自然とプラスチックが持続可能なソフトマテリアルのブレークスルーを促す(Nature and plastics inspire breakthrough in soft sustainable materials)

2024-10-09 ノースウェスタン大学

ノースウェスタン大学の研究者は、ペプチドとプラスチックの分子を組み合わせた新しい柔軟な電気活性材料を開発しました。この材料は、低電力でのエネルギー貯蔵や情報記録が可能で、医療デバイスやウェアラブル技術に応用できる可能性があります。特に、従来の硬い電気活性材料に比べて、軽量で生分解性があり、環境負荷を低減します。また、非常に低電圧で電気的な極性を切り替えられるため、エネルギー効率が高く、新しいデバイス設計の可能性を広げます。

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超分子フッ化ビニリデン強誘電体相のペプチドプログラミング Peptide programming of supramolecular vinylidene fluoride ferroelectric phases

Yang Yang,Hiroaki Sai,Simon A. Egner,Ruomeng Qiu,Liam C. Palmer & Samuel I. Stupp
Nature  Published:09 October 2024
DOI:https://doi.org/10.1038/s41586-024-08041-4

extended data figure 1

Abstract

Ferroelectric structures have spontaneous macroscopic polarization that can be inverted using external electric fields and have potential applications including information storage, energy transduction, ultralow-power nanoelectronics1,2 and biomedical devices3. These functions would benefit from nanoscale control of ferroelectric structure, the ability to switch polarization with lower applied fields (low coercive field) and biocompatibility. Soft ferroelectrics based on poly(vinylidene fluoride) (PVDF)4,5,6 have a thermodynamically unstable ferroelectric phase in the homopolymer, complex semi-crystalline structures, and high coercive fields. Here we report on ferroelectric materials formed by water-soluble molecules containing only six VDF repeating units covalently conjugated to a tetrapeptide, with the propensity to assemble into the β-sheet structures that are ubiquitous in proteins. This led to the discovery of ribbon-shaped ferroelectric supramolecular assemblies that are thermodynamically stable with their long axes parallel to both the preferred hydrogen-bonding direction of β-sheets and the bistable polar axes of VDF hexamers. Relative to a commonly used ferroelectric copolymer, the biomolecular assemblies exhibit a coercive field that is two orders of magnitude lower, as the result of supramolecular dynamics, and a similar level of remnant polarization, despite having a peptide content of 49 wt%. Furthermore, the Curie temperature of the assemblies is about 40 °C higher than that of a copolymer containing a similar amount of VDF. This supramolecular system was created using a biologically inspired strategy that is attractive in terms of sustainability and that could lead to new functions for soft ferroelectrics.

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