三肽
压电
肽
材料科学
分子工程
纳米技术
氨基酸
发电机(电路理论)
化学
生物物理学
功率(物理)
物理
生物化学
生物
复合材料
量子力学
作者
Santu Bera,Sarah Guerin,Hui Yuan,Joseph O’Donnell,Nicholas P. Reynolds,Oguzhan Maraba,Wei Ji,Linda J. W. Shimon,Pierre‐André Cazade,Syed A. M. Tofail,Damien Thompson,Rusen Yang,Ehud Gazit
标识
DOI:10.1038/s41467-021-22895-6
摘要
Abstract Realization of a self-assembled, nontoxic and eco-friendly piezoelectric device with high-performance, sensitivity and reliability is highly desirable to complement conventional inorganic and polymer based materials. Hierarchically organized natural materials such as collagen have long been posited to exhibit electromechanical properties that could potentially be amplified via molecular engineering to produce technologically relevant piezoelectricity. Here, by using a simple, minimalistic, building block of collagen, we fabricate a peptide-based piezoelectric generator utilising a radically different helical arrangement of Phe-Phe-derived peptide, Pro-Phe-Phe and Hyp-Phe-Phe, based only on proteinogenic amino acids. The simple addition of a hydroxyl group increases the expected piezoelectric response by an order of magnitude ( d 35 = 27 pm V −1 ). The value is highest predicted to date in short natural peptides. We demonstrate tripeptide-based power generator that produces stable max current >50 nA and potential >1.2 V. Our results provide a promising device demonstration of computationally-guided molecular engineering of piezoelectricity in peptide nanotechnology.
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