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Redox and photocatalytic properties of a NiII complex with a macrocyclic biquinazoline (Mabiq) ligand

机译:具有大环联喹唑啉(Mabiq)配体的NiII配合物的氧化还原和光催化性能

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摘要

We present a late, first row transition metal photosensitizer that promotes photocatalytic C–C bond formation. The title compound, [Ni(Mabiq)]OTf, as well as its one-electron reduced form, Ni(Mabiq), were synthesized and molecular structures of both were obtained. The electronic structure of the reduced complex additionally was characterized by spectroscopic and DFT computational methods. Notably, [NiII(Mabiq)]OTf is photoactive: reduction of the compound was achieved photochemically upon irradiation at λ = 457 nm and reductive quenching by NEt3. The performance of [Ni(Mabiq)]OTf as a photoredox catalyst was examined in the cyclization of a bromoalkyl-substituted indole. In this reaction, the first-row transition metal compound is comparable if not superior to [Ru(bpy)3]2+ in terms of efficiency (turnover number) and chemoselectivity. Studies using a series of sacrificial donor amines indicate that the excited state redox potential of [Ni(Mabiq)]+* is ≥1.25 V vs. SCE. This value is similar to the excited state potential of commonly employed noble metal based photocatalysts. The Ni-Mabiq compound thus provides a rare example of an earth-abundant photoredox catalyst.
机译:我们介绍了一种晚期的第一行过渡金属光敏剂,它可以促进光催化C–C键的形成。合成了标题化合物[Ni(Mabiq)] OTf及其单电子还原形式Ni(Mabiq),并获得了两者的分子结构。还原配合物的电子结构还通过光谱和DFT计算方法表征。值得注意的是,[Ni II (Mabiq)] OTf具有光活性:化合物的还原是通过在λ= 457 nm处进行辐照并通过NEt3进行的淬灭反应而实现的。在溴烷基取代的吲哚的环化反应中研究了[Ni(Mabiq)] OTf作为光氧化还原催化剂的性能。在该反应中,就效率(周转数)和化学选择性而言,第一行过渡金属化合物即使不优于[Ru(bpy)3] 2 + 也是可比的。使用一系列牺牲供体胺进行的研究表明[Ni(Mabiq)] + *的激发态氧化还原电势相对于SCE≥1.25V。该值类似于常用的贵金属基光催化剂的激发态电势。因此,Ni-Mabiq化合物提供了稀土丰富的光氧化还原催化剂的罕见实例。

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