Leidos, Inc., Edgewood Chemical Biological Center , P.O. Box 68, Aberdeen Proving Ground, Maryland 21010, United States.
Edgewood Chemical Biological Center, U.S. Army Research, Development, and Engineering Command , 5183 Blackhawk Road, Aberdeen Proving Ground, Maryland 21010, United States.
ACS Appl Mater Interfaces. 2017 Jun 28;9(25):21579-21585. doi: 10.1021/acsami.7b06274. Epub 2017 Jun 19.
Metal-organic frameworks (MOFs) are versatile materials highly regarded for their porous nature. Depending on the synthetic method, various guest molecules may remain in the pores or can be systematically loaded for various reasons. Herein, we present a study that explores the effect of guest molecules on the adsorption and reactivity of the MOF in both the gas phase and solution. The differences between guest molecule interactions and the subsequent effects on their activity are described for each system. Interestingly, different effects are observed and described in detail for each class of guest molecules studied. We determine that there is a strong effect of alcohols with the secondary building unit of UiO MOFs, while Lewis bases have an effect on the reactivity of the -NH group in UiO-66-NH and adsorption by the coordinatively unsaturated copper sites in HKUST-1. These effects must be considered when determining synthesis and activation methods of MOFs toward various applications.
金属-有机骨架(MOFs)是一种用途广泛的材料,因其多孔性而备受关注。根据合成方法的不同,各种客体分子可能会留在孔中,或者出于各种原因被系统地装入。在本文中,我们研究了客体分子对 MOF 在气相和溶液中的吸附和反应性的影响。描述了每个体系中客体分子相互作用的差异及其对其活性的后续影响。有趣的是,对于所研究的每一类客体分子,都观察到并详细描述了不同的影响。我们确定,醇类与 UiO MOFs 的次级构筑单元之间存在强烈的相互作用,而路易斯碱则对 UiO-66-NH 中的-NH 基团的反应性和 HKUST-1 中配位不饱和铜位的吸附有影响。在确定 MOFs 针对各种应用的合成和活化方法时,必须考虑这些影响。