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超声刺激染料组装体成核和生长为扩展的凝胶纳米结构。

Ultrasound stimulated nucleation and growth of a dye assembly into extended gel nanostructures.

机构信息

Istituto per la Sintesi Organica e la Fotoreattività, Consiglio Nazionale delle Ricerche (ISOF-CNR), Via Gobetti 101, 40129 Bologna (Italy), Fax: (+39) 051-6399844.

出版信息

Chemistry. 2013 Sep 23;19(39):12991-3001. doi: 10.1002/chem.201301539. Epub 2013 Aug 1.

DOI:10.1002/chem.201301539
PMID:23913577
Abstract

A squaraine dye functionalized with a bulky trialkoxy phenyl moiety through a flexible diamide linkage (GA-SQ) capable of undergoing self-assembly has been synthesized and fully characterized. Rapid cooling of a hot solution of GA-SQ to 0 °C results in self-assembled precipitates consisting of two types of nanostructures, rings and ill-defined short fibers. The application of ultrasound modifies the conditions for the supersaturation-mediated nucleation, generating only one kind of nuclei and prompting the formation of crystalline fibrous structures, inducing gelation of solvent molecules. The unique self-assembling behavior of GA-SQ under ultrasound stimulus has been investigated in detail by using absorption, emission, FT-IR, XRD, SEM, AFM and TEM techniques. These studies reveal a nucleation growth mechanism of the self-assembled material, an aspect rarely scrutinized in the area of sonication-induced gelation. Furthermore, in order to probe the effects of nanoscale substrates on the sonication-induced self-assembly, a minuscule amount of single-walled carbon nanotubes was added, which leads to acceleration of the self-assembly through a heterogeneous nucleation process that ultimately affords a supramolecular gel with nanotape-like morphology. This study demonstrates that self-assembly of functional dyes can be judiciously manipulated by an external stimulus and can be further controlled by the addition of carbon nanotubes.

摘要

通过柔性二酰胺键将一个带有庞大三烷氧基苯基部分的方酸染料(GA-SQ)功能化,使其能够进行自组装。GA-SQ 的热溶液迅速冷却至 0°C,导致自组装沉淀由两种类型的纳米结构组成,即环和定义不明确的短纤维。超声应用改变了过饱和度介导成核的条件,只生成一种核,并促使形成结晶纤维结构,诱导溶剂分子凝胶化。通过吸收、发射、FT-IR、XRD、SEM、AFM 和 TEM 技术详细研究了 GA-SQ 在超声刺激下的独特自组装行为。这些研究揭示了自组装材料的成核生长机制,这是超声诱导凝胶化领域很少研究的方面。此外,为了探究纳米级基底对超声诱导自组装的影响,加入了少量的单壁碳纳米管,这通过异质成核过程加速了自组装,最终提供了具有纳米带形态的超分子凝胶。该研究表明,功能染料的自组装可以通过外部刺激进行巧妙地操纵,并可以通过添加碳纳米管进一步控制。

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