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Effect of tungsten disulfide on NiCo-MOFs@NiVS nanocomposite binder-free electrode material for hybrid supercapacitor

  • Nimra Muzaffar,
  • Amir Muhammad Afzal,
  • Muhammad Waqas Iqbal,
  • Aneeqa Yasmeen,
  • Munirah D. Albaqami,
  • Saikh Mohammad Wabaidur,
  • Sohail Mumtaz,
  • Shaik Abdul Munnaf

摘要

This investigation addresses the novel combination of MOFs with TMDs and metal vanadium sulfides, offering a unique approach for fabricating high-performance hybrid electrode materials. Here, we proposed a composite NiCo-MOF@WS2@NiVS material, which was synthesized by the hydrothermal method. Further, the tip sonication method was used to fabricate WS2 nanoflake. Moreover, a comprehensive study was conducted to observe the distinctive behavior of binder-free electrodes. A broad investigation of the morphological, structural, and compositional characteristics of nanocomposite was conducted utilizing SEM, XRD, and XPS methodologies. The NiCo-MOFs@WS2@NiVS electrode exhibited a specific capacity (Qs) of 1235 Cg−1, which was higher than the NiCo-MOF (567 Cg−1) and WS2 (717 Cg1). When employed in supercapattery, the NiCo-MOF@WS2@NiVS hybrid electrode showed a Qs of 600 Cg−1. The device demonstrated a noteworthy Pd of 2500 Wkg−1 and a remarkable Ed of 133 Whkg−1. After 5000 cycles, the device has retained 88% of its initial capacity. These results indicate that the NiCo-MOF@WS2@NiVS nanocomposite can be efficiently employed in storage devices, improving energy solutions' effectiveness and sustainability.