首页> 外文期刊>Journal of Dispersion Science and Technology >Innovative amphiphilic cellulose nanobiostructures: Physicochemical, spectroscopic, morphological, and hydrophilic/lipophilic properties
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Innovative amphiphilic cellulose nanobiostructures: Physicochemical, spectroscopic, morphological, and hydrophilic/lipophilic properties

机译:创新的两亲纤维素纳米性能结构:物理化学,光谱,形态学和亲水性/亲脂性能

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摘要

The amphiphilic character of cellulosic copolymers offers the opportunity to employ their derivatives as novel bio-friendly stable amphiphilic agents. It can be speculated that the synthesized nanobiostructures with hydrophilic and hydrophobic segments will have micellar features. Our investigations, for the first time, demonstrate that the amphiphilic nature of the synthesized macromolecules based on hydrophobic cellulose triacetate (CTA) and hydroxyl terminated oligomeric species of CTA (HCTA) by using hydrophilic polyethylene glycol (PEG) with M-n 600 and 2000 D as CTA-g-PEG, 600; CTA-g-PEG, 2000; HCTA-b-PEG, 600; and HCTA-b-PEG, 2000. The characteristic features of the copolymers were determined by XRD, differential scanning calorimeter, H-1 NMR, FTIR, GPC, dynamic light scattering measurements, and transmission electron microscopy. In addition, their critical micelle concentrations were evaluated. The obtained results indicated that the hydrophobic blocks make a significant influence on the micellar characteristics of the surfactants. A comparison of the micellar behavior of a hydrophobic species, like pyrene, incorporated in the synthesized systems indicated that the incorporation content of the surfactants is influenced by the hydrophobic and hydrophilic chain lengths. Therefore, it is possible to design the diversity of the surfactants based on various hydrophilic/lipophilic balance.
机译:纤维素共聚物的两亲性质提供了使用其衍生物作为新型生物友好稳定两亲药剂的机会。可以推测具有亲水性和疏水区段的合成的纳米性结构将具有胶束特征。我们首次研究表明,通过使用具有MN 600和2000d的亲水聚乙二醇(PEG),基于疏水性纤维素三乙酰乙酸酯(CTA)和羟基封端的CTA(HCTA)的羟基封端的低聚物种的合成大分子的两亲性质。 CTA-G-PEG,600; CTA-G-PEG,2000; HCTA-B-PEG,600;和HCTA-B-PEG,2000.通过XRD,差示扫描量热计,H-1 NMR,FTIR,GPC,动态光散射测量和透射电子显微镜测定共聚物的特征。此外,评估其临界胶束浓度。所得结果表明,疏水性嵌段对表面活性剂的胶束特性产生了显着影响。在合成系统中掺入芘的疏水物种的胶束行为的比较表明,表面活性剂的掺入含量受疏水性和亲水链长的影响。因此,可以基于各种亲水/亲脂性平衡设计表面活性剂的多样性。

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