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Synergistic Catalysis of Brønsted Acid and LewisAcid Coexisted on Ordered Mesoporous Resin for One-Pot Conversionof Glucose to 5-Hydroxymethylfurfural

机译:布朗斯台德酸和路易斯的协同催化有序介孔树脂与酸共存用于一锅法转换葡萄糖对5-羟甲基糠醛

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摘要

A novel bifunctional ordered phenolic resin with Brønsted acid and Lewis acid sites (Yb(OTf)2/PhSO3H-MPR) was prepared for the first time by a two-step sulfonation and postgrafting protocol. The Brønsted acids (benzenesulfonic acids) were transformed from the phenyl groups that existed in the skeleton of ordered mesoporous phenolic resin. Meanwhile, the benzenesulfonic acids can coordinate with Yb(OTf)3 compound, resulting in the generation of Lewis acids in the pore channels of ordered phenolic resin. Yb(OTf)2/PhSO3H-MPR sample retained large specific surface and well-ordered hexagonal mesopores. As expected, it can promote one-pot cascade reaction by using glucose as the reactant to produce 5-hydroxymethylfurfural with good conversion and moderate selectivity. This synergistic catalytic performance could be attributed to its uniformly distributed Brønsted–Lewis acids. Meanwhile, the intrinsic hydrophobic pore surface can decrease the interference of water solvent, leading to enhanced catalytic efficiency. Besides, it was reused more than five times, showing good stability in water.
机译:通过两步磺化和后接枝方法首次制备了具有布朗斯台德酸和路易斯酸位点的新型双功能有序酚醛树脂(Yb(OTf)2 / PhSO3H-MPR)。布朗斯台德酸(苯磺酸)由有序介孔酚醛树脂骨架中存在的苯基转化而来。同时,苯磺酸可以与Yb(OTf)3化合物配位,从而在有序酚醛树脂的孔道中产生路易斯酸。 Yb(OTf)2 / PhSO3H-MPR样品保留了较大的比表面和井井有条的六角形中孔。如所期望的,它可以通过使用葡萄糖作为反应物来促进一锅级联反应,以产生具有良好转化率和适度选择性的5-羟甲基糠醛。这种协同的催化性能可归因于其均匀分布的布朗斯台德-路易斯酸。同时,固有的疏水孔表面可以减少水溶剂的干扰,从而提高催化效率。此外,它被重复使用了五次以上,在水中显示出良好的稳定性。

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