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Amanullah Fatehmulla

Professor

Professor, Department of Physics and Astronomy,

Sciences
Building 4, 2nd Floor, Office 2A 56,
publication
Journal Article
2025

Multi-walled carbon nanotube integrated Ni–Co hydroxide/Cu2 (OH) 3NO3 heterostructures for efficient oxygen evolution in alkaline media

The development of sustainable and cost-effective electrocatalysts for the oxygen evolution reaction (OER) is essential for efficient hydrogen (H₂) production. In this study, Cu2(OH)3NO3 (CuHN) and Ni-Co hydroxide/Cu2(OH)3NO3 (CuNiCo) electrocatalysts were synthesized using the reflux method. To further enhance the electrocatalytic properties, multi-walled carbon nanotubes (CNT) were integrated into CuNiCo with various weight fractions (x = 1.5, 2.5, 3.5 wt.%) to create composites (denoted as CuNiCo@CNT-1, 2, 3). Among these, CuNiCo@CNT-2 supported on nickel foam (NF) exhibited efficient OER activity, achieving low overpotentials (η) of 280 mV and 350 mV at current densities (J) of 50 and 100 mA/cm2 in 1M KOH. This enhanced performance is attributed to improved conductivity, increased active sites, and strong electronic coupling between CuNiCo and CNT. Moreover, the CuNiCo@CNT-2ǀǀPt/C@NF electrolyzer exhibited a low cell voltage of 1.49 V at 10 mA/cm2 and demonstrated excellent durability over 50 h at different current densities. These results highlight the strong potential of the CuNiCo@CNT composite as a cost-effective and robust electrocatalyst for practical water-splitting applications.

 

 

Magazine \ Newspaper
Electrochimica Acta
Pages
147859
more of publication
publications

The development of sustainable and cost-effective electrocatalysts for the oxygen evolution reaction (OER) is essential for efficient hydrogen (H₂) production. In this study, Cu2(OH)3NO3 (CuHN)…

by Kumaravel, Sakthivel, Chandrasatheesh Chandramoorthy, Lalitha Gnanasekaran, Mathivanan Durai, Paranthaman Vijayakumar, Mani Durai, S. D. Priya, Amanullah Fatehmulla, Jagadeesh Kumar Alagarasan, and Young Ho Ahn
2025
publications

Titanium carbide (Ti 3 C 2), a two-dimensional material known as MXene, is a promising electrode material for supercapacitors. Herein, MXene was synthesized by etching the Ti₃AlC₂ MAX phase,…

by Sumathy, S., M. Parthasarathy, R. Suriakarthick, V. Gowthami, and Amanullah Fatehmulla
2025
publications

As a possible electrocatalyst, a two-dimensional heterostructure made up of a metal that conducts electricity very well and a metal oxide that conducts electricity has been discovered.

by Mondal, Aniruddha, Venkatanarayana Pappula, Apurba Sinhamahapatra, Ratiram Gomaji Chaudhary, Ahmed A. Abdala, Rajshree B. Jotania, Sudip Mondal, Amanullah Fatehmulla, and Arnab Kanti Giri
2025