Scarpetta-Pizo Laura, Venegas Ricardo, Barrías Pablo, Muñoz-Becerra Karina, Vilches-Labbé Nayareth, Mura Francisco, Méndez-Torres Ana María, Ramírez-Tagle Rodrigo, Toro-Labbé Alejandro, Hevia Samuel, Zagal José H, Oñate Rubén, Aspée Alexis, Ponce Ingrid
Departamento de Ciencias del Ambiente, Departamento Química de los Materiales, Facultad de Química y Biología, Universidad de Santiago de Chile, Av. Libertador Bernardo O'Higgins 3363, Estación Central, Santiago, Chile.
Centro Integrativo de Biología y Química Aplicada (CIBQA), Universidad Bernardo O'Higgins, General Gana 1702, Santiago, 8370854, Chile.
Angew Chem Int Ed Engl. 2024 Jan 22;63(4):e202315146. doi: 10.1002/anie.202315146. Epub 2023 Nov 22.
The chiral-induced spin selectivity effect (CISS) is a breakthrough phenomenon that has revolutionized the field of electrocatalysis. We report the first study on the electron spin-dependent electrocatalysis for the oxygen reduction reaction, ORR, using iron phthalocyanine, FePc, a well-known molecular catalyst for this reaction. The FePc complex belongs to the non-precious catalysts group, whose active site, FeN4, emulates catalytic centers of biocatalysts such as Cytochrome c. This study presents an experimental platform involving FePc self-assembled to a gold electrode surface using chiral peptides (L and D enantiomers), i.e., chiro-self-assembled FePc systems (CSAFePc). The chiral peptides behave as spin filters axial ligands of the FePc. One of the main findings is that the peptides' handedness and length in CSAFePc can optimize the kinetics and thermodynamic factors governing ORR. Moreover, the D-enantiomer promotes the highest electrocatalytic activity of FePc for ORR, shifting the onset potential up to 1.01 V vs. RHE in an alkaline medium, a potential close to the reversible potential of the O /H O couple. Therefore, this work has exciting implications for developing highly efficient and bioinspired catalysts, considering that, in biological organisms, biocatalysts that promote O reduction to water comprise L-enantiomers.
手性诱导自旋选择性效应(CISS)是一种突破性现象,它彻底改变了电催化领域。我们报道了首次使用铁酞菁(FePc)对氧还原反应(ORR)进行电子自旋依赖性电催化的研究,FePc是该反应一种著名的分子催化剂。FePc配合物属于非贵金属催化剂组,其活性位点FeN4模仿生物催化剂如细胞色素c的催化中心。本研究提出了一个实验平台,该平台涉及使用手性肽(L和D对映体)将FePc自组装到金电极表面,即手性自组装FePc系统(CSAFePc)。手性肽充当FePc的自旋过滤轴向配体。主要发现之一是CSAFePc中肽的手性和长度可以优化控制ORR的动力学和热力学因素。此外,D对映体促进FePc对ORR的最高电催化活性,在碱性介质中相对于可逆氢电极(RHE)将起始电位提高到1.01 V,该电位接近O₂/H₂O偶联的可逆电位。因此,考虑到在生物有机体中,促进O₂还原为水的生物催化剂包含L对映体,这项工作对开发高效且受生物启发的催化剂具有令人兴奋的意义。