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首页> 外文期刊>ACS Omega >Graphitic Carbon Nitride Nanosheets Covalently Functionalized with Biocompatible Vitamin B1: Synthesis, Characterization, and Its Superior Performance for Synthesis of Quinoxalines
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Graphitic Carbon Nitride Nanosheets Covalently Functionalized with Biocompatible Vitamin B1: Synthesis, Characterization, and Its Superior Performance for Synthesis of Quinoxalines

机译:与生物相容性维生素B1共价官能化的石墨碳氮化物纳米片:合成,表征和其卓越的性能合成喹喔啉。

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The physical properties of two-dimensional nanosheet materials make them promising candidates as active materials in the areas of photoelectronics, fuel cells, sensors, water splitting, solar energy conversion, CO2 reduction, and heterogeneous catalysis. Among two-dimensional nanosheet materials, graphitic carbon nitride due to its electronic structure and high chemical and thermal stability possesses unique properties. Covalent functionalization of graphitic carbon nitride could be the key step in modifying its ability and significantly improving its properties. To this purpose, a novel strategy for the covalent functionalization of g-C3N4 nanosheets (CN) with vitamin B1 (VB1) by using 1,3-dibromopropane as a covalent linker for the first time is demonstrated. The obtained CN-Pr-VB1 exhibits increased thermal stability compared to the VB1 which is important in the practice application and can be easily dispersed in common organic solvents. The efficacy of the CN-Pr-VB1 as a heterogeneous organocatalyst was evaluated in the quinoxaline synthesis under solvent-free conditions and afforded good isolated yield with high purity. Moreover, the prepared catalyst could be facilely recycled and reused for seven consecutive cycles without a noticeable decrease in the catalytic activity. Extensive characterization confirmed the stability of morphology and chemical structure after recyclability of the CN-Pr-VB1.
机译:二维纳米片材料的物理特性使其成为有希望的候选材料,成为光电,燃料电池,传感器,水分解,太阳能转化,CO2还原和多相催化领域的活性材料。在二维纳米片材料中,石墨碳氮化物由于其电子结构以及高化学稳定性和热稳定性而具有独特的性能。石墨氮化碳的共价官能化可能是改变其能力并显着改善其性能的关键步骤。为此,首次展示了通过使用1,3-二溴丙烷作为共价接头,将g-C3N4纳米片(CN)与维生素B1(VB1)共价官能化的新策略。与在实际应用中很重要的VB1相比,所获得的CN-Pr-VB1具有更高的热稳定性,并且可以很容易地分散在普通的有机溶剂中。在无溶剂条件下的喹喔啉合成中评估了CN-Pr-VB1作为非均相有机催化剂的功效,并提供了高纯度的良好分离产率。而且,所制备的催化剂可以容易地再循环并重复使用七个连续循环,而催化活性没有显着降低。广泛的表征证实了CN-Pr-VB1可回收利用后形态和化学结构的稳定性。

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