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首页> 外文期刊>Chemistry: A European journal >Pyrazolate-based cobalt(II)-containing metal-organic frameworks in heterogeneous catalytic oxidation reactions: Elucidating the role of entatic states for biomimetic oxidation processes
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Pyrazolate-based cobalt(II)-containing metal-organic frameworks in heterogeneous catalytic oxidation reactions: Elucidating the role of entatic states for biomimetic oxidation processes

机译:非均相催化氧化反应中基于吡唑酸酯的含钴(II)金属-有机骨架:阐明了焓态在仿生氧化过程中的作用

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摘要

Crystal structures of two metal-organic frameworks (MFU-1 and MFU-2) are presented, both of which contain redox-active CoII centres coordinated by linear 1,4-bis[(3,5-dimethyl)pyrazol-4-yl] ligands. In contrast to many MOFs reported previously, these compounds show excellent stability against hydrolytic decomposition. Catalytic turnover is achieved in oxidation reactions by employing tert-butyl hydroperoxide and the solid catalysts are easily recovered from the reaction mixture. Whereas heterogeneous catalysis is unambiguously demonstrated for MFU~(-1), MFU~(-2) shows catalytic activity due to slow metal leaching, emphasising the need for a deeper understanding of structure-reactivity relationships in the future design of redox-active metal-organic frameworks. Mechanistic details for oxidation reactions employing tert-butyl hydroperoxide are studied by UV/Vis and IR spectroscopy and XRPD measurements. The catalytic process accompanying changes of redox states and structural changes were investigated by means of cobalt K-edge X-ray absorption spectroscopy. To probe the putative binding modes of molecular oxygen, the isosteric heats of adsorption of O_2 were determined and compared with models from DFT calculations. The stabilities of the frameworks in an oxygen atmosphere as a reactive gas were examined by temperature-programmed oxidation (TPO). Solution impregnation of MFU-1 with a co-catalyst (N-hydroxyphthalimide) led to NHPI@MFU~(-1), which oxidised a range of organic substrates under ambient conditions by employing molecular oxygen from air. The catalytic reaction involved a biomimetic reaction cascade based on free radicals. The concept of an entatic state of the cobalt centres is proposed and its relevance for sustained catalytic activity is briefly discussed.
机译:介绍了两个金属有机骨架(MFU-1和MFU-2)的晶体结构,它们都包含由线性1,4-双[(3,5-二甲基)吡唑-4-基协调的氧化还原活性CoII中心。 ]配体。与以前报道的许多MOF相比,这些化合物显示出出色的抗水解分解稳定性。通过使用叔丁基氢过氧化物在氧化反应中实现催化转化,并且容易从反应混合物中回收固体催化剂。尽管明确证明了MFU〜(-1)的非均相催化作用,但MFU〜(-2)由于缓慢的金属浸出而显示出催化活性,强调在未来的氧化还原活性金属设计中需要更深入地了解结构反应性关系-有机框架。通过UV / Vis和IR光谱以及XRPD测量研究了使用叔丁基过氧化氢的氧化反应的机理细节。通过钴K-边缘X射线吸收光谱法研究了伴随氧化还原态变化和结构变化的催化过程。为了探测分子氧的假定结合模式,确定了O_2的等规吸附热,并将其与DFT计算模型进行了比较。通过程序升温氧化(TPO)检查了框架在氧气气氛中作为反应气体的稳定性。用助催化剂(N-羟基邻苯二甲酰亚胺)对MFU-1进行溶液浸渍会产生NHPI @ MFU〜(-1),它在环境条件下通过利用空气中的分子氧来氧化一系列有机底物。催化反应涉及基于自由基的仿生反应级联。提出了钴中心的焓态的概念,并简要讨论了其与持续催化活性的相关性。

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