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An Efficient and Functional Fe3O4/Co3O4 Composite for Oxygen Evolution Reaction.
Bhatti, Adeel Liaquat; Aftab, Umair; Tahira, Aneela; Abro, Muhammad Ishaq; Mari, Riaz Hussain; Samoon, Muhammad Kashif; Aghem, Muhammad Hassan; Shaikh, Nek Muhammad; Mugheri, Abdul Qayoom; Ibupoto, Zafar Hussain.
Afiliação
  • Bhatti AL; Institute of Physics, University of Sindh, Jamshoro, 76080, Sindh Pakistan.
  • Aftab U; Mehran University of Engineering and Technology, 76080 Jamshoro, Sindh Pakistan.
  • Tahira A; Department of Science and Technology, Campus Norrköping, Linköping University, SE-581 83 Norrköping, Sweden.
  • Abro MI; Mehran University of Engineering and Technology, 76080 Jamshoro, Sindh Pakistan.
  • Mari RH; Institute of Physics, University of Sindh, Jamshoro, 76080, Sindh Pakistan.
  • Samoon MK; Institute of Pure and Applied Geology University of Sindh, Jamshoro 76080, Sindh, Pakistan.
  • Aghem MH; Institute of Pure and Applied Geology University of Sindh, Jamshoro 76080, Sindh, Pakistan.
  • Shaikh NM; Institute of Physics, University of Sindh, Jamshoro, 76080, Sindh Pakistan.
  • Mugheri AQ; Institute of Chemistry, University of Sindh, 76080 Jamshoro, Pakistan.
  • Ibupoto ZH; Institute of Chemistry, University of Sindh, 76080 Jamshoro, Pakistan.
J Nanosci Nanotechnol ; 21(4): 2675-2680, 2021 Apr 01.
Article em En | MEDLINE | ID: mdl-33500092
The design of efficient, stable, durable and noble metal free electro catalysts for oxygen evolution reaction (OER) are of immediate need, but very challenging task. In this study, iron induction into cobalt oxide (Co3O4) has resulted composite structure by wet chemical method. The iron impurity has brought an electronic disorder into Fe3O4/cobalt oxide composite thereby efficient oxygen evolution reaction is demonstrated. An addition of iron content into composite resulted the alternation of morphology from Nano rods to clusters of nanoparticles. The successive addition of iron into composite system reduced the onset potential of OER as compared to the pristine cobalt oxide. A Tafel slope of 80 mVdec-1 indicates the favorable oxygen evolution reaction kinetics on the sample 4. An over-potential of 370 mV is required to reach a 10 mAcm-2 current density which is acceptable for a nonprecious catalyst. The catalyst is highly durable and stable for 30 hours. Electrochemical impedance spectroscopy further provided a deeper insight on charge transfer resistance and sample 4 has low charge transfer resistance that supported the OER polarization curves. The sample 4 has more electrochemical active surface area of 393.5 cm². These obtained results are exciting and highlighting the importance of composite structure and leave a huge space for the future investigations on composite materials for energy related applications.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article