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三氯甲烷的化学作用:室温下从基于铜的金属有机骨架中开放金属位点去除配位溶剂。

A Chemical Role for Trichloromethane: Room-Temperature Removal of Coordinated Solvents from Open Metal Sites in the Copper-Based Metal-Organic Frameworks.

机构信息

Department of Emerging Materials Science , Daegu Gyeongbuk Institute of Science & Technology (DGIST) , Daegu 42988 , Korea.

出版信息

Inorg Chem. 2018 May 7;57(9):5225-5231. doi: 10.1021/acs.inorgchem.8b00267. Epub 2018 Apr 17.

DOI:10.1021/acs.inorgchem.8b00267
PMID:29664295
Abstract

Open coordination sites (OCSs) in metal-organic frameworks (MOFs) have shown potential in applications such as molecular separation, sorption, catalysis, and sensing. Thus, the removal of coordinated solvent has been viewed as an essential step that needs to be performed prior to the use of the MOFs in the above applications. To date, a thermal method that is normally performed by applying heat and vacuum has been the most commonly employed activation method despite its negative influence on the structural integrity of the MOFs. In this report, we demonstrate that commonly inert trichloromethane (TCM) can activate OCSs; the TCM treatment process serves as an alternative chemical route to activation that does not require the external thermal energy. On the basis of the Raman study, we suggest a possible mechanism for the chemical activation process where TCM may weakly coordinate to the OCSs and then spontaneously dissociate. In addition, we prove that the chemical activation behavior is substantially boosted when a small amount of external heat energy (55 °C, 2.6 meV) is supplied during the TCM treatment. Using an HKUST-1-polyvinylidene fluoride (PVDF) mixed matrix (MM), we also demonstrate that this chemical activation strategy is a safe way to activate thermally deformable MOF-polymer mixed matrices.

摘要

开放配位位点(OCSs)在金属有机骨架(MOFs)中的应用潜力巨大,例如分子分离、吸附、催化和传感。因此,在将 MOFs 用于上述应用之前,去除配位溶剂被视为一个必要的步骤。迄今为止,尽管对 MOFs 的结构完整性有负面影响,但通常采用的热方法(即通过施加热量和真空来实现)仍然是最常用的活化方法。在本报告中,我们证明了通常惰性的三氯甲烷(TCM)可以激活 OCSs;TCM 处理过程是一种不需要外部热能的替代化学途径。基于拉曼研究,我们提出了一种化学活化过程的可能机制,其中 TCM 可能与 OCSs 弱配位,然后自发解离。此外,我们证明,在 TCM 处理过程中提供少量外部热能(55°C,2.6meV)可以显著增强化学活化行为。我们还使用 HKUST-1-聚偏二氟乙烯(PVDF)混合基质(MM)证明,这种化学活化策略是一种安全的方法,可以激活热变形 MOF-聚合物混合基质。

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