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形状导向的各向异性纳米片的二元组装:具有形状互补构筑块的纳米晶拼图。

Shape-directed binary assembly of anisotropic nanoplates: a nanocrystal puzzle with shape-complementary building blocks.

机构信息

Department of Chemistry, University of Pennsylvania, 231 S. 34th Street, Philadelphia, Pennsylvania 19104, USA.

出版信息

Nano Lett. 2013 Jun 12;13(6):2952-6. doi: 10.1021/nl401370n. Epub 2013 May 17.

Abstract

We present the binary self-assembly of two anisotropic nanoplate building blocks mediated by shape complementarity. We use rhombic GdF3 and tripodal Gd2O3 nanoplates as building blocks in which the size and shape are designed to be optimal for complementary organization. A liquid interfacial assembly technique allows the formation of self-assembled binary superlattices from two anisotropic nanoplates over a micrometer length scale. Shape-directed self-assembly guides the position of each anisotropic nanoplate in the binary superlattices, allowing for long-range orientational and positional order of each building block. The design of shape complementary anisotropic building blocks offers the possibility to self-assemble binary superlattices with predictable and designable structures.

摘要

我们展示了由形状互补介导的两种各向异性纳米板构建基元的二进制自组装。我们使用菱形 GdF3 和三脚架 Gd2O3 纳米板作为构建基元,其尺寸和形状被设计为互补组织的最佳状态。液相间组装技术允许在微米长度尺度上从两个各向异性纳米板形成自组装的二进制超晶格。形状导向的自组装指导每个各向异性纳米板在二进制超晶格中的位置,允许每个构建块的长程取向和位置有序。形状互补各向异性构建基元的设计提供了自组装具有可预测和可设计结构的二进制超晶格的可能性。

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