composites indicates that energy transfer and intermolecular spin-orbital interaction lead to rough and fine tuning for the magnetoresistance, respectively. Furtherrnore, the photocurrent dependence of magnetic field implies that the excited states contribute to the magnetoresistance through dissociation. As a result, the modification of singlet or triplet ratio of excited states through energy transfer and intermolecular spin-orbital interaction form a mechanism to tune the magnetoresistance in organic semiconducting materials.
机译:我们通过均匀地混合强自旋轨道耦合分子fac-tris(2-苯基吡啶基)铱[Ir(ppy)_3]和弱自旋轨道耦合聚合物聚(N-乙烯基咔唑)(PVK)来调节磁阻)。讨论了三种可能的机制,即电荷传输分布,能量转移和分子间自旋轨道相互作用,以解释PVK + Ir(ppy)_3复合材料中Ir(ppy)_3浓度依赖性的磁阻。从能量转移和非能量转移Ir(ppy)_3掺杂的聚合物复合材料测量的磁场效应之间的比较表明,能量转移和分子间自旋轨道相互作用分别导致磁阻的粗调和微调。此外,磁场的光电流依赖性意味着激发态通过解离有助于磁阻。结果,通过能量转移和分子间自旋-轨道相互作用改变激发态的单重态或三重态比率形成了一种调节有机半导体材料中磁阻的机制。

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