Gao Jiajian, Xu Cong-Qiao, Hung Sung-Fu, Liu Wei, Cai Weizheng, Zeng Zhiping, Jia Chunmiao, Chen Hao Ming, Xiao Hai, Li Jun, Huang Yanqiang, Liu Bin
School of Chemical and Biomedical Engineering , Nanyang Technological University , 62 Nanyang Drive , Singapore 637459 , Singapore.
Department of Chemistry , Tsinghua University , Haidian District, Beijing 100084 , China.
J Am Chem Soc. 2019 Feb 20;141(7):3014-3023. doi: 10.1021/jacs.8b11456. Epub 2019 Feb 6.
Oxygen electrochemistry plays a critical role in clean energy technologies such as fuel cells and electrolyzers, but the oxygen evolution reaction (OER) severely restricts the efficiency of these devices due to its slow kinetics. Here, we show that via incorporation of lithium ion into iridium oxide, the thus obtained amorphous iridium oxide (Li-IrO ) demonstrates outstanding water oxidation activity with an OER current density of 10 mA/cm at 270 mV overpotential for 10 h of continuous operation in acidic electrolyte. DFT calculations show that lithium incorporation into iridium oxide is able to lower the activation barrier for OER. X-ray absorption characterizations indicate that both amorphous Li-IrO and rutile IrO own similar [IrO] octahedron units but have different [IrO] octahedron connection modes. Oxidation of iridium to higher oxidation states along with shrinkage in the Ir-O bond was observed by in situ X-ray absorption spectroscopy on amorphous Li-IrO , but not on rutile IrO under OER operando conditions. The much more "flexible" disordered [IrO] octahedrons with higher oxidation states in amorphous Li-IrO as compared to the periodically interconnected "rigid" [IrO] octahedrons in crystalline IrO are able to act as more electrophilic centers and thus effectively promote the fast turnover of water oxidation.
氧电化学在燃料电池和电解槽等清洁能源技术中起着关键作用,但析氧反应(OER)因其缓慢的动力学严重限制了这些装置的效率。在此,我们表明,通过将锂离子掺入氧化铱中,由此获得的非晶态氧化铱(Li-IrO)在酸性电解质中连续运行10小时,在270 mV过电位下表现出出色的析氧活性,析氧电流密度为10 mA/cm²。密度泛函理论(DFT)计算表明,将锂掺入氧化铱能够降低析氧反应的活化能垒。X射线吸收表征表明,非晶态Li-IrO和金红石型IrO都具有相似的[IrO]八面体单元,但[IrO]八面体的连接方式不同。通过原位X射线吸收光谱在非晶态Li-IrO上观察到铱氧化到更高氧化态以及Ir-O键收缩,但在OER操作条件下在金红石型IrO上未观察到。与晶体IrO中周期性互连的“刚性”[IrO]八面体相比,非晶态Li-IrO中具有更高氧化态的更“灵活”的无序[IrO]八面体能够充当更多亲电中心,从而有效地促进水氧化的快速周转。