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基于有机-无机杂化钙钛矿的热致变色可印刷多色聚合物复合材料。

Thermochromic Printable and Multicolor Polymeric Composite Based on Hybrid Organic-Inorganic Perovskite.

作者信息

Cinquino Marco, Prontera Carmela Tania, Giuri Antonella, Pugliese Marco, Giannuzzi Roberto, Maggiore Antonio, Altamura Davide, Mariano Fabrizio, Gigli Giuseppe, Esposito Corcione Carola, Giannini Cinzia, Rizzo Aurora, De Marco Luisa, Maiorano Vincenzo

机构信息

CNR NANOTEC - Institute of Nanotechnology, Nationa Research Council, c/o Campus Ecotekne, Via Monteroni, Lecce, 73100, Italy.

Dipartimento di Matematica e Fisica E. De Giorgi, Università Del Salento, Campus Ecotekne, via Monteroni, Lecce, 73100, Italy.

出版信息

Adv Mater. 2024 Jan;36(2):e2307564. doi: 10.1002/adma.202307564. Epub 2023 Nov 27.

Abstract

Hybrid organic-inorganic perovskites (PVKs) are among the most promising materials for optoelectronic applications thanks to their outstanding photophysical properties and easy synthesis. Herein, a new PVK-based thermochromic composite is demonstrated. It can reversibly switch from a transparent state (transmittance > 80%) at room temperature to a colored state (transmittance < 10%) at high temperature, with very fast kinetics, taking only a few seconds to go from the bleached to the colored state (and vice versa). X-ray diffraction, Fourier-transform infrared spectroscopy, differential scanning calometry, rheological, and optical measurements carried out during heating/cooling cycles reveal that thermochromism in the material is based on a reversible process of PVK disassembly/assembly mediated by intercalating polymeric chains, through the formation and breaking of hydrogen bonds between polymer and perovskite. Therefore, differently from other thermochromic perovskites, that generally work with the adsorption/desorption of volatile molecules, the system is able to perform several heating/cooling cycles regardless of environmental conditions. The color and transition temperature (from 70 to 120 °C) can be tuned depending on the type of perovskite. Moreover, this thermochromic material is printable and can be deposited by cheap techniques, paving the way for a new class of smart coatings with an unprecedented range of colors.

摘要

有机-无机杂化钙钛矿(PVKs)因其出色的光物理性质和易于合成,成为最有前途的光电应用材料之一。在此,展示了一种新型的基于PVK的热致变色复合材料。它能在室温下从透明状态(透过率>80%)可逆地转变为高温下的有色状态(透过率<10%),动力学速度非常快,从漂白状态转变为有色状态(反之亦然)仅需几秒钟。在加热/冷却循环过程中进行的X射线衍射、傅里叶变换红外光谱、差示扫描量热法、流变学和光学测量表明,该材料的热致变色基于由嵌入聚合物链介导的PVK拆卸/组装的可逆过程,通过聚合物与钙钛矿之间氢键的形成和断裂来实现。因此,与其他通常通过挥发性分子的吸附/解吸起作用的热致变色钙钛矿不同,该系统能够在任何环境条件下进行多次加热/冷却循环。颜色和转变温度(70至120°C)可根据钙钛矿的类型进行调节。此外,这种热致变色材料可印刷,并且可以通过廉价技术沉积,为一类具有前所未有的颜色范围的新型智能涂层铺平了道路。

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