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铁镍卟啉/介孔二氧化钛薄膜电极:一种用于光电催化的受生物启发的纳米结构。

Fe-Ni porphyrin/mesoporous titania thin film electrodes: a bioinspired nanoarchitecture for photoelectrocatalysis.

作者信息

Herrera Facundo C, Caraballo Rolando M, Vensaus Priscila, Soler Illia Galo J A A, Hamer Mariana

机构信息

Instituto de Nanosistemas, Escuela de Bio y Nanotecnología, Universidad Nacional de General San Martín (INS-UNSAM)-CONICET 1650 San Martín Argentina.

Laboratorio Argentino Haces de Neutrones-CNEA Av. Gral. Paz 1499 Villa Maipú Argentina.

出版信息

RSC Adv. 2024 May 15;14(23):15832-15839. doi: 10.1039/d3ra08047a.

Abstract

Porphyrin and porphyrinoid derivatives have been extensively studied in the assembly of catalysts and sensors, seeking biomimetic and bioinspired activity. In particular, Fe and Ni porphyrins can be used for the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) by immobilization of these molecular catalysts on semiconductor materials. In this study, we designed a hybrid material containing a crystalline mesoporous TiO thin film in which the catalytic centres are Ni-porphyrin (NiP), Fe-porphyrin (FeP), and a NiP/FeP bimetallic system to assess whether the coexistence of both metalloporphyrins improves the OER activity. The obtained photoelectrodes were physicochemically and morphologically characterized through high-resolution FE-SEM images, UV-vis and Raman spectroscopies, cyclic voltammetry, and impedance measurements. The results show a differential behavior of the mono- and bimetallic porphyrin systems, where the Fe(iii) centre in FeP may increase the acidity and lower the reduction potential of the Ni couple when co-deposited with NiP leading to an improved photoelectrochemical water-oxidation performance. We have validated the cooperative effect of both metal complexes within this novel system, where the μ-peroxo-bridged interaction between Fe and Ni is integrated into a supramolecular heterometallic structure of porphyrins.

摘要

卟啉及卟啉类衍生物在催化剂和传感器的组装方面已得到广泛研究,旨在寻求仿生和受生物启发的活性。特别是,通过将这些分子催化剂固定在半导体材料上,铁卟啉和镍卟啉可用于析氢反应(HER)和析氧反应(OER)。在本研究中,我们设计了一种包含结晶介孔TiO薄膜的混合材料,其中催化中心为镍卟啉(NiP)、铁卟啉(FeP)以及NiP/FeP双金属体系,以评估两种金属卟啉的共存是否能提高OER活性。通过高分辨率场发射扫描电子显微镜(FE-SEM)图像、紫外-可见光谱和拉曼光谱、循环伏安法以及阻抗测量对所制备的光电极进行了物理化学和形态表征。结果表明单金属和双金属卟啉体系表现出不同的行为,当FeP中的Fe(III)中心与NiP共沉积时,可能会增加酸度并降低Ni电对的还原电位,从而导致光电化学水氧化性能得到改善。我们已经验证了在这个新型体系中两种金属配合物的协同效应,其中Fe和Ni之间的μ-过氧桥连相互作用整合到了卟啉的超分子异金属结构中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1db/11095088/094f5c72080c/d3ra08047a-f1.jpg

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