Temperature-Controlled Hydrothermal Synthesis of -MnO2 Nanorods for Catalytic Oxidation of Cyclohexanone

Ratnesh Kumar Jha,Marimuthu Manikandan,Marimuthu Prabu, Nidhi R. Vineeth, Praveen Dharmalingam,Ramakrishnan Archana, Murudappa Harsha, Sonu Ram Shankar, Kushal Bhatte,Thirumalaiswamy Raja

CHEMPLUSCHEM(2024)

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摘要
This work describes the comparison of the catalytic performances of alpha-MnO2 nanorods synthesized by a facile hydrothermal approach at varying temperatures (140-200 degrees C). The structure and morphology of these nanorods were analyzed by XRD, N-2-physisorption, NH3-TPD, Raman, SEM, HRTEM, and XPS. The prepared alpha-MnO2 nanorods also performed exceptionally well in the catalytic oxidation of cyclohexanone to dicarboxylic acids under mild reaction conditions. The characterization results conferred that there is a significant influence of hydrothermal temperatures on the textural properties, morphology, and catalytic activity. Notably, the alpha-MnO2 nanorods obtained from 180 degrees C hydrothermal conditions outperformed other catalysts with 77.3 % cyclohexanone conversion and 99 % selectivity towards acid products such as adipic acid (AA), glutaric acid (GA) and succinic acid (SA). The improved catalytic activity may be attributed to the interaction of the bifunctional Mn3+/4+ redox metal centres and surface acidic sites. The present oxidation reaction was found to be a promising eco-benign process with high selectivity for the production of commercially significant carboxylic acids from cyclohexanone.
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hydrothermal synthesis,manganese oxide,nanostructures,nanorods,oxidation,adipic acid
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