Department of Energy Engineering, Konkuk University, 05029, 120 Neungdong-ro, Seoul, Republic of Korea.
Computational Science & Engineering Laboratory, Korea Institute of Energy Research, 34129, 152 Gajeong-ro, Yuseong-gu, Daejeon, Republic of Korea.
Adv Sci (Weinh). 2023 Jun;10(16):e2207695. doi: 10.1002/advs.202207695. Epub 2023 Mar 29.
Oxygen evolution reaction (OER) under acidic conditions becomes of significant importance for the practical use of a proton exchange membrane (PEM) water electrolyzer. In particular, maximizing the mass activity of iridium (Ir) is one of the maiden issues. Herein, the authors discover that the Ir-doped calcium copper titanate (CaCu₃Ti₄O₁₂, CCTO) perovskite exhibits ultrahigh mass activity up to 1000 A g for the acidic OER, which is 66 times higher than that of the benchmark catalyst, IrO . By substituting Ti with Ir in CCTO, metal-oxygen (M-O) covalency can be significantly increased leading to the reduced energy barrier for charge transfer. Further, highly polarizable CCTO perovskite referred to as "colossal dielectric", possesses low defect formation energy for oxygen vacancy inducing a high number of oxygen vacancies in Ir-doped CCTO (Ir-CCTO). Electron transfer occurs from the oxygen vacancies and Ti to the substituted Ir consequentially resulting in the electron-rich Ir and -deficient Ti sites. Thus, favorable adsorptions of oxygen intermediates can take place at Ti sites while the Ir ensures efficient charge supplies during OER, taking a top position of the volcano plot. Simultaneously, the introduced Ir dopants form nanoclusters at the surface of Ir-CCTO, which can boost catalytic activity for the acidic OER.
在酸性条件下的氧气析出反应(OER)对于质子交换膜(PEM)水电解器的实际应用变得非常重要。特别是,最大限度地提高铱(Ir)的质量活性是首要问题之一。在此,作者发现掺杂铱的钙铜钛矿(CaCu₃Ti₄O₁₂,CCTO)钙钛矿在酸性 OER 中表现出超高的质量活性,高达 1000 A g ,是基准催化剂 IrO₂的 66 倍。通过在 CCTO 中用 Ir 取代 Ti,可以显著增加金属-氧(M-O)共价键,从而降低电荷转移的能量障碍。此外,被称为“巨介电”的高极化 CCTO 钙钛矿具有低的氧空位形成能,从而在 Ir 掺杂 CCTO(Ir-CCTO)中诱导出大量的氧空位。电子从氧空位和 Ti 转移到取代的 Ir,从而导致 Ir 富电子和 Ti 缺电子。因此,有利的氧中间体吸附可以在 Ti 位点发生,而 Ir 确保了 OER 期间的有效电荷供应,在火山图中占据首位。同时,引入的 Ir 掺杂剂在 Ir-CCTO 的表面形成纳米团簇,这可以提高酸性 OER 的催化活性。