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Crack engineering for the construction of arbitrary hierarchical architectures.


ABSTRACT: Three-dimensional hierarchical morphologies widely exist in natural and biomimetic materials, which impart preferential functions including liquid and mass transport, energy conversion, and signal transmission for various applications. While notable progress has been made in the design and manufacturing of various hierarchical materials, the state-of-the-art approaches suffer from limited materials selection, high costs, as well as low processing throughput. Herein, by harnessing the configurable elastic crack engineering-controlled formation and configuration of cracks in elastic materials-an effect normally avoided in various industrial processes, we report the development of a facile and powerful technique that enables the faithful transfer of arbitrary hierarchical structures with broad material compatibility and structural and functional integrity. Our work paves the way for the cost-effective, large-scale production of a variety of flexible, inexpensive, and transparent 3D hierarchical and biomimetic materials.

SUBMITTER: Li W 

PROVIDER: S-EPMC6883777 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Crack engineering for the construction of arbitrary hierarchical architectures.

Li Wanbo W   Yu Miao M   Sun Jing J   Mochizuki Kentaro K   Chen Siyu S   Zheng Huanxi H   Li Jiaqian J   Yao Shuhuai S   Wu Hongkai H   Ong Beng S BS   Kawata Satoshi S   Wang Zuankai Z   Ren Kangning K  

Proceedings of the National Academy of Sciences of the United States of America 20191107 48


Three-dimensional hierarchical morphologies widely exist in natural and biomimetic materials, which impart preferential functions including liquid and mass transport, energy conversion, and signal transmission for various applications. While notable progress has been made in the design and manufacturing of various hierarchical materials, the state-of-the-art approaches suffer from limited materials selection, high costs, as well as low processing throughput. Herein, by harnessing the configurabl  ...[more]

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