压电
材料科学
能量收集
肽
纳米材料
纳米技术
智能材料
纳米结构
生物物理学
能量(信号处理)
化学
生物化学
复合材料
数学
生物
统计
作者
Hui Yuan,Peipei Han,Zhen Tao,Bin Xue,Yiyang Guo,David Lévy,Wen Hu,Yongmei Wang,Yi Cao,Ehud Gazit,Rusen Yang
标识
DOI:10.1021/acsami.1c20146
摘要
The discovery of piezoelectricity in self-assembled peptide nanostructures opens an avenue to a new regime of piezoelectric materials and enables the fundamental investigation of electromechanical coupling in biomaterials. However, strategies for fabricating peptides with desired properties are still lacking. We find that a peptide-based coassembly process effectively controls the properties of peptide nanomaterials and demonstrates their application potential in nanogenerators. The composing peptides and their concentration influence the morphology, molecular property, and physical property of coassembled crystals. Compared with self-assembled diphenylalanine peptides, the coassembled peptides of diphenylalanine and phenylalanine-tryptophan show a 38% increase in piezoelectric coefficient, and the resulting harvesting device shows nearly a 3-fold increase in open-circuit voltage outputs.
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