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On/off switchable electronic conduction in intercalated metal-organic frameworks

机译:插层式金属有机框架中的开/关可切换电子传导

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摘要

The electrical properties of metal-organic frameworks (MOF) have attracted attention for MOF as electronic materials. We report on/off switchable electronic conduction behavior with thermal responsiveness in intercalated MOF (iMOF) with layered structure, 2,6-naphthalene dicarboxylate dilithium, which was previously reported as a reversible Li-intercalation electrode material. The I-V response of the intercalated sample, which was prepared using a chemically reductive lithiation agent, exhibits current flow with sufficiently high electronic conductivity, even though it displays insulating characteristics in the pristine state. Calculations of band structure and electron hopping conduction indicate that electronic conduction occurs in the two-dimensional π-stacking naphthalene layers when the band gap is decreased to 0.99 eV and because of the formation of an anisotropic electron hopping conduction pathway by Li intercalation. The structure exhibiting electronic conductivity remains stable up to 200°C and reverts to an insulating structure, without collapsing, at 400°C, offering the potential for a shutdown switch for battery safety during thermal runaway or for heat-responsive on/off switching electronic devices.
机译:金属有机骨架(MOF)的电学性质已吸引了MOF作为电子材料的注意。我们报告了具有分层结构的2,6-萘二甲酸二锂二嵌层插层MOF(iMOF)中具有热响应性的开/关可切换电子传导行为,该结构以前被报道为可逆的锂插层电极材料。使用化学还原锂化剂制备的插层样品的I-V响应显示出具有足够高电子传导性的电流,即使它在原始状态下也表现出绝缘特性。能带结构和电子跳跃传导的计算表明,当带隙减小到0.99 eV时,并且由于Li插入形成了各向异性的电子跳跃传导路径,因此在二维π堆叠的萘层中发生了电子传导。表现出电子导电性的结构在200°C时仍保持稳定,并在400°C时恢复为绝缘结构而不会塌陷,为热失控期间的电池安全性或热响应性开/关电子开关提供了关断开关的潜力。设备。

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