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Sign reversal of magneto-capacitance in an organic heterojunction based opto-spintronic system

机译:在有机异质结基光旋转系统中签署磁电容的逆转

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Magneto-capacitance is a unique characteristic in organic semiconductors without involving ferromagnetism and ferroelectricity due to some purely spin-related dynamic processes. In this work, we report a remarkably magneto-capacitive effect (~0.8%) in an organic opto-spintronic device comprising an NPB ( N , N ′-bis(naphthalene-1-yl)- N , N ′-bis(phenyl)benzidine)/C _(60) heterojunction at excited states in ambient temperature. We have found that it is possible to achieve both positive and negative magneto-capacitance for such a device at different field strengths upon photo-excitation and ac-electric field modulation. Owing to the largely imbalanced charge carrier mobilities of NPB and C _(60) ; and, based on our theoretical fittings by the empirical Lorentzian formula, the effect can be attributed to the competition between the spin-dependent dissociation and bi-molecular recombination mechanisms at different field strengths under ac-frequency modulation and different illumination intensities. We believe a complete understanding of such an effect may shed a new light on the wide applications of the organic heterojunction based organic opto-spintronic system.
机译:磁电容是有机半导体的独特特征,而不会涉及铁磁性和铁电,因为一些纯粹的旋转相关的动态过程。在这项工作中,我们在包含NPB(N,N'-BIS(萘-1-基) - N,N'(苯基)苯并甘油)/ c _(60)在环境温度下激发态的异质结。我们已经发现,在光励磁和交流电场调制时,可以在不同场强的这种装置实现正磁电容。由于NPB和C _(60)的大量不平衡的电荷载体迁移率;并且,基于经验洛伦兹公式的理论配件,效果可归因于分流依赖性解离和双分子重组机制在交流调节和不同的照明强度下的不同场强的竞争。我们相信对这种效果的完全理解可能会在有机异质结基的有机光学旋转系统的广泛应用上揭示新的光线。

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