Pahar Suraj, Maayan Galia
Schulich Faculty of Chemistry, Technion-Israel Institute of Technology Technion City Haifa 3200008 Israel
Chem Sci. 2024 Jul 17;15(32):12928-12938. doi: 10.1039/d4sc01182a. eCollection 2024 Aug 14.
Water electrolysis is the simplest way to produce hydrogen, as a clean renewable fuel. However, the high overpotential and slow kinetics hamper its applicability. Designing efficient and stable electrocatalysts for water oxidation (WO), which is the first and limiting step of the water splitting process, can overcome this limitation. However, the development of such catalysts based on non-precious metal ions is still challenging. Herein we describe a bio-inspired Co(iii)-based complex , a stable and efficient molecular electrocatalyst for WO, constructed from a peptidomimetic oligomer called peptoid - -substituted glycine oligomer - bearing two binding ligands, terpyridine and bipyridine, and one ethanolic group as a proton shuttler. Upon binding of a cobalt ion, this peptoid forms an intramolecular Co(iii) complex, that acts as an efficient electrocatalyst for homogeneous WO in aqueous phosphate buffer at pH 7 with a high faradaic efficiency of up to 92% at an overpotential of about 430 mV, which is the lowest reported for Co-based homogeneous WO electrocatalysts to date. We demonstrated the high stability of the complex during electrocatalytic WO and that the ethanolic side chain plays a key role in the stability and activity of the complex and also in facilitating water binding, thus mimicking an enzymatic second coordination sphere.
水电解是生产氢气(一种清洁的可再生燃料)的最简单方法。然而,高过电位和缓慢的动力学阻碍了其应用。设计用于水氧化(WO)的高效稳定电催化剂,这是水分解过程的第一步也是限制步骤,可以克服这一限制。然而,开发基于非贵金属离子的此类催化剂仍然具有挑战性。在此,我们描述了一种受生物启发的基于Co(III)的配合物,它是一种用于WO的稳定且高效的分子电催化剂,由一种名为类肽(肽模拟低聚物——取代甘氨酸低聚物)构建而成,带有两个结合配体,即三联吡啶和联吡啶,以及一个乙醇基团作为质子穿梭体。在钴离子结合后,这种类肽形成一种分子内Co(III)配合物,它在pH为7的磷酸盐水溶液中作为均相WO的高效电催化剂,在约430 mV的过电位下具有高达92%的高法拉第效率,这是迄今为止基于Co的均相WO电催化剂所报道的最低值。我们证明了该配合物在电催化WO过程中的高稳定性,并且乙醇侧链在配合物的稳定性和活性以及促进水结合方面起着关键作用,从而模拟了酶的第二配位层。