Aquivion‐based spray freeze‐dried composite materials for the cascade production of γ‐valerolactone

催化作用 糠醛 复合数 化学 喷雾干燥 路易斯酸 化学工程 材料科学 有机化学 复合材料 工程类
作者
Alessandro Allegri,Anna Saotta,Francesca Liuzzi,Enrica Gianotti,Geo Paul,Alice Cattaneo,Claudio Oldani,Andrea Brigliadori,Ilaria Zanoni,Stefania Albonetti,Nikolaos Dimitratos,Stefania Albonetti
出处
期刊:Chemsuschem [Wiley]
标识
DOI:10.1002/cssc.202301683
摘要

The development of multifunctional catalysts is a necessary step to effectively carry out cascade reactions, such as that from furfural to γ‐valerolactone. This research effort faces the challenge posed by the intrinsic limit of how many kinds of catalytic sites a single material can bear. In this work, the application of Spray‐Freeze Drying (SFD) as a synthetic technique for the preparation of a wide range of composite multi‐functional catalysts is reported. Herein we show that by the proper combination of Aquivion as a highly active Brønsted acid catalyst and metal oxides as Lewis acids (LAS) enable to achieve highly unique efficient and effective dual acid composite catalysts that are able to carry out the cascade reaction from furfural to γ‐valerolactone. The dual catalytic system comprised of Aq/ZrO2 with 30% polymer content prepared via spray‐freeze drying exhibited GVL yields of 25% after only 2 h at 180 °C and a remarkably high productivity of 4470 µmolGVL gCat‐1 h‐1, one of the highest reported results. Mechanistic studies based on experimental and advanced characterisation and spectroscopic techniques, such as, SEM, TEM, 15N MAS NMR and 19F MAS NMR indicate that activity arises from the proper tuning of BAS/LAS acidic properties.
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