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Pathways for Dye Diffusion in Wool Fibers

机译:羊毛纤维中染料扩散的途径

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The most prominent view of the diffusion mechanism of dyes into wool fibers assumes that the molecules primarily enter the fiber in a fast process along the cell membrane complex (CMC), that is, by an intercellular mechanism. From the CMC, they are subsequently distributed in a slower process throughout the other morphological components according to their respective diffusion coefficients and dye affinities. This view, referred to here as the CMC-diffusion model, is based on investigations of the diffusion performance of heavy metal complex and fluorescent dyes under anhydrous and aqueous conditions. An evaluation of various key aspects of the evidence for this model suggests that, due to differences in the glass transition and fluorescence quenching performance of the various morphological components in a wool fiber, there is, in fact, little evidence to support the CMC -diffusion model. Instead, the evidence supports the alternative, more general view that under normal dyeing conditions, diffusion proceeds primarily by means of all the nonkeratinous components of the wool fiber according to a restricted transcellular diffusion mechanism.
机译:染料向羊毛纤维扩散的机制的最突出观点是,假设分子主要沿着细胞膜复合物(CMC)以快速过程进入纤维,即通过细胞间机制进入。随后,它们从CMC根据它们各自的扩散系数和染料亲和力以较慢的过程分布到其他形态成分中。这种观点在这里称为CMC扩散模型,是基于对无水和水性条件下重金属络合物和荧光染料的扩散性能的研究。对该模型证据的各个关键方面的评估表明,由于羊毛纤维中各种形态成分的玻璃化转变和荧光猝灭性能存在差异,因此,几乎没有证据支持CMC扩散模型。取而代之的是,证据支持了另一种更普遍的观点,即在正常的染色条件下,根据受限的跨细胞扩散机制,扩散主要通过羊毛纤维的所有非角质成分进行。

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