<p>The creation of efficient storage systems that store and provide energy in an effective way to fulfil the energy requirements. This paper presents a simple hydrothermal technique for forming reduced graphene oxide sheets (rGO) based NdFeO<sub>3</sub> hybrid. The hybrid’s physical along with electrochemical characteristics have been investigated using different characterization techniques. The material exhibits potential for an electrode to be used in supercapacitors by virtue of its substantial surface area, distinctive structure, and combined action of metal ions. Significant storing capability is demonstrated by the NdFeO<sub>3</sub>/rGO hybrid, which has increased capacitance of 1473 at 1&#xa0;A/g with reduced solution resistance (R<sub>s</sub> = 0.72 Ω) and strong cyclic stability after 5000<sup>th</sup> cycle as well as mechanical stability of 50&#xa0;h. The evaluations suggested that the hybrid has more ability for energy storing than the pure material.</p>

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Hybrid rGO–NdFeO3 sheets synthesized by hydrothermal technique for supercapacitor electrodes

  • Meznah M. Alanazi,
  • Shaimaa A.M. Abdselmohsen,
  • Taghreed Muhammad Abdu Bahlool,
  • Tamoor Ahmad,
  • Muhammad Imran,
  • Muhammad Abdullah,
  • Hafiz Muhammad Tahir Farid,
  • Farid

摘要

The creation of efficient storage systems that store and provide energy in an effective way to fulfil the energy requirements. This paper presents a simple hydrothermal technique for forming reduced graphene oxide sheets (rGO) based NdFeO3 hybrid. The hybrid’s physical along with electrochemical characteristics have been investigated using different characterization techniques. The material exhibits potential for an electrode to be used in supercapacitors by virtue of its substantial surface area, distinctive structure, and combined action of metal ions. Significant storing capability is demonstrated by the NdFeO3/rGO hybrid, which has increased capacitance of 1473 at 1 A/g with reduced solution resistance (Rs = 0.72 Ω) and strong cyclic stability after 5000th cycle as well as mechanical stability of 50 h. The evaluations suggested that the hybrid has more ability for energy storing than the pure material.