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A combination of three surface modifiers for the optimal generation and application of natural hybrid nanopigments in a biodegradable resin

机译:三种表面改性剂的组合,可在生物可降解树脂中优化天然杂化纳米颜料的生成和应用

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摘要

Our purpose was to improve the thermal, mechanical and optimal properties of an epoxy bioresin using optimum hybrid natural pigments previously synthesised in our lab. Next, we searched for the best combinations of factors in the synthesis of natural hybrid nanopigments and then incorporated them into the bioresin. We combined three structural modifiers in the nanopigment synthesis, surfactant, coupling agent (silane) and a mordant salt (alum), selected to replicate mordant textile dyeing with natural dyes. We used Taguchi’s design L8 to seek final performance optimisation. We selected three natural dyes, chlorophyll, beta-carotene and beetroot extract, and used two laminar nanoclay types, montmorillonite and hydrotalcite. The thermal, mechanical and colorimetric characterisation of the composite obtained by mixing natural hybrid nanopigments (bionanocomposite) was made. The natural dye interactions with both nanoclays improved the thermal stabilities, colour performance and UV–VIS light exposure stability of natural dyes and bioresins. The best bionanocomposite materials were found in an acidic pH [3, 4] environment and by modifying nanoclays with mordant and surfactant during the nanopigment synthesis process.
机译:我们的目的是使用我们实验室中先前合成的最佳混合天然颜料来改善环氧生物树脂的热,机械和最佳性能。接下来,我们在天然杂化纳米颜料的合成中寻找最佳的因子组合,然后将其掺入生物树脂中。我们在纳米颜料合成中结合了三种结构改性剂,表面活性剂,偶联剂(硅烷)和媒染剂盐(铝),选择它们来复制天然染料媒染剂织物的染色。我们使用田口设计的L8寻求最终的性能优化。我们选择了三种天然染料,叶绿素,β-胡萝卜素和甜菜根提取物,并使用了两种层状纳米粘土类型,蒙脱土和水滑石。对通过混合天然杂化纳米颜料(bionanocomposite)获得的复合材料进行了热,机械和比色表征。天然染料与两种纳米粘土的相互作用改善了天然染料和生物树脂的热稳定性,色彩性能和UV-VIS曝光稳定性。发现最佳的生物纳米复合材料是在酸性pH [3,4]环境中,并且在纳米颜料合成过程中通过媒染剂和表面活性剂对纳米粘土进行改性。

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