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通过同时替换配体来在纳米粒子和 MOFs 之间创建对齐的界面。

Creating an Aligned Interface between Nanoparticles and MOFs by Concurrent Replacement of Capping Agents.

机构信息

Department of Chemistry, Merkert Chemistry Center, Boston College, Chestnut Hill, Massachusetts 02467, United States.

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

出版信息

J Am Chem Soc. 2021 Apr 7;143(13):5182-5190. doi: 10.1021/jacs.1c01357. Epub 2021 Mar 29.

Abstract

Applying metal-organic frameworks (MOFs) on the surface of other materials to form multifunctional materials has recently attracted great attention; however, directing the MOF overgrowth is challenging due to the orders of magnitude differences in structural dimensions. In this work, we developed a universal strategy to mediate MOF growth on the surface of metal nanoparticles (NPs), by taking advantage of the dynamic nature of weakly adsorbed capping agents. During this colloidal process, the capping agents gradually dissociate from the metal surface, replaced by the MOF. The MOF grows to generate a well-defined NP-MOF interface without a trapped capping agent, resulting in a uniform core-shell structure of one NP encapsulated in one single-crystalline MOF nanocrystal with specific facet alignment. The concept was demonstrated by coating ZIF-8 and UiO-66-type MOFs on shaped metal NPs capped by cetyltrimethylammonium surfactants, and the formation of the well-defined NP-MOF interface was monitored by spectroscopies. The defined interface outperforms ill-defined ones generated via conventional methods, displaying a high selectivity to unsaturated alcohols for the hydrogenation of an α,β-unsaturated aldehyde. This strategy opens a new route to create aligned interfaces between materials with vastly different structural dimensions.

摘要

将金属-有机骨架(MOFs)应用于其他材料的表面以形成多功能材料最近引起了极大的关注;然而,由于结构尺寸的数量级差异,指导 MOF 的过度生长具有挑战性。在这项工作中,我们利用弱吸附封端剂的动态特性,开发了一种通用策略来调节 MOF 在金属纳米颗粒(NPs)表面的生长。在这个胶体过程中,封端剂逐渐从金属表面解离,被 MOF 取代。MOF 生长生成具有明确 NP-MOF 界面的无捕获封端剂,从而产生一个单一晶态 MOF 纳米晶体封装的一个 NP 的均匀核壳结构,具有特定的面取向。该概念通过在由十六烷基三甲基溴化铵表面活性剂封端的成型金属 NPs 上包覆 ZIF-8 和 UiO-66 型 MOFs 得到证明,并通过光谱法监测明确的 NP-MOF 界面的形成。与通过传统方法生成的不明确界面相比,明确的界面表现出对不饱和醇的高选择性,用于α,β-不饱和醛的加氢。该策略为在具有巨大结构尺寸差异的材料之间创建对准界面开辟了一条新途径。

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