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通过纳米晶/体异质结构的化学机械转化进行 3D 纳米制造。

3D Nanofabrication via Chemo-Mechanical Transformation of Nanocrystal/Bulk Heterostructures.

机构信息

Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, PA, 19104, USA.

Department of Chemistry, University of Pennsylvania, Philadelphia, PA, 19104, USA.

出版信息

Adv Mater. 2018 May;30(22):e1800233. doi: 10.1002/adma.201800233. Epub 2018 Apr 15.

Abstract

Planar nanocrystal/bulk heterostructures are transformed into 3D architectures by taking advantage of the different chemical and mechanical properties of nanocrystal and bulk thin films. Nanocrystal/bulk heterostructures are fabricated via bottom-up assembly and top-down fabrication. The nanocrystals are capped by long ligands introduced in their synthesis, and therefore their surfaces are chemically addressable, and their assemblies are mechanically "soft," in contrast to the bulk films. Chemical modification of the nanocrystal surface, exchanging the long ligands for more compact chemistries, triggers large volume shrinkage of the nanocrystal layer and drives bending of the nanocrystal/bulk heterostructures. Exploiting the differential chemo-mechanical properties of nanocrystal and bulk materials, the scalable fabrication of designed 3D, cell-sized nanocrystal/bulk superstructures is demonstrated, which possess unique functions derived from nanocrystal building blocks.

摘要

利用纳米晶体和体薄膜之间不同的化学和机械性能,将面内纳米晶体/体异质结构转变为 3D 结构。纳米晶体/体异质结构通过自下而上的组装和自上而下的制造来制造。纳米晶体在其合成过程中引入长配体进行封端,因此其表面具有化学可寻址性,并且其组装体在机械上是“柔软的”,与体薄膜形成对比。通过对纳米晶体表面进行化学修饰,用更紧凑的化学物质取代长配体,会引发纳米晶体层的大体积收缩,并导致纳米晶体/体异质结构的弯曲。利用纳米晶体和体材料之间的差异化学机械性能,成功演示了可扩展制造设计的 3D、细胞大小的纳米晶体/体超结构,这些超结构具有源自纳米晶体构建块的独特功能。

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