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Low-Cost, Rapidly Responsive, Controllable, and Reversible Photochromic Hydrogel for Display and Storage

机译:低成本,快速响应,可控,可逆的光致变色水凝胶,用于显示和储存

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摘要

Traditional optoelectronic devices without stretchable performance could be limited for substrates with irregular shape. Therefore, it is urgent to explore a new generation of flexible, stretchable, and low-cost intelligent vehicles as visual display and storage devices, such as hydrogels. In the investigation, a novel photochromic hydrogel was developed by introducing the negatively charged ammonium molybdate as a photochromic unit into polyacrylamide via ionic and covalent cross-linking. The hydrogel exhibited excellent properties of low cost, easy preparation, stretchable deformation, fatigue resistance, high transparency, and second-order response to external signals. Moreover, the photochromic and fading process of hydrogels could be precisely controlled and repeated under the irradiation of UV light and exposure of oxygen at different time and temperature. The photochromic hydrogel could be considered applied for artificial intelligence system, wearable healthcare device, and flexible memory device. Therefore, the strategy for designing a soft photochromic material would open a new direction to manufacture flexible and stretchable devices.
机译:没有可拉伸性能的传统光电器件可能限于具有不规则形状的基板。因此,迫切需要探索新一代灵活,可伸缩和低成本的智能车辆,作为视觉显示和存储设备,例如水凝胶。在调查中,通过将带负电荷的钼酸铵作为光致变色单元引入聚丙烯酰胺,通过离子和共价交联来开发一种新颖的光致变色水凝胶。水凝胶表现出优异的低成本性能,易于制备,可伸缩变形,疲劳性,高透明度和对外信号的二阶响应。此外,水凝胶的光致变色和褪色过程可以在紫外线辐射和不同时间和温度下的氧气暴露下进行精确控制和重复。光致变色水凝胶可以考虑应用于人工智能系统,可穿戴医疗保健装置和柔性存储器件。因此,设计软光致变色材料的策略将打开制造柔性和可拉伸装置的新方向。

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