首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile Stimuli-Responsive Transformation of Vesicle to Nanofiber to Supramolecular Gel via omega-Amino Acid-Based Dynamic Covalent Chemistry
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Facile Stimuli-Responsive Transformation of Vesicle to Nanofiber to Supramolecular Gel via omega-Amino Acid-Based Dynamic Covalent Chemistry

机译:通过基于ω-氨基酸的动态共价化学反应,将囊泡向纳米纤维转变为超分子凝胶

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摘要

This paper reports an interesting type of self assembly systems based on dynamic covalent bonds. The systems are pH-responsible and reversible, which could be utilized for controlling the morphology transformation of the assemblies. In alkaline conditions, the amine group of 11-aminoundecanoic acid (AUA) can connect with the aldehyde group of benzaldehyde (BA) or 1-naphthaledhyde (NA) by dynamic covalent bond to form a small organic building block accompanied by the morphological transformation from vesicles to fibers. When pH is lowered to a neutral value, the dynamic covalent bonds (imine bonds) can be hydrolyzed, leading to the dissociation of fibers and appearance of spherical aggregates. The transformation was confirmed reversible as fibers appeared again when the pH was changed back to alkaline value. In addition, a reversibly controlled gel was designed based on the nanofiber formation. NaCl, which is capable of greatly enhance the nanofiber density and cross-linking, was used to induce the growth of free-standing gel from free-flowing nanofiber system, and the resultant gel was proven: to be pH-reversible.
机译:本文报道了一种有趣的基于动态共价键的自组装系统。该系统对pH负责且可逆,可用于控制组件的形态转化。在碱性条件下,11-氨基十一酸(AUA)的胺基可以通过动态共价键与苯甲醛(BA)或1-萘乙醛(NA)的醛基连接,形成一个小的有机结构单元,并伴随着从囊泡到纤维。当pH降低至中性值时,动态的共价键(亚胺键)会被水解,从而导致纤维解离和出现球形聚集体。当pH值变回碱性值时,纤维再次出现,证实了这种转变是可逆的。另外,基于纳米纤维的形成设计了可逆控制的凝胶。 NaCl能够极大地提高纳米纤维的密度和交联能力,被用来诱导自由流动的纳米纤维系统中自立凝胶的生长,并且证明了所得的凝胶具有pH可逆性。

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