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铱络合联吡啶-哒嗪有机硅作为水氧化催化剂

Iridium-Complexed Dipyridyl-Pyridazine Organosilica as a Catalyst for Water Oxidation.

作者信息

Rojas-Luna Raúl, Amaro-Gahete Juan, Jiménez-Sanchidrián César, Ruiz José Rafael, Esquivel Dolores, Romero-Salguero Francisco José

机构信息

Departamento de Química Orgánica, Instituto Químico para la Energía y el Medioambiente (IQUEMA), Facultad de Ciencias, Universidad de Córdoba, Campus de Rabanales, Edificio Marie Curie, E-14071 Córdoba, Spain.

出版信息

Inorg Chem. 2023 Jul 31;62(30):11954-11965. doi: 10.1021/acs.inorgchem.3c01386. Epub 2023 Jul 17.

Abstract

The heterogenization of metal-complex catalysts to be applied in water oxidation reactions is a currently growing field of great scientific impact for the development of energy conversion devices simulating the natural photosynthesis process. The attachment of IrCp*Cl complexes to the dipyridyl-pyridazine N-chelating sites on the surface of SBA-15 promotes the formation of metal bipyridine-like complexes, which can act as catalytic sites in the oxidation of water to dioxygen, the key half-reaction of artificial photosynthetic systems. The efficiency of the heterogeneous catalyst, Ir@NdppzSBA, in cerium(IV)-driven water oxidation was thoroughly evaluated, achieving high catalytic activity even at a long reaction time. The reusability and stability were also examined after three reaction cycles, with a slight loss of activity. A comparison with an analogous homogeneous iridium catalyst revealed the enhanced durability and performance of the heterogeneous system based on the Ir@NdppzSBA catalyst due to the stability of the SBA-15 structure as well as the isolated metal active sites. Thereby, this new versatile synthesis route for the preparation of water oxidation catalysts opens a new avenue for the construction of alternative heterogeneous catalytic systems with high surface area, ease of functionalization, and facile separation to improve the efficiency in the water oxidation reaction.

摘要

应用于水氧化反应的金属络合物催化剂的多相化是当前一个不断发展的领域,对模拟自然光合作用过程的能量转换装置的开发具有重大的科学影响。将IrCp*Cl络合物附着到SBA-15表面的二吡啶基哒嗪N-螯合位点上,促进了类金属联吡啶络合物的形成,这些络合物可作为水氧化为双氧的催化位点,这是人工光合系统的关键半反应。对非均相催化剂Ir@NdppzSBA在铈(IV)驱动的水氧化反应中的效率进行了全面评估,即使在长时间反应时也能实现高催化活性。在三个反应循环后还检查了其可重复使用性和稳定性,活性略有损失。与类似的均相铱催化剂进行比较发现,由于SBA-15结构的稳定性以及孤立的金属活性位点,基于Ir@NdppzSBA催化剂的非均相体系具有更高的耐久性和性能。因此,这种制备水氧化催化剂的新型通用合成路线为构建具有高表面积、易于功能化和便于分离的替代非均相催化体系开辟了一条新途径,以提高水氧化反应的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7e3/10394666/74c3da010dfb/ic3c01386_0009.jpg

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