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Phyto-synthesized facile Pd/NiOPdO ternary nanocomposite for electrochemical supercapacitor applications.
Shaheen, Irum; Ahmad, Khuram Shahzad; Zequine, Camila; Gupta, Ram K; Thomas, Andrew G; Qureshi, Anjum; Malik, Mohammad Azad; Niazi, Javed H.
Afiliación
  • Shaheen I; Department of Environmental Sciences, Fatima Jinnah Women University Rawalpindi Pakistan chemist.phd33@yahoo.com dr.k.s.ahmad@fjwu.edu.pk.
  • Ahmad KS; SUNUM Nanotechnology Research, and Application Center, Sabanci University Orta Mah., Tuzla 34956 Istanbul Turkey.
  • Zequine C; Department of Environmental Sciences, Fatima Jinnah Women University Rawalpindi Pakistan chemist.phd33@yahoo.com dr.k.s.ahmad@fjwu.edu.pk.
  • Gupta RK; Department of Chemistry, Pittsburg State University 1701 South Broadway Street Pittsburg KS 66762 USA.
  • Thomas AG; Department of Chemistry, Pittsburg State University 1701 South Broadway Street Pittsburg KS 66762 USA.
  • Qureshi A; Department of Materials, Photon Science Institute, Sir Henry Royce Institute, University of Manchester Alan Turing Building, Oxford Road Manchester M13 9PL UK.
  • Malik MA; SUNUM Nanotechnology Research, and Application Center, Sabanci University Orta Mah., Tuzla 34956 Istanbul Turkey.
  • Niazi JH; Department of Materials, Photon Science Institute, Sir Henry Royce Institute, University of Manchester Alan Turing Building, Oxford Road Manchester M13 9PL UK.
RSC Adv ; 12(54): 35409-35417, 2022 Dec 06.
Article en En | MEDLINE | ID: mdl-36540222
Sustainable and effective electrochemical materials for supercapacitors are greatly needed for solving the global problems of energy storage. In this regard, a facile nanocomposite of Pd/NiOPdO was synthesized using foliar phyto eco-friendly agents and examined as an electrochemical electrode active material for supercapacitor application. The nanocomposite showed a mixed phase of a ternary nano metal oxide phase of rhombohedral NiO and tetragonal PdO confirmed by X-ray diffraction (XRD), scanning electron microscopy (SEM) and XPS (X-rays photoelectron spectroscopy). The optical (direct) energy value of the synthesized nanocomposite was 3.14 eV. The phyto-functionalized nanocomposite was studied for electrochemical supercapacitor properties and revealed a specific capacitance of 88 F g-1 and low internal resistance of 0.8 Ω. The nanoscale and phyto organic species functionalized nanocomposite exhibited enhanced electrochemical properties for supercapacitor application.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2022 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: RSC Adv Año: 2022 Tipo del documento: Article
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