首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Enhancement in electrical conductivity of a porous indium based metal-organic framework upon I-2 uptake: combined experimental and theoretical investigations
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Enhancement in electrical conductivity of a porous indium based metal-organic framework upon I-2 uptake: combined experimental and theoretical investigations

机译:在I-2摄取时,增强多孔铟基金属 - 有机框架的电导率:结合实验和理论研究

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To date, the direct synthesis of conductive metal-organic frameworks (C-MOFs) has been a very challenging task, which limits the applications of MOF materials in the field of electronics. In this study, we have incorporated the guest molecule (iodine) into the micropores of an indium-based MOF, which resulted in an enhancement of electrical conductivity by about a thousandfold. Optical band gap energy was lowered by similar to 58% through this I-2 uptake process. Combined experimental and theoretical studies confirmed the presence of I-2 molecules inside the pore. DFT calculations showed that the dispersive interactions between thiophenedicarboxylate linkers and I-2 facilitate to hold the I-2 unit inside the cavity and give higher binding energy, which give rise to a new pathway for charge transport.
机译:迄今为止,导电金属 - 有机框架(C-MOF)的直接合成是一个非常具有挑战性的任务,这限制了MOF材料在电子领域中的应用。 在这项研究中,我们已将客人分子(碘)纳入基于铟的MOF的微孔,这导致电导率提高了千倍。 通过该I-2摄取过程相似,光带间隙能量降低了58%。 结合的实验和理论研究证实了孔内I-2分子的存在。 DFT计算表明,噻吩二羧酸甲酯接头和I-2之间的分散相互作用有助于将I-2单元保持在腔内,并产生更高的粘合能量,这导致电荷运输的新途径。

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