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用于能量收集和水收集装置的球形微/纳分级结构

Spherical Micro/Nano Hierarchical Structures for Energy and Water Harvesting Devices.

作者信息

Jung Young, Ahn Junseong, Kim Ji-Seok, Ha Ji-Hwan, Shim Jaehwan, Cho Hanchul, Oh Yong Suk, Yoon Yong-Jin, Nam Youngsuk, Oh Il-Kwon, Jeong Jun-Ho, Park Inkyu

机构信息

Department of Mechanical Engineering, Korean 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.

出版信息

Small Methods. 2022 Jul;6(7):e2200248. doi: 10.1002/smtd.202200248. Epub 2022 May 4.

DOI:10.1002/smtd.202200248
PMID:35507776
Abstract

Three-dimensional (3D) hierarchical structures have been explored for various applications owing to the synergistic effects of micro- and nanostructures. However, the development of spherical micro/nano hierarchical structures (S-HSs), which can be used as energy/water harvesting systems and sensing devices, remains challenging owing to the trade-off between structural complexity and fabrication difficulty. This paper presents a new strategy for facile, scalable S-HS fabrication using a thermal expansion of microspheres and nanopatterned structures. When a specific temperature is applied to a composite film of microspheres and elastomers with nanopatterned surfaces, microspheres are expanded and 3D spherical microstructures are generated. Various nanopatterns and densities of spherical microstructures can thereby be quantitatively controlled. The fabricated S-HSs have been used in renewable electrical energy harvesting and sustainable water management applications. Compared to a triboelectric nanogenerator (TENG) with bare film, the S-HS-based TENG exhibited 4.48 times higher triboelectric performance with high mechanical durability. Furthermore, an S-HS is used as a water harvesting device to capture water in a fog environment. The water collection rate is dramatically enhanced by the increased surface area and locally concentrated vapor diffusion flux due to the spherical microstructures.

摘要

由于微纳结构的协同效应,三维(3D)分级结构已被用于各种应用。然而,球形微/纳分级结构(S-HSs)的开发仍然具有挑战性,因为它可作为能量/水收集系统和传感设备,但在结构复杂性和制造难度之间存在权衡。本文提出了一种利用微球热膨胀和纳米图案结构轻松、可扩展地制造S-HS的新策略。当对具有纳米图案表面的微球和弹性体复合膜施加特定温度时,微球会膨胀并生成3D球形微结构。由此可以定量控制各种纳米图案和球形微结构的密度。所制造的S-HSs已用于可再生电能收集和可持续水管理应用。与具有裸膜的摩擦纳米发电机(TENG)相比,基于S-HS的TENG表现出高4.48倍的摩擦电性能和高机械耐久性。此外,S-HS用作水收集装置,在雾环境中捕获水。由于球形微结构增加的表面积和局部集中的蒸汽扩散通量,集水率显著提高。

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