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Monochromatic Photoinitibitor‐Mediated Holographic Photopolymer Electrolytes for Lithium‐Ion Batteries

机译:用于锂离子电池的单色光引发剂介导的全息光敏聚合物电解质

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摘要

A new polymer electrolyte based on holographic photopolymer is designed and fabricated. Ethylene carbonate (EC) and propylene carbonate (PC) are introduced as the photoinert substances. Upon laser‐interference‐pattern illumination, photopolymerization occurs within the constructive regions which subsequently results in a phase separation between the photogenerated polymer and unreacted EC–PC, affording holographic photopolymer electrolytes (HPEs) with a pitch of ≈740 nm. Interestingly, both diffraction efficiency and ionic conductivity increase with an augmentation of the EC–PC content. With 50 wt% of EC–PC, the diffraction efficiency and ionic conductivity are ≈60% and 2.13 × 10−4 S cm−1 at 30 °C, respectively, which are 60 times and 5 orders of magnitude larger than the electrolyte without EC–PC. Notably, the HPEs afford better anisotropy and more stable electrochemical properties when incorporating N,N‐dimethylacrylamide. The HPEs exhibit good toughness under bending, excellent optical transparency under ambient conditions, and astonishing capabilities of reconstructing colored images. The HPEs here open a door to design flexible and transparent electronics with good mechanical, electrical, and optical functions.
机译:设计并制造了一种基于全息光敏聚合物的新型聚合物电解质。引入碳酸亚乙酯(EC)和碳酸亚丙酯(PC)作为光惰性物质。在激光干涉图案照射下,光聚合发生在结构性区域内,随后导致光生聚合物与未反应的EC-PC之间发生相分离,从而提供间距约为740 nm的全息光聚合物电解质(HPE)。有趣的是,随着EC-PC含量的增加,衍射效率和离子电导率均增加。在50%(重量)的EC–PC下,在30°C时的衍射效率和离子电导率分别为≈60%和2.13×10 −4 S cm -1 。它比不带EC–PC的电解质大60倍和5个数量级。值得注意的是,当掺入N,N-二甲基丙烯酰胺时,HPE具有更好的各向异性和更稳定的电化学性能。 HPE在弯曲下表现出良好的韧性,在环境条件下具有出色的光学透明度,并具有惊人的重建彩色图像的能力。此处的HPE为设计具有良好的机械,电气和光学功能的灵活透明的电子产品打开了一扇门。

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