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contributor authorHe, Yali
contributor authorGan, Qiaoqiang
contributor authorHu, Yaowu
date accessioned2026-08-23T07:16:38Z
date available2026-08-23T07:16:38Z
date copyright2026/07/01
date issued2026
identifier issn1087-1357
identifier othermanu-26-1095.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4314876
description abstractAbstract. Plasmonic color arises from the resonance interaction between light and the metallic surface of nanostructures. Unlike conventional dye-based technologies, plasmonic color offers several advantages, including sub-wavelength resolution, vibrant hues, and long-term stability without fading. These properties make plasmonic color promising for applications in multifunctional pattern coloration, anti-counterfeiting labels, and high-density data storage. However, current plasmonic color-printing techniques often rely on costly and complex equipment. In this study, we present a novel, reversible plasmonic color-printing technology that combines laser shock processing with heat treatment, providing a highly efficient method for color printing. The results demonstrate that vivid plasmonic colors can be dynamically and reversibly controlled by modulating the geometrical dimensions and crystallinity of the nanostructure. Moreover, through molecular dynamics simulations, the underlying physical mechanism behind the reversible reshaping of metallic nanoparticles is explored in detail. This innovative approach holds significant potential for applications in plasmonic sensors, energy harvesters, and nanolithography systems.
publisherThe American Society of Mechanical Engineers (ASME)
titleReshaping of Metallic Nanoparticles for Reversible Plasmonic Color Printing
typeJournal Paper
journal volume148
journal issue7
journal titleJournal of Manufacturing Science and Engineering
identifier doi10.1115/1.4071708
journal fristpage786
journal lastpage787
page2
treeJournal of Manufacturing Science and Engineering:;2026:;volume( 148 ):;issue:007
contenttypeFulltext


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