Gas Conversion Department, Faculty of Petrochemicals, Iran Polymer and Petrochemicals Institute, P.O. Box 14975112, Tehran 1497713115, Iran.
Department of Chemistry, School of Science, Alzahra University, P.O. Box 1993891176, Vanak, Tehran 1993891176, Iran.
Molecules. 2020 Dec 16;25(24):5958. doi: 10.3390/molecules25245958.
A novel biochar-based graphitic carbon nitride was prepared through calcination of petals and urea. To provide acidic and ionic-liquid functionalities on the prepared carbon, the resultant biochar-based graphitic carbon nitride was vinyl functionalized and polymerized with 2-acrylamido-2-methyl-1-propanesulfonic acid, acrylic acid and the as-prepared 1-vinyl-3-butylimidazolium chloride. The final catalytic system that benefits from both acidic (-COOH and -SOH) and ionic-liquid functionalities was applied as a versatile, metal-free catalyst for promoting some model acid catalyzed reactions such as Knoevenagel condensation and Biginelli reaction in aqueous media under a very mild reaction condition. The results confirmed high activity of the catalyst. Broad substrate scope and recyclability and stability of the catalyst were other merits of the developed protocols. Comparative experiments also indicated that both acidic and ionic-liquid functionalities on the catalyst participated in the catalysis.
一种新型的基于生物炭的石墨相氮化碳通过花瓣和尿素的煅烧制备而成。为了在制备的碳上提供酸性和离子液体功能,将所得的基于生物炭的石墨相氮化碳进行乙烯基功能化,并与 2-丙烯酰胺基-2-甲基-1-丙磺酸、丙烯酸和制备的 1-乙烯基-3-丁基氯化咪唑反应聚合。最终的催化体系得益于酸性(-COOH 和-SOH)和离子液体功能,可作为一种通用的、无金属催化剂,用于在非常温和的反应条件下促进一些模型酸催化反应,如在水相中的 Knoevenagel 缩合和Biginelli 反应。结果证实了催化剂的高活性。催化剂具有广泛的底物范围、可回收性和稳定性,这也是所开发方案的优点。对比实验还表明,催化剂上的酸性和离子液体功能都参与了催化过程。