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Self-assembly of biocidal nanotubes from a single-chain diacetylene amine salt

机译:由单链二乙炔胺盐自组装杀生物纳米管

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We describe the facile two-step synthesis of nanotubes that form pure, well-defined, nanostructured materials. We have synthesized a secondary amine HBr salt as the headgroup of a single-chain diacetylenic lipid. This molecule can form a number of different self-assembled nanostructures in aqueous or organic solvents. In water, this lipid forms a monodisperse preparation of nanotubes at high yields. Partially dissolving a preparation of nanotubes dried from aqueous solution results in a remarkably organized structure that resembles a nanocarpet. Details of the nanotube structure were investigated by scanning electron microscopy, transmission electron microscopy, and small-angle X-ray spectroscopy. The aqueous nanotubes have a cross-sectional diameter of 89 nm. The walls of the tubes are an exquisitely uniform 27 nm thick and are shown to consist of five lipid bilayers with a repeat spacing of 57.8 Angstrom. The chemical structure of the material shows no chiral centers, but suspensions of the nanotubes in an aqueous medium show an unexpected circular dichroism signal. The versatility of this new material as a platform for nanostructure design and synthesis is enhanced by its biocidal activity. This antimicrobial activity along with the regularity the nanostructures will enhance the development of a range of applications from biosensors to artificial retinas.
机译:我们描述了形成纯净,定义明确的纳米结构材料的纳米管的轻松两步合成。我们已经合成了仲胺HBr盐作为单链二炔脂质的头基。该分子可以在水性或有机溶剂中形成许多不同的自组装纳米结构。在水中,这种脂质以高产率形成纳米管的单分散制剂。从水溶液中干燥的纳米管制剂的部分溶解会产生类似于纳米地毯的明显组织的结构。通过扫描电子显微镜,透射电子显微镜和小角度X射线光谱研究了纳米管结构的细节。水性纳米管的横截面直径为89nm。管壁非常均匀,厚度为27 nm,显示为由五个脂质双层组成,重复间隔为57.8埃。该材料的化学结构未显示手性中心,但纳米管在水性介质中的悬浮液显示出意外的圆二色性信号。这种新材料作为纳米结构设计和合成平台的多功能性因其杀菌活性而得到增强。这种抗菌活性以及纳米结构的规律性将促进从生物传感器到人工视网膜的一系列应用的发展。

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