Taniguchi Ayano, Fujita Takeshi, Kobiro Kazuya
Graduate School of Engineering, Kochi University of Technology, 185 Miyanokuchi, Tosayamada, Kami, Kochi 782-8502, Japan.
Research Center for Structural Nanochemistry, Kochi University of Technology, 185 Miyanokuchi, Tosayamada, Kami, Kochi 782-8502, Japan.
Dalton Trans. 2024 May 14;53(19):8124-8134. doi: 10.1039/d3dt04131j.
A high-entropy porous spinel oxide [(CoCrFeMnNi)O] was synthesized a solvothermal method and calcination. Solvothermal conditions yielding homogeneous precursor composites with five metals were optimized. Low-temperature calcination of the amorphous composites at 500 °C for 60 min yielded porous spheres formed by small primary particles, with crystal structures attributed to single-phase spinels. The homogeneity of the five elements in the spheres was verified scanning transmission electron microscopy and energy-dispersive X-ray spectroscopy analysis. The high-entropy (CoCrFeMnNi)O spheres exhibited superior catalytic activity and long-term stability for the reverse water-gas shift reaction at 700 °C for at least 15 h. The importance of the Cr component in stabilizing the spinel structure was demonstrated. Mn, Fe, Co, and Ni served as active sites in the reaction. The advantage of solvothermal synthesis for porous high-entropy materials was discussed.
通过溶剂热法和煅烧合成了一种高熵多孔尖晶石氧化物[(CoCrFeMnNi)O]。优化了溶剂热条件以制备含有五种金属的均匀前驱体复合材料。将无定形复合材料在500℃下低温煅烧60分钟,得到由小的初级颗粒形成的多孔球体,其晶体结构归因于单相尖晶石。通过扫描透射电子显微镜和能量色散X射线光谱分析验证了球体中五种元素的均匀性。高熵(CoCrFeMnNi)O球体在700℃下对逆水煤气变换反应表现出优异的催化活性和长期稳定性,至少持续15小时。证明了Cr组分在稳定尖晶石结构中的重要性。Mn、Fe、Co和Ni在反应中作为活性位点。讨论了溶剂热合成多孔高熵材料的优势。