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Synthesis of Highly Polymerized Water-soluble Cellulose Acetate by the Side Reaction in Carboxylate Ionic Liquid 1-ethyl-3-methylimidazolium Acetate

机译:羧酸盐离子液体1-乙基-3-甲基咪唑鎓乙酸盐中的副反应合成高聚合水溶性乙酸纤维素

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摘要

In the present study, we describe a novel one-step method to prepare water-soluble cellulose acetate (WSCA) with higher degree of polymerization values (DP = 650–680) by in situ activation of carboxyl group in ionic liquid. First of all, cellulose was dissolved in 1-ethyl-3-methylimidazolium acetate (EmimAc) and reacted with dichloroacetyl chloride (Cl2AcCl) in order to make cellulose dichloroacetate. Under various conditions, a series of water soluble products were produced. Elemental analysis and NMR results confirmed that they were cellulose acetate with DS (degree of substitution) values in the range from 0.30 to 0.63. NMR studies demonstrated that Cl2AcCl reacted with acetate anion of EmimAc producing a mixed anhydride that acetylated cellulose. Other acylating reagents such as benzoyl chloride, chloroacetyl chloride can also work similarly. 2D NMR characterization suggested that 6-mono-O-acetyl moiety, 3,6-di-O-acetylcellulose and 2,6-di-O-acetyl cellulose were all synthesized and the reactivity of hydroxyl groups in anhydro-glucose units was in the order C-6>C-3>C-2. This work provides an alternative way to make WSCA, meanwhile, also services as a reminder that the activity of EmimAc toward carbohydrate as acylating reagents could be a problem, because the expected acylated products may not be resulted and recycling of this ionic liquid could also be difficult.
机译:在本研究中,我们描述了一种新颖的一步法,通过在离子液体中原位活化羧基来制备具有更高聚合度值(DP = 650–680)的水溶性醋酸纤维素(WSCA)。首先,将纤维素溶解在乙酸1-乙基-3-甲基咪唑鎓盐(EmimAc)中,并与二氯乙酰氯(Cl2AcCl)反应以制备纤维素二氯乙酸盐。在各种条件下,生产了一系列水溶性产品。元素分析和NMR结果证实它们是乙酸纤维素,DS(取代度)值在0.30至0.63的范围内。 NMR研究表明,Cl2AcCl与EmimAc的乙酸根阴离子反应,生成混合酸酐,使纤维素乙酰化。其他酰化试剂如苯甲酰氯,氯乙酰氯也可以类似地起作用。 2D NMR表征表明,合成了6-单-O-乙酰基部分,3,6-二-O-乙酰基纤维素和2,6-二-O-乙酰基纤维素,并且脱水葡萄糖单元中的羟基反应性为顺序为C-6> C-3> C-2。这项工作提供了一种制备WSCA的替代方法,同时也提醒我们EmimAc对作为酰化剂的碳水化合物的活性可能是个问题,因为可能不会产生预期的酰化产物,并且也可能回收这种离子液体。难。

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