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用于高性能能量收集的设计型多肽-PVDF 复合薄膜。

Designer Peptide-PVDF Composite Films for High-Performance Energy Harvesting.

机构信息

Department of Physics, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, Delhi, 110016, India.

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, Delhi, 110016, India.

出版信息

Macromol Rapid Commun. 2022 Dec;43(23):e2200493. doi: 10.1002/marc.202200493. Epub 2022 Aug 2.

Abstract

Polymers and peptides have recently been considered as promising materials for piezoelectric energy harvesting because of their biocompatibility and enormous design possibility. However, achieving significant output voltages while meeting environmental safety requirements, low cost, and easy fabrication remains a major challenge. Herein, lipidated pseudopeptide incorporated poly(vinylidene fluoride) (PVDF) composite films are fabricated. Adding lipidated pseudopeptide (BLHA) increases the electroactive phase content, reaching the maximum for the 2 wt% composite film. The composite film containing 2 wt% BLHA manifests the highest dielectric constant and remnant polarization (P ), among others. A piezoelectric energy harvesting device fabricated with this film generates open-circuit output voltages up to 23 V, five times amplified output compared to pure PVDF. To the best of our knowledge, this material is superior among the peptide-based piezoelectric energy harvesters reported in the literature. The device is flexible, durable, low cost, and sensitive to high and low pressures. It can power up multiple liquid crystal display panels when pressed with a finger. The non-covalent interaction between BLHA and PVDF is the reason behind the composites' improved piezoelectric response. Density functional theory calculations also support this notion.

摘要

聚合物和肽最近因其生物相容性和巨大的设计可能性而被认为是有前途的压电能量收集材料。然而,在满足环境安全性要求、低成本和易于制造的前提下,获得显著的输出电压仍然是一个主要挑战。本文制备了脂质化假肽掺入的聚偏二氟乙烯 (PVDF) 复合膜。添加脂质化假肽 (BLHA) 增加了电活性相含量,对于 2wt%的复合膜达到最大值。含 2wt%BLHA 的复合膜表现出最高的介电常数和剩余极化 (P) 等。用这种薄膜制造的压电能量收集装置产生的开路输出电压高达 23V,比纯 PVDF 放大了五倍。据我们所知,与文献中报道的基于肽的压电能量收集器相比,这种材料具有优越性。该器件具有柔韧性、耐用性、低成本和对高低压的敏感性。当用手指按压时,它可以为多个液晶显示面板供电。BLHA 和 PVDF 之间的非共价相互作用是复合材料压电响应得到改善的原因。密度泛函理论计算也支持这一观点。

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