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Bacterial Cellulose Dissolution for High-Value Nano Fibre Application

机译:高价纳米纤维施用的细菌纤维素溶解

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Plant-derived cellulose (PC) and bacterial cellulose (BC) show poor solubility in common solvents due to the strong inter and intramolecular hydrogen bonding supported by a rigid backbone structure. Dissolving cellulose is the foremost requirement inorder to facilitate the application of cellulose to develop various high-end applications like membrane filter, template for drug delivery, agro chemicals, hydrogel, etc. The present investigation was aimed at developing a solvent-based method to dissolve the bacterial cellulose (BC), an exopolysaccharide produced by the gram-negative strain Acetobacter senegalensis MAI in order to widen the BC application more specifically in packaging, food and pharma industries. Two solvents namely trifluoroacetic acid (TFA) and dimethylsulphoxide (DMSO) were employed as a uni-component in three different conditions viz., conventional (60°C), microwave and cold treatment (0°C) and the results revealed that microwave treatment facilitated early dissolution of BC. Furthermore, FT-IR analysis of the regenerated BC (BC-R) confirmed the absence of TFA, suggesting that all the TFA might have volatilized during the regeneration process. The volatilizing of TFA during the process of regeneration favours the usage of thissolvent for the fabrication of BC nanofibres via electrospinning, which finds applications in various fields.
机译:植物衍生的纤维素(PC)和细菌纤维素(BC)由于刚性骨架结构支撑的强和分子内氢粘合而在普通溶剂中溶解性差。溶解纤维素是易于促进纤维素的应用,以开发各种高端应用,如膜过滤器,药物递送模板,农业化学品,水凝胶等。本研究旨在促进溶剂的溶剂方法溶解细菌纤维素(BC),由革兰氏阴性菌株仙鳞蜥塞内加斯·迈克植物产生的外糖,以便更加拓宽包装,食品和制药行业的BC应用。将三氟乙酸(TFA)和二甲基磺氧化物(DMSO)在三种不同的条件下,常规(60℃),微波和冷处理(0°C)和结果显示,常规(60℃),结果表明,常规(60℃),结果显示微波处理促进了BC的早期溶解。此外,再生BC(BC-R)的FT-IR分析证实不存在TFA,表明所有TFA可能在再生过程中挥发。再生过程中TFA的挥发利用该溶剂通过静电纺丝制备BC纳米纤维的用途,其在各种领域中找到应用。

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