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Photoresponsive cellulose fibers by surface modification with multifunctional cellulose derivatives

机译:通过多功能纤维素衍生物进行表面改性的光敏纤维素纤维

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Eucalyptus bleached kraft pulp fibers were modified by adsorption of novel bio-based multifunctional cellulose derivatives in order to generate light responsive surfaces. The cellulose derivatives used were decorated with both cationic groups (degree of substitution, DS of 0.34) and photoactive groups (DS of 0.11 and 0.37). The adsorption was studied by UV-vis spectroscopy, surface plasmon resonance (SPR) and time-of-fiight secondary ion mass spectroscopy (ToF-SIMS). The adsorption isotherms followed the Freundlich model and it turned out that the main driving force for the adsorption was electrostatic interaction. Moreover, strong indications for hydrophobic interactions between the fibers and the derivatives and the derivatives themselves were found. ToF-SIMS imaging revealed an even distribution of the derivatives on the fiber surfaces. The modified fibers underwent fast photocrosslinking under UV-irradiation as demonstrated by light absorbance and fluorescence measurements. Thus, our results proved that the modified fibers exhibited light-responsive properties and can potentially be used for the manufacture of smart bio-based materials.
机译:通过吸附新型生物基多功能纤维素衍生物对桉树漂白牛皮纸浆纤维进行改性,以产生光响应性表面。用阳离子基团(取代度,DS为0.34)和光敏基团(DS为0.11和0.37)装饰所用的纤维素衍生物。通过紫外可见光谱,表面等离子体共振(SPR)和飞行时间二次离子质谱(ToF-SIMS)研究了吸附。吸附等温线遵循Freundlich模型,事实证明吸附的主要驱动力是静电相互作用。此外,发现了纤维与衍生物和衍生物本身之间的疏水相互作用的强烈迹象。 ToF-SIMS成像显示衍生物在纤维表面上均匀分布。改性的纤维在紫外辐射下经历了快速的光交联,如吸光度和荧光测量所证实的。因此,我们的结果证明,改性纤维表现出光响应特性,并且可以潜在地用于制造智能生物基材料。

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