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Surface Molecular Self-Assembly Strategy for TNT Imprinting of Polymer Nanowire/Nanotube Arrays

机译:聚合物纳米线/纳米管阵列的TNT印迹的表面分子自组装策略

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This paper reports the finding of an investigation of a surface molecular self-assembly strategy for molecular imprinting of polymer nanowiresanotubes. It has been demonstrated that 2,4,6-trinitrotoluene (TNT) templates were spontaneously assembled onto aminopropyl group-modified alumina pore walls by a strong charge-transfer complexing interaction between amino groups and electron-deficient nitroaromatics, forming a novel basis of surface molecular imprinting. While an additional amount of TNT templates was further replenished into a precursor mixture, a stepwise progressive polymerization was designed toward the controllable preparation of TNT-imprinted polymer nanowireanotube arrays in an alumina membrane. The imprinted nanowiresanotubes with a high density of surface-imprinted sites and regular interior sites exhibit the high capacity of binding TNT molecules, which is nearly 2.5-3.0-fold that of normal imprinted particles. Moreover, the imprinted nanotubes and nanowires have approx6- and 4-fold increase in the rate of binding TNT molecules, respectively. The combination of surface molecular assembly with nanostructures in the imprinting technique can create more effective recognition sites than the only use of porogens in traditional approaches. This novel, facile strategy reported herein can be further expected to fabricate various molecular recognition nanoarrays for sensing or analytic applications.
机译:本文报道了对聚合物纳米线/纳米管进行分子印迹的表面分子自组装策略研究的发现。已经证明,2,4,6-三硝基甲苯(TNT)模板通过氨基与电子缺陷型硝基芳族化合物之间的强电荷转移络合作用自发组装到氨基丙基改性的氧化铝孔壁上,从而形成了表面的新基础分子印迹。在将更多量的TNT模板进一步补充到前体混合物中的同时,逐步设计逐步聚合,以可控地制备TNT印迹聚合物纳米线/纳米管阵列在氧化铝膜中。具有高密度的表面印迹位点和规则的内部位点的印迹纳米线/纳米管表现出高的结合TNT分子的能力,是正常印迹颗粒的近2.5-3.0倍。此外,压印的纳米管和纳米线的结合TNT分子速率分别增加了约6倍和4倍。与传统方法中仅使用致孔剂相比,印迹技术中表面分子组装与纳米结构的结合可创建更有效的识别位点。可以进一步预期本文报道的这种新颖,简便的策略来制造用于传感或分析应用的各种分子识别纳米阵列。

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