Corn Stover-Derived Sulfonated Carbon as a Reusable Solid Acid Catalyst for the Green Multicomponent Synthesis of
Pareenat Waenthongkham1,2, Chatthai Kaewtong3, Supinya Nijpanich4
1Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Maha Sarakham 44150, Thailand.
Abstract:
The open-field burning of agricultural residues such as corn stover contributes significantly to air pollution and greenhouse gas emissions, highlighting the need for sustainable waste-valorization strategies. In this study, corn stover was converted into a sulfonated carbon catalyst through KOH activation, pyrolysis, and controlled sulfonation, providing a biomass-derived carbon material for heterogeneous catalytic applications. The resulting catalyst (KCS-100-3) exhibited a high surface area (620.22 m2 g-1) and a high density of Brønsted acidic sites (1.55 mmol g-1), enabling efficient catalytic performance in the aqueous-phase multicomponent synthesis of tetrahydrodipyrazolopyridine derivatives. Under optimized conditions (75 °C, 40 min), the desired products were obtained in excellent yields (94-99%) across a range of aromatic aldehydes and acetoacetate esters. Acidity characterization, control experiments, and TON/TOF analysis indicated that catalytic activity is primarily associated with accessible sulfonic acid functionalities. Mechanistic studies using ESI-MS identified pyrazolone and benzylidene pyrazolone intermediates, while hot-filtration experiments supported the heterogeneous nature of the catalytic process. The catalyst exhibited good recyclability, maintaining yields above 90% for seven consecutive cycles, although gradual deactivation was observed due to the loss of sulfur-containing acidic groups during extended reuse. Furthermore, gram-scale synthesis afforded up to 4.80 g of product in 90% isolated yield, demonstrating the practical applicability of the method. This work demonstrates a practical approach for transforming agricultural waste into value-added carbon-based catalysts and highlights the potential of biomass-derived materials for heterogeneous catalytic applications.


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