Flower-like copper foam Co_(3)O_(4) catalysts(Co_(3)O_(4)/CF) were prepared by hydrothermal method.The crystalline structure and microscopic morphology of the prepared samples were characterized by using X-ray diffrac...Flower-like copper foam Co_(3)O_(4) catalysts(Co_(3)O_(4)/CF) were prepared by hydrothermal method.The crystalline structure and microscopic morphology of the prepared samples were characterized by using X-ray diffractometer(XRD) and scanning electron microscope(SEM),and the electrochemical properties were investigated by an electrochemical workstation.The experimental results show that the Co_(3)O_(4) catalysts are successfully prepared on the foamed copper support by hydrothermal method,and the material’s morphology is mainly flower cluster.When the current density is 10 mA·cm^(-2),the overpotential value of the Co_(3)O_(4)/CF catalyst is 141 mV,lower than that of blank support.The electrochemical impedance(EIS) spectrum shows that the R_(ct )value of the Co_(3)O_(4)/CF catalyst decreases,and the Coulomb curves of double-layer show that the electrochemically active area of the Co_(3)O_(4)/CF catalyst efficiently increases compared with that of the blank support.Therefore,the as-obtained Co_(3)O_(4)/CF catalyst exhibits a good hydrogen evolution rate,showing great applicability potential in the catalytic electrolysis of water for hydrogen production.展开更多
随着航空航天等领域对材料性能要求的日益提高,陶瓷基复合材料(CMCs)因其卓越的高温稳定性和优异的力学性能而备受关注。然而,CMCs在机械性能与电磁波吸收(EWA)性能之间的平衡一直是一个技术难题。近期,西安交通大学的科研团队在《材料...随着航空航天等领域对材料性能要求的日益提高,陶瓷基复合材料(CMCs)因其卓越的高温稳定性和优异的力学性能而备受关注。然而,CMCs在机械性能与电磁波吸收(EWA)性能之间的平衡一直是一个技术难题。近期,西安交通大学的科研团队在《材料科学与技术杂志(Journal of Materials Science&Technology)》上发表了一篇关于仿竹结构的连续碳纤维增强SiC(Cf/SiC)复合材料的研究成果,为CMCs的应用提供了新的思路。展开更多
基金Funded by the National Natural Science Foundation of China(No.51474170)the Foundation of Shaanxi Educational Committee(No.17JK0395)the Xi’an Science and Technology Committee Program(No.GXYD9.2)。
文摘Flower-like copper foam Co_(3)O_(4) catalysts(Co_(3)O_(4)/CF) were prepared by hydrothermal method.The crystalline structure and microscopic morphology of the prepared samples were characterized by using X-ray diffractometer(XRD) and scanning electron microscope(SEM),and the electrochemical properties were investigated by an electrochemical workstation.The experimental results show that the Co_(3)O_(4) catalysts are successfully prepared on the foamed copper support by hydrothermal method,and the material’s morphology is mainly flower cluster.When the current density is 10 mA·cm^(-2),the overpotential value of the Co_(3)O_(4)/CF catalyst is 141 mV,lower than that of blank support.The electrochemical impedance(EIS) spectrum shows that the R_(ct )value of the Co_(3)O_(4)/CF catalyst decreases,and the Coulomb curves of double-layer show that the electrochemically active area of the Co_(3)O_(4)/CF catalyst efficiently increases compared with that of the blank support.Therefore,the as-obtained Co_(3)O_(4)/CF catalyst exhibits a good hydrogen evolution rate,showing great applicability potential in the catalytic electrolysis of water for hydrogen production.
文摘随着航空航天等领域对材料性能要求的日益提高,陶瓷基复合材料(CMCs)因其卓越的高温稳定性和优异的力学性能而备受关注。然而,CMCs在机械性能与电磁波吸收(EWA)性能之间的平衡一直是一个技术难题。近期,西安交通大学的科研团队在《材料科学与技术杂志(Journal of Materials Science&Technology)》上发表了一篇关于仿竹结构的连续碳纤维增强SiC(Cf/SiC)复合材料的研究成果,为CMCs的应用提供了新的思路。