Hussain, F.; Dars, W.; Kanwal, R.; Parmar, J.; Das, G.; Raza, A.; Kumar, H.; Mangi, R.; Bhellar, M.A.; Meghwar, A.;
et al. The Tailored Surface Oxygen Vacancies and Reduced Optical Band Gap of NiO During the Development of NiO@Polyaniline Hybrid Materials for the Efficient Asymmetric and Oxygen Evolution Reaction Applications. Catalysts 2025, 15, 508.
https://doi.org/10.3390/catal15060508
AMA Style
Hussain F, Dars W, Kanwal R, Parmar J, Das G, Raza A, Kumar H, Mangi R, Bhellar MA, Meghwar A,
et al. The Tailored Surface Oxygen Vacancies and Reduced Optical Band Gap of NiO During the Development of NiO@Polyaniline Hybrid Materials for the Efficient Asymmetric and Oxygen Evolution Reaction Applications. Catalysts. 2025; 15(6):508.
https://doi.org/10.3390/catal15060508
Chicago/Turabian Style
Hussain, Fida, Wanhinyal Dars, Rabia Kanwal, Jethanand Parmar, Ghansham Das, Ahmed Raza, Haresh Kumar, Rameez Mangi, Masroor Ali Bhellar, Ambedker Meghwar,
and et al. 2025. "The Tailored Surface Oxygen Vacancies and Reduced Optical Band Gap of NiO During the Development of NiO@Polyaniline Hybrid Materials for the Efficient Asymmetric and Oxygen Evolution Reaction Applications" Catalysts 15, no. 6: 508.
https://doi.org/10.3390/catal15060508
APA Style
Hussain, F., Dars, W., Kanwal, R., Parmar, J., Das, G., Raza, A., Kumar, H., Mangi, R., Bhellar, M. A., Meghwar, A., Ali, K., Tahira, A., Bhatti, M. A., Dawi, E., Ibrahim, R. M., Vigolo, B., & Ibupoto, Z. H.
(2025). The Tailored Surface Oxygen Vacancies and Reduced Optical Band Gap of NiO During the Development of NiO@Polyaniline Hybrid Materials for the Efficient Asymmetric and Oxygen Evolution Reaction Applications. Catalysts, 15(6), 508.
https://doi.org/10.3390/catal15060508