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各向同性纳米粒子的溶致向列相通过半柔性聚合物配体。

Lyotropic Nematic Phases of Isotropic Nanoparticles via Semiflexible Polymer Ligands.

机构信息

Department of Chemistry and Centre québécois sur les matériaux fonctionnels/Quebec Centre for Advanced Materials (CQMF/QCAM), McGill University, 801 Sherbrooke St. W., Montreal, Quebec, H3A 0B8, Canada.

出版信息

Macromol Rapid Commun. 2023 Apr;44(8):e2200951. doi: 10.1002/marc.202200951. Epub 2023 Feb 22.

DOI:10.1002/marc.202200951
PMID:36700516
Abstract

Lyotropic liquid crystalline (LC) nanomaterials are normally achieved through particle shape anisotropy. Herein, it is shown that lyotropic nematic rather than cubic phases are produced from spherical nanoparticles (NPs) with semi-flexible polymer ligands. ZrO nanocrystals (4 nm dia.) are coated with a dense shell of poly(hexyl isocyanate) (PHIC), a helical rod-like polymer that forms lyotropic LC phases in a range of organic solvents. Solvent casted NPs with PHIC ligands above the persistence length form linear assemblies, separated by a characteristic distance related to the chain length while NPs with shorter, rigid rod PHIC ligands pack hexagonally. Concentrated NP-PHIC dispersions present nematic textures similar to the free PHIC nematic solutions but at lower critical concentrations, widening the isotropic-nematic biphasic region. H NMR spectra of the NPs dispersed in a deuterated solvent display quadrupolar splittings that increase with NP concentration, showing that the PHIC ligands are magnetically aligned. The high degree of orientation order is evidence that splaying of the ligand shell transforms the spherical NPs to rod-like shapes that assemble to produce nematic lyotropic LC phases and linear NP arrays. This approach to creating anisotropic assemblies can be extended to other types of spherical NPs and semiflexible polymers.

摘要

溶致液晶(LC)纳米材料通常通过颗粒形状各向异性来实现。本文表明,具有半柔性聚合物配体的球形纳米颗粒(NPs)会产生溶致向列相而不是立方相。ZrO 纳米晶体(4nm 直径)被聚己基异氰酸酯(PHIC)的致密壳层包裹,这是一种螺旋棒状聚合物,在一系列有机溶剂中形成溶致 LC 相。在大于持久长度的 PHIC 配体的 NPs 溶剂浇铸物形成线性组装体,它们之间的特征距离与链长有关,而具有较短刚性棒 PHIC 配体的 NPs 则呈六边形堆积。在较低的临界浓度下,浓度较高的 NP-PHIC 分散体呈现出与自由 PHIC 向列溶液相似的向列织构,但具有更宽的各向同性-向列双相区。分散在氘代溶剂中的 NPs 的 H NMR 光谱显示出与 NP 浓度成正比的四极分裂,表明 PHIC 配体具有磁各向异性。高度的取向有序性证明了配体壳的扩展将球形 NPs 转变为棒状形状,这些形状组装成溶致向列 LC 相和线性 NP 阵列。这种创建各向异性组装体的方法可以扩展到其他类型的球形 NPs 和半柔性聚合物。

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