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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Domed Silica Microcylinders Coated with Oleophilic Polypeptides and Their Behavior in Lyotropic Cholesteric Liquid Crystals of the Same Polypeptide
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Domed Silica Microcylinders Coated with Oleophilic Polypeptides and Their Behavior in Lyotropic Cholesteric Liquid Crystals of the Same Polypeptide

机译:亲油性多肽包被的半球形二氧化硅微圆筒及其在相同多肽的溶致性胆甾型液晶中的行为

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摘要

Liquid crystals can organize dispersed particles into useful and exotic structures. In the case of lyotropic cholesteric polypeptide liquid crystals, polypeptide-coated particles are appealing because the surface chemistry matches that of the polymeric mesogen, which permits a tighter focus on factors such as extended particle shape. The colloidal particles developed here consist of a magnetic and fluorescent cylindrically symmetric silica core with one rounded, almost hemispherical end. Functionalized with helical poly(gamma-stearyl-L-glutamate) (PSLG), the particles were dispersed at different concentrations in cholesteric liquid crystals (ChLC) of the same polymer in tetrahydrofuran (THF). Defects introduced by the particles to the director field of the bulk PSLG/THF host led to a variety of phases. In fresh mixtures, the cholesteric mesophase of the PSLG matrix was distorted, as reflected in the absence of the characteristic fingerprint pattern. Over time, the fingerprint pattern returned, more quickly when the concentration of the PSLG-coated particles was low. At low particle concentration the particles were "guided" by the PSLG liquid crystal to organize into patterns similar to that of the re-formed bulk chiral nematic phase. When their concentration increased, the well-dispersed PSLG-coated particles seemed to map onto the distortions in the bulk host's local director field. The particles located near the glass vial-ChLC interfaces were stacked lengthwise into architectures with apparent two-dimensional hexagonal symmetry. The size of these "crystalline" structures increased with particle concentration. They displayed remarkable stability toward an external magnetic field; hydrophobic interactions between the PSLG polymers in the shell and those in the bulk LC matrix may be responsible. The results show that bio-inspired LCs can assemble suitable colloidal particles into soft crystalline structures.
机译:液晶可以将分散的粒子组织成有用的奇异结构。在溶致胆甾型多肽液晶的情况下,多肽包被的颗粒是有吸引力的,因为其表面化学性质与聚合的液晶元相匹配,这使得人们可以更加集中地关注诸如扩展的颗粒形状等因素。在此形成的胶体粒子由磁性和荧光圆柱对称的二氧化硅核组成,该核具有一个圆形的,几乎半球形的末端。用螺旋型聚(γ-硬脂基-L-谷氨酸)(PSLG)功能化,将颗粒以不同浓度分散在相同聚合物在四氢呋喃(THF)中的胆甾型液晶(ChLC)中。粒子引入到大量PSLG / THF主体的导向器场的缺陷导致了各种阶段。在新鲜混合物中,PSLG基质的胆甾型中间相发生了扭曲,这反映在没有特征指纹模式的情况下。随着时间的流逝,当PSLG涂层颗粒的浓度较低时,指纹图案会更快返回。在低颗粒浓度下,颗粒由PSLG液晶“引导”以组织成与重新形成的本体手性向列相相似的图案。当它们的浓度增加时,分散良好的PSLG涂层颗粒似乎会映射到大块宿主的本地导向器场中的变形。将位于玻璃样品瓶-ChLC界面附近的颗粒纵向堆叠成具有明显的二维六角形对称性的结构。这些“晶体”结构的尺寸随颗粒浓度而增加。它们对外部磁场表现出卓越的稳定性。壳中PSLG聚合物与本体LC基质中PSLG聚合物之间的疏水相互作用可能是造成这种情况的原因。结果表明,受生物启发的LC可以将合适的胶体颗粒组装成软晶体结构。

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