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Preparation, characterization and use of new lignocellulose-based bio nanocomposite as a heterogeneous catalyst for sustainable synthesis of pyrimido benzazoles

机译:基于木质纤维素的Bio纳米复合物的制备,表征和使用作为嘧啶苯并唑胺可持续合成的非均相催化剂

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摘要

A sustainable combinatorial synthesis of densely substituted pyrimido [1,2-b] benzazole derivatives in water under microwave irradiation was performed using a new lignocellulose-based bio nanocomposite (BNC) as heterogeneous catalyst. The lignocellulosic waste peanut shells (LCWPS) were turned into a value-added product, a new BNC PS/ZnO, which was prepared via in situ hydrothermal synthesis. The as-prepared BNC was characterized by Fourier transform infrared spectroscopy, scanning electron microscopy, transmission electron microscopy, energy-dispersive X-ray spectroscopy and X-ray diffraction spectrum. PS/ZnO has been successfully used in a sustainable catalytic method for the synthesis of pyrimido [1, 2-b] benzazole derivatives in water under microwave irradiation. The time of this reaction was significantly reduced. This catalytic system has a very high turnover number (TON ∼ 103) and turnover frequency (TOF ∼ 105 h−1). This paper presents the benefit of sustainable management of LCWPS, a bio-sourced polymeric carbohydrate for production of new nanocatalyst.
机译:使用新的木质纤维素基生物纳米复合材料(BNC)作为异质催化剂,进行微波辐射在微波辐射下浓密取代的嘧啶的可持续组合合成致密取代的嘧啶胺[1,2-B]苯并唑衍生物。将木质纤维素废物花生壳(LCWP)变成增值产物,是新的BNC PS / ZnO,其通过原位水热合成制备。通过傅里叶变换红外光谱,扫描电子显微镜,透射电子显微镜,能量分散X射线光谱和X射线衍射光谱的制备的BNC的特征在于。 PS / ZnO已成功用于可持续催化方法,用于在微波辐射下合成嘧啶[1,2-B]苯并唑衍生物的水中。这种反应的时间显着降低。该催化系统具有非常高的周转数(吨〜103)和周转频率(TOF〜105 H-1)。本文介绍了LCWPS的可持续管理,一种用于生产新纳米催化剂的生物生物源碳水化合物。

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