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首页> 外文期刊>Green chemistry >Dry ice-mediated rational synthesis of edge-carboxylated crumpled graphene nanosheets for selective and prompt hydrolysis of cellulose and eucalyptus lignocellulose under ambient reaction conditions
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Dry ice-mediated rational synthesis of edge-carboxylated crumpled graphene nanosheets for selective and prompt hydrolysis of cellulose and eucalyptus lignocellulose under ambient reaction conditions

机译:干冰介导的边缘羧化皱折的石墨烯纳米烯片的选择性和提示水解纤维素和桉树木纤维素在环境反应条件下的选择性和促进水解

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摘要

Edge-selectively carboxylated graphene (ECG) crumpled nanosheets are of great importance in potential applications; however, their catalytic activity towards biomass hydrolysis is not yet highlighted. Herein, we rationally designed two-dimensional ECG nanosheets with tunable COOH contentviathe ball-milling of graphite with dry ice as an efficient catalyst for selective hydrolysis of cellulose and lignocellulose. The fabrication method is simple, one pot, productive (up to gram-scale), green (no hazardous oxidizing agents), and allows selective edge functionalization without damaging the graphitic basal plane. The as-formed ECG are water-dispersable and self-exfoliated two-dimensional crumpled nanosheets with a high surface area (94.1 m(2)g(-1)) and abundant COOH (26.45%) at the edges. These peculiar structural and compositional merits of ECG lead to the hydrolysis of cellulose to glucose in high yield (87%) alongside the hydrolysis of eucalyptus to xylose (89%) and glucose (65%) within 20 min at 180 degrees C in the presence of HCl (120 ppm). Meanwhile, ECG hydrolyzed eucalyptus into xylose (98%) in water, owing to its layered structure, hydrophilicity, and synergistic effect. The catalytic performance of the ECG catalyst was benchmarked as a function of COOH content relative to pristine graphite and HCl. The hydrolysis mechanism and kinetics of ECG over cellulose were decipheredviavarious reaction experiments, conditions, and pretreatments. The present study may open new horizons towards the utilization of ECG in the hydrolysis of biomass.
机译:边缘选择性羧化石墨烯(ECG)皱巴巴的纳米片在潜在应用中具有重要意义;然而,它们对生物质水解的催化活性尚未突出显示。在此,我们设计了具有可调谐CoOH含量的二维ECG纳米片,其具有干冰的石墨的球磨为一种有效的纤维素和木质纤维素选择性水解的有效催化剂。制造方法简单,一个锅,生产(最多革兰垢),绿色(无危险氧化剂),并允许选择性边缘官能化而不损坏石墨基底平面。作为形成的AS形成的ECG是水分散的和自去角质的二维皱折的纳米片,具有高表面积(94.1M(2)g(-1))和边缘的丰富的COOH(26.45%)。 ECG的这些特殊的结构和组成优点导致纤维素的水解至高收率(87%)与木糖(89%)和在180℃下在20分钟内的桉树(89%)和葡萄糖(65%)的水解中HCl(120ppm)。同时,由于其层状结构,亲水性和协同效应,ECG水解桉树桉树含水剂进入木糖(98%)。 ECG催化剂的催化性能是相对于原始石墨和HCl的COOH含量的函数。 ECG过度纤维素的水解机理和动力学是破裂的反应实验,条件和预处理。本研究可以在生物质水解中利用ECG开辟新的视野。

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