Ba/Ti MOF: A Versatile Heterogeneous Photoredox Catalyst for Visible‐Light Metallaphotocatalysis

催化作用 材料科学 光催化 光催化 金属有机骨架 多相催化 纳米技术 背景(考古学) 有机化学 化学 古生物学 吸附 生物
作者
Krishnamoorthy Muralirajan,Il Son Khan,Luis Garzón‐Tovar,Rajesh Kancherla,Nikita Kolobov,Alla Dikhtiarenko,Maram Almalki,Aleksander Shkurenko,Alejandra Rendón‐Patiño,Vincent Guillerm,Khoa N. Le,Genrikh Shterk,Huabin Zhang,Christopher H. Hendon,Mohamed Eddaoudi,Jorge Gascón,Magnus Rueping
出处
期刊:Advanced Materials [Wiley]
标识
DOI:10.1002/adma.202405646
摘要

Abstract The field of sustainable heterogeneous catalysis is evolving rapidly, with a strong emphasis on developing catalysts that enhance efficiency. Among various heterogeneous photocatalysts, metal‐organic frameworks (MOFs) have gained significant attention for their exceptional performance in photocatalytic reactions. In this context, contrary to the conventional homogeneous iridium or ruthenium‐based photocatalysts, which face significant challenges in terms of availability, cost, scalability, and recyclability, a new Ba/Ti MOF ( ACM‐4 ) is developed as a heterogeneous catalyst that can mimic/outperform the conventional photocatalysts, offering a more sustainable solution for efficient chemical processes. Its redox potential and triplet energy are comparable to or higher than the conventional catalysts, organic dyes, and metal semiconductors, enabling its use in both electron transfer and energy transfer applications. It facilitates a broad range of coupling reactions involving pharmaceuticals, agrochemicals, and natural products, and is compatible with various transition metals such as nickel, copper, cobalt, and palladium as co‐catalysts. The effectiveness of the ACM‐4 as a photocatalyst is supported by comprehensive material studies, photophysical, and recycling experiments. These significant findings underscore the potential of ACM‐4 as a highly versatile and cost‐effective photoredox catalyst, providing a sustainable, one‐material solution for efficient chemical processes.
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