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Propyl-SO_3H functionalized graphene oxide as multipurpose solid acid catalyst for biodiesel synthesis and acid-catalyzed esterification and acetalization reactions

机译:丙基-CO_3H官能化的石墨烯作为生物柴油合成和酸催化酯化和乙醛化反应的多功能固体酸催化剂

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A graphene based acid catalyst, GO-PrSO3H, was prepared through a simple two-step process. Surface modification with (3-mercaptopropyl) trimethoxysilane followed by oxidation of sulfide groups led to the production of sulfonic acid sites on graphene oxide nanosheets. The results of various physicochemical techniques approved the synthesis of desired catalyst. The amount of acid sites was measured via the acid-base treatment with triethylamine which exhibited 1.07 mmol/g H+ in the catalyst structure. Two kinds of acid-catalyzed reactions i.e. esterification and acetalization were adopted to evaluate the catalytic performance of prepared catalyst. More than 90% conversion was achieved for butyl acetate production in acetic acid esterification with n-butanol. Moreover, methyl oleate as one of the main components of biodiesel was produced with good yield over the prepared catalyst via oleic acid esterification with methanol. The H-1 NMR technique was also conducted to characterize and determine the amount of produced methyl oleate. Finally, the benzaldehyde acetalization with ethylene glycol was performed which high conversion (92%) was obtained at 3 h. The catalyst reusability for both esterification and acetalization reactions demonstrated the catalyst stability after five reaction cycles. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过简单的两步法制备石墨烯基酸催化剂Go-PRSO3H。用(3-巯基丙基)三甲氧基硅烷的表面改性,然后氧化硫化物基团导致石墨烯氧化物纳米片上的磺酸位点的产生。各种物理化学技术的结果批准了所需催化剂的合成。通过用三乙胺处理酸碱处理测量酸性位点的量,所述三胺处理在催化剂结构中显示1.07mmol / g H +。采用两种酸催化反应I.采用酯化和缩甲醛来评估制备催化剂的催化性能。用正丁醇乙酸酯化丁酸丁酯产生超过90%的转化率。此外,作为生物柴油的主要成分之一,通过用甲醇通过油酸酯化,在制备的催化剂上产生甲基油e。还进行了H-1 NMR技术以表征和确定产生的甲基油酸酯的量。最后,进行了用乙二醇的苯甲醛缩醛化,在3小时获得高转化率(92%)。用于酯化和缩醛化反应的催化剂可重用性证明了五次反应循环后的催化剂稳定性。 (c)2019 Elsevier Ltd.保留所有权利。

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