SYNTHESIS AND PROPERTIES OF NANOCELLULOSE-DYE CONJUGATES

O. Surov, M. Voronova, N. Rubleva, A. Zakharov, A. Afineevskii
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Abstract

Synthesis of conjugates of cellulose nanocrystals (CNC) with chlortriazine reactive dyes (RD) has been developed.  The obtained CNC-RD conjugates were characterized using a complex of modern methods: UV-Vis, IR and 13C solid state NMR spectroscopy, thermogravimetric and elemental analysis, particle size and zeta potential analysis, scanning electron and polarization optical microscopy. IR spectra of CNC-RD films show absorption bands typical of cellulose. The formation of a covalent cellulose-dye bond is confirmed by the presence of characteristic absorption bands of the resulting ether bond in the region of 1000-1300 cm-1. Based on the analysis of solid-state 13C NMR spectra, it was concluded that the degree of crystallinity of the CNC-RD conjugates does not change compared to the CNC, i.e. the RD covalently bind to the surface of the CNC particles and do not affect the crystal structure of the CNC. Using a simple model of CNC with square cross-section, and based on the elemental analysis data, the amount of covalently bound dye on the surface of CNC particles was estimated. The results obtained allow us to conclude that covalent bound of RD occurs selectively at one of the ends of the cellulose nanocrystal (the so-called reducing end of the cellulose polymer chain). Successful CNC surface modification is confirmed by UV-Vis spectroscopy. It was found that aqueous suspensions of CNC-RD conjugates have indicator properties. The sizes and charges of the particles of CNC-RD conjugates in dilute aqueous suspensions were determined. High colloidal stability of the CNC-RD aqueous suspensions was confirmed. It has been shown that CNC-RD colloidal suspensions possess liquid crystalline properties, which is clearly demonstrated by their iridescent color in polarized light with stirring. CNC films modified with RD also possess birefringence properties and exhibit an iridescent color in polarized light. The morphology of CNC-RD particles was studied using scanning electron microscopy. The thermal stability of the CNC-RD conjugates was studied.
纳米纤维素-染料偶联物的合成与性能研究
研究了氯三嗪活性染料(RD)与纤维素纳米晶体(CNC)共轭物的合成。采用紫外可见、红外和13C固体核磁共振光谱、热重和元素分析、粒度和zeta电位分析、扫描电子和偏振光学显微镜等现代方法对所得的CNC-RD共轭物进行了表征。CNC-RD薄膜的红外光谱显示纤维素的典型吸收带。共价纤维素-染料键的形成由在1000-1300 cm-1区域产生的醚键的特征吸收带的存在证实。通过对固态13C NMR谱的分析,得出CNC-RD共轭物的结晶度与CNC相比没有变化,即RD与CNC颗粒表面共价结合,不影响CNC的晶体结构。采用简单的方形截面CNC模型,根据元素分析数据,估算了CNC颗粒表面共价结合染料的数量。得到的结果使我们得出结论,RD的共价键选择性地发生在纤维素纳米晶体的一端(即纤维素聚合物链的还原端)。通过紫外可见光谱分析证实CNC表面改性成功。发现CNC-RD共轭物的水溶液悬浮液具有指示剂性质。测定了稀水悬浮液中CNC-RD共轭物的粒径和电荷。证实了CNC-RD水悬浮液具有较高的胶体稳定性。研究表明,CNC-RD胶体悬浮液具有液晶性质,在偏振光下搅拌后呈现彩虹色。用RD修饰的CNC薄膜还具有双折射特性,并在偏振光下表现出彩虹色。用扫描电镜研究了CNC-RD颗粒的形貌。研究了CNC-RD共轭物的热稳定性。
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