Organic PhotoâResponsive Piezoelectric Materials Based on Pyrene Molecules for Flexible Sensors
Abstrak
Abstract Due to the advantages of multiplicity, functionality, and flexibility of organic building blocks, organic piezoelectric materials are regarded as nextâgeneration materials for potential applications in flexible sensors and energy harvesting devices. Here, a new pure organic pyreneâbased molecule, PyPT is presented, which crystallizes in a nonâcentrosymmetric structure. PyPT is synthesized and demonstrated to be suitable for developing flexible sensors due to its remarkable piezoelectric properties. The pyreneâbased piezoelectric molecule exhibits excitation wavelengthâdependent emission behavior and aggregationâcaused quenching properties and demonstrated a piezoelectric coefficient (d33) of 8.02 Âą 0.26 pm Vâ1. The output electronic signal of a PyPTâbased flexible sensor shows a significant increase from 30 to 721 pA as the strain increases from 0.12% to 0.59% with a low Young's modulus of 1.63 Gpa. This highâperformance piezoelectric sensor can serve as a sensitive sound sensor for sound detection and recognition based on the basic characteristics of sound, such as amplitude, frequencies, and timbres. This research offers new insights into advancing pure organic luminescent materials with piezoelectric properties, paving the way for applications in flexible electronics for wearables, humanâmachine interfaces, and the Internet of Things.
Topik & Kata Kunci
Penulis (12)
Xinyi Song
Xiaohui Wang
Wei Liu
Xiaoxue Chen
Shaoling Li
Md Shariful Islam
Ling Li
Xiaobo Zhao
Carl Redshaw
Yu Zhao
Changyong (Chase) Cao
Xing Feng
Akses Cepat
- Tahun Terbit
- 2025
- Sumber Database
- DOAJ
- DOI
- 10.1002/aelm.202400933
- Akses
- Open Access â