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超快激光分子调控等离子体刻蚀制备光响应多功能结构纳米晶

Ultrafast Laser Plasmonic Fabrication of Nanocrystals by Molecule Modulation for Photoresponse Multifunctional Structures.

机构信息

State Key Laboratory of Tribology in Advanced Equipment, Department of Mechanical Engineering, Tsinghua University, Beijing, 100084, China.

出版信息

Adv Mater. 2023 Jun;35(25):e2211983. doi: 10.1002/adma.202211983. Epub 2023 Apr 28.

Abstract

Nanotechnology has attracted wide research attention in constructing functional devices, including integrated circuits, transparent electrodes, and flexible actuators. Bottom-up fabrication is an important approach for functional structure manufacture, however, the controllable fabrication of complex architectures for practical applications has long been a challenge. Here, a novel strategy of laser plasmonic fabrication based on glue molecule modulation is proposed that can assemble metal nanocrystals into interconnected pattern networks. The plasmonic response of nanocrystals is adjustable with molecule modulation, which is a benefit for the effective formation of laser-induced localized oscillating electrons. The further decomposition of molecules and the movement of nanocrystal surface atoms can achieve the coalescence of assembled nanocrystals. It demonstrates that complex architectures can be controllably constructed by molecule level modulation. Through molecule-assisted laser plasmonic fabrication, the functional nanocrystals with enhanced photothermal capacity can be used for information encryption and soft machinery. This work expands the knowledge of bottom-up fabrication and provides a method for designing functional nanocrystals for a wide range of applications.

摘要

纳米技术在构建功能器件方面引起了广泛的研究关注,包括集成电路、透明电极和柔性致动器。自下而上的制造是制造功能结构的重要方法,然而,长期以来,对于实际应用的复杂结构的可控制造一直是一个挑战。在这里,提出了一种基于胶分子调制的激光等离子体制造的新策略,该策略可以将金属纳米晶体组装成相互连接的图案网络。纳米晶体的等离子体响应可以通过分子调制进行调节,这有利于有效形成激光诱导的局部振荡电子。分子的进一步分解和纳米晶体表面原子的运动可以实现组装纳米晶体的融合。这表明可以通过分子水平的调制来控制地构建复杂的结构。通过分子辅助激光等离子体制造,可以使用具有增强光热能力的功能性纳米晶体来进行信息加密和软机械。这项工作扩展了自下而上制造的知识,并为设计各种应用的功能性纳米晶体提供了一种方法。

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