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Phosphorous-modified bulk graphitic carbon nitride: Facile preparation and application as an acid-base bifunctional and efficient catalyst for CO2 cycloaddition with epoxides

机译:磷改性的本体石墨碳氮化物:易于制备和用作酸碱双功能高效催化剂,用于环氧化物与CO2的环加成反应

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摘要

A series of phosphorus (P) modified graphitic carbon nitride (P-C3N4) were facilely prepared by direct thermolysis of melamine and hexachlorotriphosphazene. Based on the results of XPS and P-31 NMR analyses, it is deduced that there is replacement of C atoms located at the bay and edge terminal positions by P atoms. The P-C3N4 materials are easy-to-handle, stable, and metal-free. They function well as a catalyst for the synthesis of cyclic carbonates through carbon dioxide (CO2) cycloaddition to epoxides under mild conditions without the need of a solvent. This is the first time that an acid-base bifunctional P-C3N4 was prepared and used as catalyst for cycloaddition reactions. It was observed that the catalytic activity of P-C3N4 increases with the rise of P content as a result of the enrichment of acid sites. The excellent performance of Bu4NBr/P-C3N4-2 is attributed to the synergetic effect of acid sites and halide anions for ring opening of epoxide as well as to basic sites for adsorption and activation of CO2. A possible multi-synergetic mechanism is proposed for the cycloaddition reaction over P-C3N4. Moreover, P-C3N4 can be easily separated and reused for at least five times without showing significant loss of activity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过三聚氰胺和六氯三磷腈的直接热解,可轻松制备一系列磷(P)改性的石墨碳氮化物(P-C3N4)。根据XPS和P-31 NMR分析的结果,可以推断出位于海湾和边缘末端位置的C原子被P原子取代。 P-C3N4材料易于处理,稳定且不含金属。它们在温和条件下无需溶剂即可很好地用作通过二氧化碳(CO2)环加成环氧化物合成环状碳酸酯的催化剂。这是首次制备酸碱双官能的P-C3N4并用作环加成反应的催化剂。观察到,由于酸性位点的富集,P-C3N4的催化活性随P含量的增加而增加。 Bu4NBr / P-C3N4-2的优异性能归因于酸性位点和卤化物阴离子对环氧化物开环的协同作用以及碱性位点对CO2的吸附和活化。提出了一种可能的多协同机制,用于P-C3N4上的环加成反应。而且,P-C3N4可以很容易地分离并重复使用至少五次,而不会显示出明显的活性损失。 (C)2016 Elsevier Ltd.保留所有权利。

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