石墨烯
过氧化氢
光催化
量子点
材料科学
可见光谱
氧化物
纳米结构
锰
光化学
碳量子点
纳米技术
光电子学
催化作用
化学
冶金
有机化学
生物化学
作者
Palanisamy Rajkumar,V. Sethuraman,Manigandan Ramadoss,Vediyappan Thirumal,S. Asaithambi,Kisoo Yoo,Jin Ho Kim
标识
DOI:10.1002/slct.202400931
摘要
Abstract Designing and developing high‐efficiency multifunctional catalysts materials is a significant challenge. In this view, we synthesized Graphene Quantum Dots (gQDs)/Gadolinium Manganese Oxide (GMO) nanostructures for photocatalytic dye degradation and hydrogen peroxide sensing. The structural, optical, composition, and morphology properties of the gQDs/GMO nanostructures were analyzed by using various analytical tools. The gQDs/GMO catalyst shows higher degradation efficiency compared to pure catalysts under visible light irradiation which is due to the large surface area, lower band gap, small amount of hydrogen peroxide (H 2 O 2 ), and synergetic effect of gQDs/GMO. Furthermore, we extensively investigate the nonenzymatic H 2 O 2 sensing and the gQDs/GMO catalytic materials show higher sensing behavior. From our results, the gQDs embedded in gadolinium‐modified manganese oxide (gQDs/GMO) serve as an efficient photocatalyst material for environmental pollutant degradation under visible light irradiation with and the sensitive electrocatalyst for nonenzymatic H 2 O 2 sensing applications.
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