Ahn Junseong, Han Hyeonseok, Ha Ji-Hwan, Jeong Yongrok, Jung Young, Choi Jungrak, Cho Seokjoo, Jeon Sohee, Jeong Jun-Ho, Park Inkyu
Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Department of Nano Manufacturing Technology, Korea Institute of Machinery and Materials (KIMM), Daejeon, 34103, Republic of Korea.
Adv Mater. 2024 Jan;36(2):e2300871. doi: 10.1002/adma.202300871. Epub 2023 Nov 20.
The 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.
对作为功能基底、仿生器件、能源相关电子器件以及化学/物理传感器组件的微/纳层级结构的高需求,激发了对其深入研究以及相关制造技术的积极开发。特别是,在表面物理构建的层级结构方面取得了重大进展,这些结构具有广泛的材料兼容性、设计多样性和机械稳定性等优点,并且已经开发出了许多具有重要特定应用的独特结构。本综述根据功能/形状对表面物理构建的层级结构的基本组件进行分类,并全面总结相关进展,重点关注制造策略、基本组件的组合方式、潜在应用和未来研究方向。此外,基于表面物理构建的层级结构基本组件的功能,对其物理化学性质进行了比较,这可能有助于避免传统单尺度功能基底的瓶颈。因此,本工作有望为从事多组分功能基底研究的科学家提供有用的参考,并激发该领域的进一步研究。