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首页> 外文期刊>Chemistry Select >Self-assembly of Anacardic Acid Derived Cation-modified Montmorillonite into 'Arthropodal' Branched Nanofibers
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Self-assembly of Anacardic Acid Derived Cation-modified Montmorillonite into 'Arthropodal' Branched Nanofibers

机译:无心酸衍生阳离子修饰的蒙脱石的自组装成“节肢动物”分支纳米纤维

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摘要

Montmorillonite (MMT) was organo-modified with tri-(2- carboxy-3-pentadeca-8,11,14]-trienylphenoxy) aminopropylsilyl sulfate cation, synthesized from anacardic acid (AA), a biomonomer by cation exchange and characterized. The modified product (AAM) showed a decreased crystallinity with an increase in d-spacing of MMT from 1.47 nm to 2.29 nm attributed to intercalation by modification. AAM solution in the water-acetone mixture at 3.0 mg mL1 showed an organization into 'arthropodal' branched nanofibers of about 30-60 nm diameter and 10-20 mm length. These results were attributed to rolling of AAM into grain like morphology stabilized by hydrogen bonded interactions induced by the carboxyl group and end to end assembly of the grains. Though acidic pH stabilized the morphology, an increase in pH to 8.0 marked the absence of any assembly attributed to lack of hydrogen bonding. The effect of the carboxyl group in the assembly was further established by the absence of any assembly in the case of MMT modified with cardanol, the decarboxylated product of AA. A simple strategy for the synthesis of biocompatible hybrid silicate nanofibers is demonstrated here.
机译:蒙脱石(MMT)与三氧化三烯基氧基二氧基二氧基二氧基二氧基二氧化物(2-羧基-3-碳二甲基-8,11,14])进行有机修饰,硫酸盐硫酸盐硫酸盐硫酸盐阳离子阳离子,由阳离子交换和表征和表征化。修饰的产物(AAM)显示出降低的结晶度,而MMT的D间距从1.47 nm增加到2.29 nm,归因于通过修饰互动。在3.0 mg ML1的水龙混合物中,AAM溶液显示出一个直径约30-60 nm的“节肢动物”分支纳米纤维,长度为10-20 mm。这些结果归因于AAM将AAM滚动到晶粒中,例如由羧基引起的氢键相互作用稳定的形态和谷物的端到端组装。尽管酸性pH稳定了形态,但pH值的增加到8.0标志着缺乏归因于缺乏氢键的任何组件。在用Cardanol(AA的脱羧产物)修饰的MMT的情况下,羧基在组装中的影响进一步确定。这里展示了合成生物相容性混合硅酸盐纳米纤维的简单策略。

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