Nano catalysts remarkably high surface area-to-volume ratio and adjustable physicochemical characteristics have made them a ground-breaking development in the field of catalysis. These catalysts, which are frequently made of metal oxides, metal nanoparticles, or hybrid materials, improve stability, selectivity, and reaction speeds in a variety of chemical processes. They are used in many different industries, including as medicines, environmental cleanup, and energy conversion. Recent developments in synthesis methods, like self-assembly and green chemistry approaches, have enhanced control over the content, size, and shape of nano catalysts, thereby improving their performance. Research is still ongoing to address issues including scalability, durability, and environmental effects
G. SatishK. Harsha Vardhan ReddyB. S. P. AnilK. RameshR. Uday KumarY. V. D. Nageswar
Sara SobhaniZahra Pakdin PariziNasrin Razavi
Yingpeng HuoJiwen HuYuanyuan TuZhenzhu HuangShudong LinXiaojiong LuoChao Feng
G. SatishK. Harsha Vardhan ReddyB. S. P. AnilK. RameshR. Uday KumarY. V. D. Nageswar