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Exploiting parameter space in MOFs: a 20-fold enhancement of phosphate-ester hydrolysis with UiO-66-NH2

机译:利用MOF中的参数空间:使用UiO-66-NH2将磷酸酯水解提高20倍

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摘要

The hydrolysis of nerve agents is of primary concern due to the severe toxicity of these agents. Using a MOF-based catalyst (UiO-66), we have previously demonstrated that the hydrolysis can occur with relatively fast half-lives of 50 minutes. However, these rates are still prohibitively slow to be efficiently utilized for some practical applications (e.g., decontamination wipes used to clean exposed clothing/skin/vehicles). We thus turned our attention to derivatives of UiO-66 in order to probe the importance of functional groups on the hydrolysis rate. Three UiO-66 derivatives were explored; UiO-66-NO2 and UiO-66-(OH)2 showed little to no change in hydrolysis rate. However, UiO-66-NH2 showed a 20 fold increase in hydrolysis rate over the parent UiO-66 MOF. Half-lives of 1 minute were observed with this MOF. In order to probe the role of the amino moiety, we turned our attention to UiO-67, UiO-67-NMe2 and UiO-67-NH2. In these MOFs, the amino moiety is in close proximity to the zirconium node. We observed that UiO-67-NH2 is a faster catalyst than UiO-67 and UiO-67-NMe2. We conclude that the role of the amino moiety is to act as a proton-transfer agent during the catalytic cycle and not to hydrogen bond or to form a phosphorane intermediate.
机译:由于神经毒剂的严重毒性,因此它们的水解是主要关注的问题。使用基于MOF的催化剂(UiO-66),我们先前已经证明了水解可以以50分钟的相对较快的半衰期发生。但是,这些速率仍然太慢而无法有效地用于某些实际应用(例如,用于清洁裸露的衣服/皮肤/车辆的去污抹布)。因此,我们将注意力转向了UiO-66的衍生物,以探讨官能团对水解速率的重要性。探索了三种UiO-66衍生物; UiO-66-NO2和UiO-66-(OH)2的水解速率几乎没有变化。但是,UiO-66-NH2的水解速率比母体UiO-66 MOF高20倍。用该MOF观察到1分钟的半衰期。为了探究氨基部分的作用,我们将注意力转向UiO-67,UiO-67-NMe2和UiO-67-NH2。在这些MOF中,氨基部分非常靠近锆节点。我们观察到,UiO-67-NH2是比UiO-67和UiO-67-NMe2更快的催化剂。我们得出结论,氨基部分的作用是在催化循环中充当质子转移剂,而不是氢键或形成膦烷中间体。

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