Semantic Scholar Open Access 2024 21 sitasi

Boosting the Piezoelectric Response and Interfacial Compatibility in Flexible Piezoelectric Composites via DET-Doping BT Nanoparticles

Liming Liu Hongjian Zhang Shengyang Zhou Changzhou Du Ming Liu +1 lainnya

Abstrak

With the advent of the Internet of Things, self-powered wearable sensors have become increasingly prevalent in our daily lives. The utilization of piezoelectric composites to harness and sense surrounding mechanical vibrations has been extensively investigated during the last decades. However, the poor interface compatibility between ceramics nanofillers and polymers matrix, as well as low piezoelectric performance, still serves as a critical challenge. In this work, we employed Di(dioctylpyrophosphato) ethylene titanate (DET) as the coupling agent for modifying barium titanate (BTO) nanofillers. Compared to the BTO/PVDF counterpart, the DET-BTO/PVDF nanofibers exhibit an augmented content of piezoelectric β phase (~85.7%) and significantly enhanced stress transfer capability. The piezoelectric coefficient (d33) is up to ~40 pC/N, which is the highest value among reported BTO/PVDF composites. The piezoelectric energy harvesters (PEHs) present benign durability and attain a high instantaneous power density of 276.7 nW/cm2 at a matched load of 120 MΩ. Furthermore, the PEHs could sense various human activities, with the sensitivity as high as 0.817 V/N ranging from 0.05–0.1 N. This work proposes a new strategy to boosting the piezoelectric performance of PVDF-based composites via DET-doping ceramics nanoparticles, and in turn show significantly improved energy harvesting and sensing capability.

Topik & Kata Kunci

Penulis (6)

L

Liming Liu

H

Hongjian Zhang

S

Shengyang Zhou

C

Changzhou Du

M

Ming Liu

Y

Yong Zhang

Format Sitasi

Liu, L., Zhang, H., Zhou, S., Du, C., Liu, M., Zhang, Y. (2024). Boosting the Piezoelectric Response and Interfacial Compatibility in Flexible Piezoelectric Composites via DET-Doping BT Nanoparticles. https://doi.org/10.3390/polym16060743

Akses Cepat

Lihat di Sumber doi.org/10.3390/polym16060743
Informasi Jurnal
Tahun Terbit
2024
Bahasa
en
Total Sitasi
21×
Sumber Database
Semantic Scholar
DOI
10.3390/polym16060743
Akses
Open Access ✓