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Adsorption of cationic photoluminescent nanoparticles on softwood cellulose fibres: Effects of particles stabilization and fibres' beating

机译:阳离子光致发光纳米粒子在软木纤维素纤维上的吸附:粒子稳定化和纤维跳动的影响

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摘要

The present investigation focuses on the adsorption of cationic photoluminescent polymer nanoparticles on negatively charged bleached softwood cellulose fibres. The synthesis of the copolyfluorene-fluorenone and its miniemulsification with tetradecyltrimethylammonium bromide (TTAB) as surfactant has been optimized to obtain highly charged cationic nanoparticles. Cellulose pulp beating was performed as mechanical treatment to increase fibres hydration and specific surface area. Although beating promoted nanoparticles adsorption, photoluminescence of handsheets prepared with beaten fibres was less intense comparing to those obtained with untreated fibres. The photoluminescence drop was attributed to the loss of a large fraction of cellulosic fine elements present in the beaten pulp during handsheets preparation. Cationic nanoparticles adsorption kinetics on cellulose fibres and the resulting photoluminescence efficiency was monitored in two cases: with or without the stabilization of nanoparticles in the pulp slurry by TTAB. Pulps preconditioning with TTAB avoided nanoparticles flocculation and led to a homogeneous coverage of the fibres surface giving more efficient photoluminescent papers. However, the formation of a continuous layer on the fibre surface induced a drop in the mechanical resistance of the paper which was ascribed to a decrease of interfibre hydrogen bonding.
机译:本研究着重于阳离子光致发光聚合物纳米粒子在带负电荷的漂白针叶纤维素纤维上的吸附。共聚芴-芴酮的合成及其以十四烷基三甲基溴化铵(TTAB)作为表面活性剂的微乳化已得到优化,以获得高电荷的阳离子纳米粒子。进行纤维素纸浆打浆作为机械处理,以增加纤维的水合作用和比表面积。尽管跳动促进了纳米颗粒的吸附,但是与用未处理的纤维获得的手抄纸相比,用打浆的纤维制备的手抄纸的光致发光强度较低。光致发光下降归因于手抄纸制备过程中打浆中存在的大部分纤维素细元素的损失。在两种情况下,对阳离子纳米颗粒在纤维素纤维上的吸附动力学和所产生的光致发光效率进行了监测:TTAB稳定或不稳定纸浆中的纳米颗粒。用TTAB预处理纸浆避免了纳米颗粒的絮凝,并导致纤维表面均匀覆盖,从而提供了更高效的光致发光纸。然而,在纤维表面上形成连续层导致纸的机械阻力下降,这归因于纤维间氢键的减少。

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