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将有机晶体掺入取向纳米晶体的间隙中:形态与性质

Incorporation of organic crystals into the interspace of oriented nanocrystals: morphologies and properties.

作者信息

Munekawa Yurika, Oaki Yuya, Sato Kosuke, Imai Hiroaki

机构信息

Department of Applied Chemistry, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.

出版信息

Nanoscale. 2015 Feb 28;7(8):3466-73. doi: 10.1039/c4nr05317f.

Abstract

Oriented nanocrystals, as seen in biominerals, have both the macroscopic hierarchical morphologies and the nanoscale interspace among the unit crystals. Here we studied the incorporation effects of the specific interspace in the oriented nanocrystals on the morphologies, properties, and applications of organic crystals. Organic crystals, such as 9-vinylcarbazole (VCz), azobenzene (AB), and pyrene (PY), were introduced into the specific interspace of oriented nanocrystals from the melts. The morphologies and properties of the incorporated organic crystals were systematically studied in these model cases. The incorporation of the organic crystals provided the composites with the original oriented nanocrystals. The incorporated organic crystals formed the single-crystalline structures even in the nanoscale interspace. The melts of the organic compounds were crystallized and grown in the interspace of the original materials. The incorporated organic crystals showed the specific phase transition behavior. The freezing points of the organic crystals were raised by the incorporation into the nanospace while the melting points were not changed. The hierarchical morphologies of the organic crystals were obtained after the dissolution of the original materials. The hierarchical morphologies of the original materials were replicated to the organic crystals. The incorporated organic crystal was polymerized without deformation of the hierarchical morphologies. The hierarchical polymer can be applied to the donor material for the generation of a larger amount of the charge-transfer complex with the acceptor molecule than the commercial polymer microparticles. The present work shows the potential use of the nanoscale interspace generated in the oriented nanocrystals.

摘要

如在生物矿物中所见,取向纳米晶体兼具宏观层次形态和单位晶体间的纳米级间隙。在此,我们研究了取向纳米晶体中特定间隙对有机晶体形态、性质及应用的掺入效应。将有机晶体,如9-乙烯基咔唑(VCz)、偶氮苯(AB)和芘(PY),从熔体引入到取向纳米晶体的特定间隙中。在这些模型案例中系统研究了掺入有机晶体的形态和性质。有机晶体的掺入为复合材料提供了原始的取向纳米晶体。即使在纳米级间隙中,掺入的有机晶体也形成了单晶结构。有机化合物的熔体在原始材料的间隙中结晶并生长。掺入的有机晶体表现出特定的相变行为。有机晶体掺入纳米空间后其凝固点升高,而熔点不变。原始材料溶解后获得了有机晶体的层次形态。原始材料的层次形态被复制到有机晶体上。掺入的有机晶体在层次形态未变形的情况下发生聚合。与商业聚合物微粒相比,这种层次聚合物可作为供体材料用于与受体分子生成大量电荷转移复合物。本工作展示了取向纳米晶体中产生的纳米级间隙的潜在用途。

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