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Computational screening of structural and compositional factors for electrically conductive coordination polymers

机译:用于导电配位聚合物的结构和组成因子的计算筛选

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The combination of organic and inorganic chemical building blocks to form metal-organic frameworks (MOFs) offers opportunities for producing functional materials suitable for energy generation, storage and conversion. However, such applications rely on robust electron transport and the design of conductive hybrid materials is still in its infancy. Here we apply density functional theory to assess the important structural and compositional factors for forming conducting MOFs. We focus on 1D metal-organic polymers as a model system and assess the choice of organic, inorganic and linking units. The results demonstrate that electronic communication is sensitive to the energy and symmetry of the frontier orbi-tals associated with the organic and inorganic building blocks and offers guidance on how to optimise electrical conduction in hybrid materials.
机译:有机和无机化学积木的组合形成金属 - 有机框架(MOFS)为生产适合能量产生,储存和转换的功能材料提供机会。 然而,这种应用依赖于强大的电子传输和导电混合材料的设计仍处于初期。 在这里,我们应用密度泛函理论以评估形成导电MOF的重要结构和组成因子。 我们将专注于1D金属 - 有机聚合物作为模型系统,并评估有机,无机和连接单元的选择。 结果表明,电子通信对与有机和无机构建块相关联的前沿的能量和对称性敏感,并提供有关如何优化混合材料中的电导的指导。

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