Acharya Jiwan, Ojha Gunendra Prasad, Kim Byoung-Suhk, Pant Bishweshwar, Park Mira
Carbon Composite Energy Nanomaterials Research Center, Woosuk University, Wanju, Chonbuk 55338, South Korea.
Department of Organic Materials & Fiber Engineering, Jeonbuk National University, Jeonju 54896, South Korea.
ACS Appl Mater Interfaces. 2021 Apr 21;13(15):17487-17500. doi: 10.1021/acsami.1c00137. Epub 2021 Apr 12.
The scrupulous designation of hollow and porous electroactive materials incorporating prolific redox-active polyphase transition-metal oxide decorated with polyphase transition-metal sulfide onto rGO (reduced graphene oxide)-supported conductive substrate has never been an easy task due to the very good coordination affair of sulfur toward transition metals. Herein, cost-effective hydrothermal growth followed by a metal-organic framework (MOF)-mediated sulfidation approach is employed to achieve burl-like Ni-Co-S nanomaterial-integrated hollow and porous NiMoO nanotubes onto rGO-coated Ni foam (rGO-NiMoO@Ni-Co-S) as the electrode material for supercapacitors. The open framework of the rGO-Co-MOF template after the etching and sulfidation process not only enables the creation of a tubular structure of NiMoO nanorods but also provides convenient ion-electron pathways to promote rapid faradic reactions for the hybrid composite electrode. Owing to the unique hollow and tubular structure, the as-fabricated rGO-NiMoO@Ni-Co-S electrode exhibits a high specific capacity of 318 mA h g at 1 A g and remarkable cyclic performance of 88.87% after 10,000 consecutive charge-discharge cycles in an aqueous 2 M KOH electrolyte on a three-electrode configuration. Moreover, the assembled rGO-NiMoO@Ni-Co-S//rGO-MDC (MOF-derived carbon) asymmetric supercapacitor device exhibits a satisfactory energy density of 57.24 W h kg at a power density of 801.8 W kg with an admirable life span of 90.89% after 10,000 repeated cycles.
将包含多相过渡金属氧化物修饰的多相过渡金属硫化物的中空和多孔电活性材料精确地设计到还原氧化石墨烯(rGO)负载的导电基底上,由于硫与过渡金属之间良好的配位作用,这从来都不是一件容易的事。在此,采用具有成本效益的水热生长法,随后通过金属有机框架(MOF)介导的硫化方法,在rGO包覆的泡沫镍(rGO-NiMoO@Ni-Co-S)上制备出瘤状Ni-Co-S纳米材料集成的中空和多孔NiMoO纳米管,作为超级电容器的电极材料。蚀刻和硫化过程后rGO-Co-MOF模板的开放框架不仅能够形成NiMoO纳米棒的管状结构,还提供了便利的离子-电子通道,以促进混合复合电极的快速法拉第反应。由于独特的中空和管状结构,所制备的rGO-NiMoO@Ni-Co-S电极在三电极配置的2 M KOH水溶液电解质中,在1 A g下表现出318 mA h g的高比容量,并且在连续10000次充放电循环后具有88.87%的优异循环性能。此外,组装的rGO-NiMoO@Ni-Co-S//rGO-MDC(MOF衍生碳)不对称超级电容器装置在801.8 W kg的功率密度下表现出57.24 W h kg的令人满意的能量密度,在10000次重复循环后具有90.89%的令人钦佩的寿命。