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The effect of pressure on the post-synthetic modification of a nanoporous metal-organic framework

机译:post-synthetic压力的影响改性纳米多孔有机配合框架

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摘要

Here we report four post-synthetic modifications, including the first ever example of a high pressure-induced post-synthetic modification, of a porous copper-based metal-organic framework. Ligand exchange with a water ligand at the axial metal site occurs with methanol, acetonitrile, methylamine and ethylamine within a single-crystal and without the need to expose a free metal site prior to modification, resulting in significant changes in the pore size, shape and functionality. Pressure experiments carried out using isopropylalcohol and acetaldehyde, however, results in no ligand exchange. By using these solvents as hydrostatic media for high-pressure single-crystal X-ray diffraction experiments, we have investigated the effect of ligand exchange on the stability and compressibility of the framework and demonstrate that post-synthetic ligand exchange is very sensitive to both the molecular size and functionality of the exchanged ligand. We also demonstrate the ability to force hydrophilic molecules into hydrophobic pores using high pressures which results in a pressure-induced chemical decomposition of the Cu-framework.
机译:这里我们报告四post-synthetic修改,包括高的第一个例子pressure-induced post-synthetic修改多孔铜基有机框架。水在轴向配体配位体交换金属网站发生甲醇,乙腈,甲胺和氨基乙烷单晶,而不需要公开免费金属网站修改之前,产生的显著变化的孔隙大小、形状和功能。使用isopropylalcohol乙醛,然而,结果没有配体交换。这些溶剂为静压媒体高压单晶x射线衍射实验中,我们调查的影响在稳定性和配位体交换框架的压缩性和演示post-synthetic配体交换非常对分子大小和敏感配位体交换的功能。证明力亲水的能力使用高分子疏水毛孔压力导致pressure-inducedCu-framework的化学分解。

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