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Interface-induced high piezoelectric γ-glycine-based flexible biodegradable films

Nano Energy [2024]
Qiao Yu, Yuan Bai, Zhe Li, Fengying Jiang, Ruizeng Luo, Yansong Gai, Zhuo Liu, Lili Zhou, Yiqian Wang, Cong Li, Kailiang Ren, Dan Luo, Hongyu Meng, Zhou Li
ABSTRACT

Flexible biodegradable piezoelectric composite films prepared by combining water-soluble rigid piezoelectric crystals with flexible polymers have immense potential in the fields of wearable and implantable bioelectronics due to their self-powered, biocompatible, and biodegradable properties. However, comprehensive research on maintaining a high piezoelectric coefficient during fabrication of a flexible film is still lacking. In this work, based on γ-glycine, a simplest natural biodegradable piezoelectric crystal, we investigated the effects of different water-soluble biodegradable polymers and film-forming interfaces on the crystal type, arrangement, structure, and piezoelectric properties . The glycine-PEO composite film prepared using the co-dissolution-evaporation method on the more hydrophobic PTFE interface exhibits a higher out-of-plane piezoelectric coefficient (d 33 ) of ∼8.2 pC/N, which is very close to the theoretical d 33 (10.4 pC/N) of the γ-glycine crystal. This study establishes that interface-induced effects have significant impacts on the crystal arrangement and piezoelectricity of composite films. This study provides important guidance for future research on flexible preparation of other flexible piezoelectric materials .

MATERIALS

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