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Hydrophobic End-Modulated Amino-Acid-Based Neutral Hydrogelators: Structure-Specific Inclusion of Carbon Nanomaterials

机译:疏水端基调节的基于氨基酸的中性水凝胶剂:碳纳米材料的特定结构包含。

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摘要

Hydrophobic end-modulated l-phenylalanine-containing triethylene glycol monomethyl ether tagged neutral hydrogelators (1-4) are developed. Investigations determine the gelators' structure-dependent inclusion of carbon nanomaterials (CNMs) in the self-assembled fibrillar network (SAFIN). The gelators (1, 3, and 4) can immobilize water and aqueous buffer (pH 3-7) with a minimum gelator concentration of 10-15 mg mL(-1). The hydrophobic parts of the gelators are varied from a long chain (C-16) to an extended aromatic pyrenyl moiety, and their abilities to integrate 1D and 2D allotropes of carbon (i.e., single-walled carbon nanotubes (SWNTs) and graphene oxide (GO), respectively) within the gel are investigated. Gelator 1, containing a long alkyl chain (C-16), can include SWNTs, whereas the pyrene-containing 4 can include both SWNTs and GO. Gelator 3 fails to incorporate SWNTs or GO owing to its slow rate of gelation and possibly a mismatch between the aggregated structure and CNMs. The involvement of various forces in self-aggregated gelation and physicochemical changes occurring through CNM inclusion are examined by spectroscopic and microscopic techniques. The distinctive pattern of self-assembly of gelators 1 and 4 through J- and H-type aggregation might facilitate the structure-specific CNM inclusion. Inclusion of SWNTs/GO within the hydrogel matrix results in a reinforcement in mechanical stiffness of the composites compared with that of the native hydrogels.
机译:开发了疏水性末端调节的含1-苯基丙氨酸的三乙二醇单甲醚标记的中性水凝胶剂(1-4)。研究确定了胶凝剂在自组装纤维网络(SAFIN)中依赖于结构的碳纳米材料(CNM)的包含。胶凝剂(1、3和4)可以固定水和水性缓冲液(pH 3-7),最小胶凝剂浓度为10-15 mg mL(-1)。胶凝剂的疏水部分从长链(C-16)到扩展的芳族pyr烯部分不等,它们具有整合碳的1D和2D同素异形体(即单壁碳纳米管(SWNTs)和氧化石墨烯(分别在凝胶中进行了研究。包含长烷基链(C-16)的胶凝剂1可以包含SWNT,而含the 4可以包含SWNT和GO。胶凝剂3由于其缓慢的胶凝速度以及聚集结构与CNM之间的不匹配而无法掺入SWNT或GO。通过光谱和显微镜技术检查了各种力参与通过CCN包合而发生的自聚集凝胶化和物理化学变化。胶凝剂1和4通过J型和H型聚集体的自组装的独特模式可能有助于包含特定结构的CNM。与天然水凝胶相比,在水凝胶基质中包含SWNTs / GO可以增强复合材料的机械刚度。

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