Qiu Yu-Ping, Yin Hui, Dai Hao, Gan Li-Yong, Dai Hong-Bin, Wang Ping
School of Materials Science and Engineering, Key Laboratory of, Advanced Energy Storage Materials of Guangdong Province, South China University of Technology, Guangzhou, 510641, P.R. China.
Chemistry. 2018 Apr 3;24(19):4902-4908. doi: 10.1002/chem.201705923. Epub 2018 Mar 2.
Selective decomposition of hydrous hydrazine (N H ⋅H O) over metal catalysts provides a promising means for onboard or portable hydrogen source applications. Studies on N H ⋅H O decomposition catalysts mainly focus on the effects of bulk composition and structure on their performances, instead of the surface-composition-dependent properties. Herein, the synthesis of an Ir-modified Ni/meso-CeO catalyst is reported by using a combination of colloidal solution combustion synthesis and galvanic replacement methods. A combination of structural characterization, control experiments, and DFT calculations reveals that the Ni-Ir alloy resulting from calcination treatment exerts a profound effect on the catalytic properties. The resulting Ni@Ni-Ir/meso-CeO catalyst shows excellent catalytic performance towards hydrogen generation from N H ⋅H O, which compares favorably with the Ni-Ir bimetallic catalysts reported to date.
在金属催化剂上选择性分解水合肼(N₂H₄·H₂O)为机载或便携式氢源应用提供了一种很有前景的方法。关于N₂H₄·H₂O分解催化剂的研究主要集中在体相组成和结构对其性能的影响上,而不是表面组成依赖性性质。在此,通过胶体溶液燃烧合成和电置换方法相结合,报道了一种Ir修饰的Ni/介孔CeO₂催化剂的合成。结构表征、对照实验和密度泛函理论(DFT)计算相结合表明,煅烧处理产生的Ni-Ir合金对催化性能有深远影响。所得的Ni@Ni-Ir/介孔CeO₂催化剂对N₂H₄·H₂O产氢表现出优异的催化性能,与迄今为止报道的Ni-Ir双金属催化剂相比具有优势。