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Different acidity and additive effects of zirconium metal-organic frameworks as catalysts for cyanosilylation

机译:锆金属-有机骨架作为氰基硅烷化催化剂的不同酸度和加成作用

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The Zr(IV) metal-organic framework with 1,4-benzenedicarboxylate (UiO-66) in different forms was studied as a solid catalyst for carbonyl cyanosilylation. The anhydrous material (UiO-66-A) obtained after calcination has open Lewis-acid sites and acts as a heterogeneous and size selective catalyst for the reaction of aldehydes and trimethylsilylcyanide (TMSCN). Notably, it was found that the as-synthesized hydrous form (UiO-66-H) shows comparable activity to UiO-66-A, so UiO-66 can be used as a catalyst for cyanosilylation with no need of high-temperature activation. With a number of intentionally designed control experiments, we demonstrated that the acetic acid enclosed in UiO-66-H during synthesis serves as a Bronsted acid to promote the reaction, though acetic acid is inactive by itself. The different acidity between UiO-66-H and UiO-66-A was confirmed by using the isomerization of a-pinene oxide as a probe reaction. Both UiO-66-H and UiO-66-A are recyclable without significant degradation in framework integrity and catalytic activity. In addition, it was unexpectedly found that pyridine, which is inactive alone, acts as co-catalyst, rather than a Lewis acid poison, to dramatically accelerate the catalytic reaction over UiO-66-H or UiO-66-A. A synergistic mechanism was suggested, in which the Lewis or Bronsted acid activates the aldehyde substrate while pyridine acts as a Lewis base to activate TMSCN.
机译:研究了具有不同形式的1,4-苯二甲酸(UiO-66)的Zr(IV)金属有机骨架作为羰基氰基硅烷化反应的固体催化剂。煅烧后获得的无水材料(UiO-66-A)具有开放的Lewis酸位,并充当醛和三甲基甲硅烷基氰化物(TMSCN)反应的非均相和尺寸选择催化剂。值得注意的是,发现合成后的含水形式(UiO-66-H)具有与UiO-66-A相当的活性,因此UiO-66可以用作氰基硅烷化反应的催化剂,而无需高温活化。通过大量有意设计的控制实验,我们证明了合成过程中UiO-66-H中所含的乙酸可以作为布朗斯台德酸来促进反应,尽管乙酸本身是无活性的。通过使用α-pine烯氧化物的异构化作为探针反应,确认了UiO-66-H和UiO-66-A之间的酸度不同。 UiO-66-H和UiO-66-A都是可回收的,且框架完整性和催化活性没有明显降低。此外,出乎意料地发现,单独不活泼的吡啶起助催化剂而不是路易斯酸毒物的作用,大大加速了UiO-66-H或UiO-66-A的催化反应。提出了一种协同机制,其中路易斯酸或布朗斯台德酸激活醛底物,而吡啶充当路易斯碱以激活TMSCN。

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