Miura Takafumi, Tsunekawa Shun, Onishi Sho, Ina Toshiaki, Wang Kehsuan, Watanabe Genta, Hu Chechia, Kondoh Hiroshi, Kawai Takeshi, Yoshida Masaaki
Yamaguchi University, Tokiwadai, Ube, Yamaguchi 755-8611, Japan.
Keio University, Hiyoshi, Kohoku-ku, Yokohama, Kanagawa 223-8522, Japan.
Phys Chem Chem Phys. 2021 Oct 20;23(40):23280-23287. doi: 10.1039/d1cp03323a.
The electrolysis of water using renewable energy is a promising approach to developing a sustainable hydrogen-based economy. To improve the efficiency of this process, it will be necessary to develop highly active electrocatalysts that promote the oxygen evolution reaction (OER). In the present study, the OER activity of a nickel oxide electrocatalyst was dramatically improved following the addition of a diamine to the electrolyte solution during electrodeposition. UV/vis absorption spectroscopy was used to assess a number of nickel catalysts containing various diamines and other organic compounds. The data indicate that Ni(II) complexes were formed with the diamines during electrodeposition. Consequently, the catalytic activity of these materials was enhanced based on increased concentrations of active reaction sites for the OER process. Ni K-edge X-ray absorption spectra showed that these catalysts were composed of γ-NiOOH with a Ni valence state. The coordination of the diamine molecules to the γ-NiOOH produced structural distortion that contributed to improved OER activity. This structural distortion is likely the most important factor in enhancing the OER activity of inorganic-organic composite catalysts.
利用可再生能源电解水是发展可持续氢基经济的一种有前景的方法。为提高该过程的效率,有必要开发能促进析氧反应(OER)的高活性电催化剂。在本研究中,通过在电沉积过程中向电解液中添加二胺,氧化镍电催化剂的OER活性得到显著提高。采用紫外/可见吸收光谱法评估了多种含不同二胺和其他有机化合物的镍催化剂。数据表明,在电沉积过程中二胺与Ni(II)形成了配合物。因此,基于OER过程中活性反应位点浓度的增加,这些材料的催化活性得到增强。Ni K边X射线吸收光谱表明,这些催化剂由具有Ni价态的γ-NiOOH组成。二胺分子与γ-NiOOH的配位产生了结构畸变,这有助于提高OER活性。这种结构畸变可能是提高无机-有机复合催化剂OER活性的最重要因素。