Micro‐/Nanohierarchical Structures Physically Engineered on Surfaces: Analysis and Perspective

Author:

Ahn Junseong12ORCID,Han Hyeonseok1ORCID,Ha Ji‐Hwan12ORCID,Jeong Yongrok12,Jung Young1,Choi Jungrak1,Cho Seokjoo1,Jeon Sohee2,Jeong Jun‐Ho2,Park Inkyu1ORCID

Affiliation:

1. Department of Mechanical Engineering Korea Advanced Institute of Science and Technology (KAIST) Daejeon 34141 Republic of Korea

2. Department of Nano Manufacturing Technology Korea Institute of Machinery and Materials (KIMM) Daejeon 34103 Republic of Korea

Abstract

AbstractThe high demand for micro‐/nanohierarchical structures as components of functional substrates, bioinspired devices, energy‐related electronics, and chemical/physical transducers has inspired their in‐depth studies and active development of the related fabrication techniques. In particular, significant progress has been achieved in hierarchical structures physically engineered on surfaces, which offer the advantages of wide‐range material compatibility, design diversity, and mechanical stability, and numerous unique structures with important niche applications have been developed. This review categorizes the basic components of hierarchical structures physically engineered on surfaces according to function/shape and comprehensively summarizes the related advances, focusing on the fabrication strategies, ways of combining basic components, potential applications, and future research directions. Moreover, the physicochemical properties of hierarchical structures physically engineered on surfaces are compared based on the function of their basic components, which may help to avoid the bottlenecks of conventional single‐scale functional substrates. Thus, the present work is expected to provide a useful reference for scientists working on multicomponent functional substrates and inspire further research in this field.

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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