Large-area kinetic stabilization of metastable β-glycine via meniscus-driven self-assembly with anisotropic piezoelectricity

  • Ryu, Yeonkyeong
  • Lee, Cheoljae
  • Zhao, Pin
  • Yeon, Jimin
  • Choi, Jinsung
  • ... Lee, Ju Hun
  • 외 6명
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초록

The development of natural piezoelectric biomaterials with tunable structure and functionality is crucial for advancing sustainable and biocompatible technologies in energy harvesting, implantable electronics, and biomedical systems. Glycine, the simplest amino acid classified into α, β, and γ polymorphs, exhibits inherent substantial piezoelectricity at the β-phase structure. However, achieving controllable and scalable β-phase formation remains a key challenge due to its thermodynamic instability.Here, we present a scalable meniscus-guided self-assembly strategy for the large-area fabrication of uniform β-glycine crystals. Precise balancing of solvent evaporation and crystal growth kinetics enables direct crystallization and selective stabilization of the β-phase. This approach further induces pronounced crystallographic alignment, producing highly oriented β-glycine domains. The non-centrosymmetric structure and electromechanical functionality of the aligned crystals are verified by piezoresponse force microscopy (PFM) and second harmonic generation (SHG) analysis. The resulting assemblies demonstrate piezoelectric energy harvesting capability, confirming the potential of β-glycine as a functional piezoelectric material. This work offers a promising step toward enhancing the piezoelectric performance of natural biomaterials with potential implications for future self-powered biomedical applications. © 2026 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.

키워드

Kinetic stabilizationMeniscus-driven self-assemblyPiezoelectric nanogeneratorPolymorph controlβ-glycine
제목
Large-area kinetic stabilization of metastable β-glycine via meniscus-driven self-assembly with anisotropic piezoelectricity
저자
Ryu, YeonkyeongLee, CheoljaeZhao, PinYeon, JiminChoi, JinsungIbrahim, Tijani OkanlawonGwak, SujeongGbadam, Gerald SelasieMoon, YeongheumShin, Dong-MyeongLee, Ju HunLee, Ju-Hyuck
DOI
10.1016/j.nanoen.2026.112005
발행일
2026-07
유형
Article
저널명
Nano Energy
154
페이지
1 ~ 10