论文标题

极性金属有机框架薄膜的静电设计

Electrostatic design of polar metal-organic framework thin films

论文作者

Nascimbeni, Giulia, Wöll, Christof, Zojer, Egbert

论文摘要

近年来,金属有机框架(MOF)的光学和电子特性越来越多地转移到了科学界的关注焦点。在这里,我们讨论了一种通过静电设计来方便地调整这些属性的策略。更具体地说,基于量子力学模拟,我们建议一种在利用集体静电效应的MOF薄膜中产生静电势梯度的方法。在极地顶点接头的合适方向下,产生的非中心填料会导致边境电子状态的能量楼梯,让人联想到销钉中的情况。静电电势的1D梯度会导致全局能隙的封闭,并通过等于原始带隙的大小的能量来移动核心水平的能量。这种组件的实现可以基于所谓的柱状层MOF,该层是在使用层生长技术的固体基板上以定向的方式生长的。在这种情况下,模拟提供了有关极性顶点连接器分子设计的指南,这些指南将允许使用指向相同方向的(绝大多数)分子偶极矩实现MOF薄膜。

In recent years, optical and electronic properties of metal-organic frameworks (MOFs) have increasingly shifted into the focus of interest of the scientific community. Here, we discuss a strategy for conveniently tuning these properties through electrostatic design. More specifically, based on quantum-mechanical simulations, we suggest an approach for creating a gradient of the electrostatic potential within a MOF thin film exploiting collective electrostatic effects. With a suitable orientation of the polar apical linkers, the resulting non-centrosymmetric packing results in an energy staircase of the frontier electronic states reminiscent of the situation in a pin-photodiode. This 1-D gradient of the electrostatic potential causes a closure of the global energy gap and also shifts core-level energies by an energy equaling the size of the original band gap. The realization of such assemblies could be based on so-called pillared layer MOFs, grown in an oriented fashion on a solid substrate employing layer by layer growth techniques. In this context, the simulations provide guidelines regarding the design of the polar apical linker molecules that would allow the realization of MOF thin films with the (vast majority of the) molecular dipole moments pointing in the same direction.

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