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咖啡环介导的印刷聚合物微滴变薄及厚度依赖的去湿模式与量子点组装相结合用于防伪

Coffee-Ring Mediated Thinning and Thickness-Dependent Dewetting Modes in Printed Polymer Droplets Coupled with Assembly of Quantum Dots for Anti-Counterfeiting.

作者信息

Torun Ilker, Huang Conan, Kiremitler N Burak, Kalay Mustafa, Shim Moonsub, Onses Mustafa Serdar

机构信息

Department of Materials Science and Engineering, Erciyes University, Kayseri, 38039, Turkey.

ERNAM - Nanotechnology Application and Research Center, Erciyes University, Kayseri, 38039, Turkey.

出版信息

Small. 2024 Nov;20(45):e2405429. doi: 10.1002/smll.202405429. Epub 2024 Jul 30.

Abstract

Molecular transport processes in printed polymer droplets hold enormous importance for understanding wetting phenomena and designing systems in applications such as encoding, electronics, photonics, and sensing. This paper studies thickness-dependent dewetting modes that are activated by thermal annealing and driven by interfacial interactions within microscopically confined polymeric features. The printing of poly(2-vinylpyridine) is performed in a regime where coffee-ring effects lead to strong thinning of the central region of the deposit. Thermal annealing leads to two different modes of dewetting that depend on the thickness of the central region. Mode I refers to the formation of randomly positioned small features surrounded by large hemispherical ones located along the periphery of the printed features and occurs when the central regions are thin. Observed at large central thicknesses, Mode II mediates significant molecular transport from edges toward the center of the printed droplet with thermal annealing and forms a hemispherical feature from the initial ring-like deposit. The selective adsorption of red, green, and blue emitting quantum dots over the poly(2-vinylpyridine) results in photoluminescent patterns. The selective assembly of photoluminescent quantum dots over patterned surfaces leads to deterministic and stochastic features beneficial to creating security labels for anti-counterfeiting applications.

摘要

印刷聚合物微滴中的分子传输过程对于理解润湿现象以及设计诸如编码、电子、光子学和传感等应用系统具有极其重要的意义。本文研究了由热退火激活并由微观受限聚合物特征内的界面相互作用驱动的厚度依赖型去湿模式。聚(2-乙烯基吡啶)的印刷是在一种咖啡环效应导致沉积物中心区域强烈变薄的情况下进行的。热退火导致两种不同的去湿模式,这取决于中心区域的厚度。模式I是指沿着印刷特征的周边形成由大半球形包围的随机定位的小特征,当中心区域较薄时会出现这种情况。在较大的中心厚度下观察到,模式II通过热退火介导从边缘向印刷微滴中心的显著分子传输,并从初始的环状沉积物形成一个半球形特征。红色、绿色和蓝色发光量子点在聚(2-乙烯基吡啶)上的选择性吸附产生了光致发光图案。光致发光量子点在图案化表面上的选择性组装导致了确定性和随机性特征,有利于为防伪应用创建安全标签。

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