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Hole Mobility Modulation in Single-Crystal Metal Phthalocyanines by Changing the Metal-pi/pi-pi Interactions

机译:通过改变金属-PI / PI-PI相互作用,通过改变单晶金属酞菁在单晶金属酞菁中的空穴迁移率调节

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摘要

Weak intermolecular interactions in organic semiconducting molecular crystals play an important role in determining molecular packing and electronic properties. Single crystals of metal-free and metal phthalocyanines were synthesized to investigate how the coordination of the central metal atom affects their molecular packing and resultant electronic properties. Single-crystal field-effect transistors were made and showed a hole mobility order of ZnPcMnPcFePcCoPcCuPcH2PcNiPc. Density functional theory (DFT) and 1D polaron transport theory reach a good agreement in reproducing the experimentally measured trend for hole mobility. Additional detail analysis at the DFT level suggests the metal atom coordination into H2Pc planes can tune the hole mobility via adjusting the intermolecular distances along the shortest axis with closest parallel stackings.
机译:有机半导体分子晶体中的弱分子间相互作用在确定分子包装和电子性质方面发挥着重要作用。 合成无金属和金属酞菁的单晶以研究中枢金属原子的配位如何影响其分子包装和所得的电子性质。 制造单晶场效应晶体管并显示出ZnPC&GT的空穴迁移率序列。MNPC> FEPC> COPC> CUPC> H2PC> NIPC。 密度函数理论(DFT)和1D Polaron传输理论在再现实验上测量的孔迁移率时达成了良好的一致性。 DFT级别的附加细节分析表明金属原子协调进入H2PC平面,可以通过沿着具有最近的平行堆叠的最短轴调节分子间距离来调节空穴迁移率。

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