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Supramolecular Approach to Polymer-Shape Transformation via Calixarene-Fullerene Complexation

机译:通过Calixarene-Fulerene络合的超分子化聚合物形状转化的方法

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摘要

We synthesized fullerene-terminated polymethyl methacrylates (PMMAs), linear ditopic calix[5]arene host, and branched tritopic calix[5]arene host. The calix[5]arene hosts bound to the fullerene moieties of the PMMAs, inducing shape transformation among three different polymer shapes, namely, short PMMA, long PMMA, and star-shaped PMMA, in solution. The transformation was studied using UV/vis spectroscopy, fluorescence spectroscopy, diffusion ordered NMR spectroscopy, size-exclusion chromatography, viscometry, and differential scanning calorimetry. Dynamic light scattering measurements confirmed that the transformation between the individual shapes was induced by application of external stimuli, including prechosen molecules and heating of the solution. Of particular note is that atomic force microscopy revealed that PMMA illustrated an additional shape, namely, a spherical shape, in the solid state due to the cohesive nature of its fullerene moiety. The present study illustrated that a supramolecular approach to polymer-shape regulation allows access to multiple distinct polymer shapes in sequence.
机译:我们合成富勒烯封端的聚甲基丙烯酸甲酯(PMAMS),线性多透视胶片[5]芳烃宿主和支链序列[5]芳烃宿主。 Calix [5]芳烃主体与PMAS的富勒烯部分绑定,在溶液中诱导三种不同的聚合物形状,即短的PMMA,长PMMA和星形PMMA之间的形状转换。使用UV / Vis光谱,荧光光谱,扩散有序NMR光谱,尺寸排阻色谱,粘度和差示扫描量热法进行转化。动态光散射测量证实,通过施用外部刺激,包括所需分子和溶液的加热诱导各种形状之间的转化。特别值得注意的是,由于其富勒烯部分的粘性性质,原子力显微镜显得揭示了PMMA所示的额外形状,即球形,在固态中。本研究说明了对聚合物形状调节的超分子方法允许依次获得多种不同的聚合物形状。

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