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A Simplified Method of Synthesis to Obtain Zwitterionic Cellulose under Mild Conditions with Active Ionic Moieties

机译:一种简化的合成方法以在具有活性离子部分的温和条件下获得两性离子纤维素

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摘要

A simplified procedure to synthesize zwitterionic cellulose by means of N-protected aspartic anhydride under mild conditions was developed. The preparation of modified cellulose samples was carried out under heterogeneous, aqueous conditions by reacting NH OH-activated cellulose with aspartic anhydrides N-protected with trifluoroacetyl (TFAc) and carbobenzyloxy (Cbz). Modified cellulose samples Cel-Asp-N-TFAc and Cel-Asp-N-Cbz were characterized by Fourier Transform Infrared (FTIR) and C solid state Nuclear Magnetic Resonance (NMR) spectroscopy. The functionalization degree of each cellulose sample was determined by the C NMR signal integration values corresponding to the cellulose C1 vs. the Cα of the aspartate residue and corroborated by elemental analysis. In agreement, both analytical methods averaged a grafting degree of 20% for Cel-Asp-N-TFAc and 16% for Cel-Asp-N-Cbz. Conveniently, Cel-Asp-N-TFAc was concomitantly partially N-deprotected (65%) as determined by the ninhydrin method. The zwitterion character of this sample was confirmed by a potentiometric titration curve and the availability of these amino acid residues on the cellulose was inspected by adsorption kinetics method with a 100 mg L cotton blue dye solution. In addition, the synthesis reported in the present work involves environmentally related advantages over previous methodologies developed in our group concerning to zwitterionic cellulose preparation.
机译:通过在温和条件下,开发了一种通过N保护天冬氨酸酰基合成两性离子纤维素的简化程序。通过用三氟乙酰基(TFAC)和碳苄氧基(CBZ)反应NH-活化的纤维素,通过使NH OH-活化的纤维素与ASPARIC酸酐进行N-PATHECTED,通过使NH OH-活化的纤维素与三氟乙酰基(TFAC)和碳苄氧基(CBZ)反应来进行改性纤维素样品的制备。通过傅里叶变换红外(FTIR)和C固态核磁共振(NMR)光谱,特征改性纤维素样品CEL-ASP-N-TFAC和CEL-ASP-N-CBZ。通过对应于纤维素C1与纤维素C1对应的C NMR信号积分值测定每种纤维素样品的官能化程度。通过元素分析,Cα的Cα和通过元素分析证实。在一致中,分析方法均平均Cel-ASP-N-TFAC的嫁接度为20%,对于CEL-ASP-N-CBZ,16%。方便地,通过茚三酮方法测定,CEL-ASP-N-TFAC伴随地部分脱保护(65%)。通过电位滴定曲线证实该样品的两性周期特征,并通过100mg L棉蓝染料溶液对纤维素的这些氨基酸残基的可用性进行检查。此外,本作作品中报告的合成涉及对我们本集团开发的关于两性离子纤维素制剂的方法相关的环境相关的优势。

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