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Updated: Apr 15, 2026

Investigating the Potential of Singly Curved Thin Piezoelectric Transducers for Energy Harvesting and Structural Health Monitoring
Published on: November 14, 2025
2D chiral organic salts with a large piezoelectric response
Hui-Peng Lv1, Zhi-Lin Liao1, Di Gao1
1Ordered Matter Science Research Center, Nanchang University, 330031, P. R. China. lipf@ncu.edu.cn.
None:
The piezoelectric effect, essential for sensing and energy harvesting, has driven the search for high-performance materials beyond toxic ceramics and low-output polymers. In recent years, chiral molecular crystals have emerged as promising candidates due to their structural tunability and solution processability. However, their piezoelectric coefficients typically remain below 10 pC N-1, limited by weak or poorly aligned molecular dipoles. Here, we show that chiral 4-bromo α-methylbenzylammonium chloride (R/S-4-BrPEAC) forms large single crystals via simple evaporation. The structure comprises a compliant 2D hydrogen-bonded network in which cations with large intrinsic dipoles align uniformly along the b-axis. This ordered packing enables efficient dipole reorientation under stress, yielding a high piezoelectric coefficient of 49 pC N-1, which ranks among the best reported for chiral molecular piezoelectrics. This work highlights simple, metal-free chiral organic salts as high-performance piezoelectric materials for flexible and biocompatible electromechanical applications.
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