Logo image
Synthesis of shape-tunable PbZrTiO3 nanocrystals with lattice variations for piezoelectric energy harvesting and human motion detection
期刊文章   開放取用(OA)   同儕審查

Synthesis of shape-tunable PbZrTiO3 nanocrystals with lattice variations for piezoelectric energy harvesting and human motion detection

Ya-Ju Chuang, Arnab Pal, Bo-Hao Chen, Satyaranjan Jena, Sreerag Suresh, Zong-Hong Lin 和 Michael Hsuan-Yi Huang
Chemical science (Cambridge), 卷.16(7), 頁碼.3285-3295
12/02/2025
PMID: 39845877
Web of Science ID: WOS:001400595200001

摘要

Chemistry
PbZr0.7Ti0.3O3 cubes with tunable sizes and cuboids have been hydrothermally synthesized. PbZrTiO3 cubes with three different Zr : Ti atomic percentages were also prepared. Analysis of synchrotron X-ray diffraction (XRD) patterns reveals the presence of two lattice components for these samples. Fast Fourier Transform (FFT) processing of high-resolution transmission electron microscopy (HR-TEM) images shows discernible lattice spot differences between the inner bulk and surface layer region for a PbZr0.7Ti0.3O3 cube, while a cuboid has distinct lattice spot deviations. The lattice variations yield different dielectric constant numbers for these two samples, despite being bound by the same crystal faces. The PbZrTiO3 crystals give size- and composition-dependent band gaps. Cuboids show notably larger piezoelectric and ferroelectric responses than cubes. Piezoelectric nanogenerators (PENGs) containing 30 wt% cuboids produce the highest open-circuit voltage of 20.36 V and short-circuit current of 2300 nA. The PENGs harvest energy through bending/releasing cycles to power devices and show photothermal pyroelectric activity. Moreover, a single 30 wt% cuboid PENG device integrated into a shoe insole can deliver an impressive 96.8% accuracy for human motion detection using a machine learning approach. This work illustrates that considerable lattice variation through crystal shape control is effective in enhancing material properties. PbZrTiO3 cubes and cuboids show bulk and surface layer lattice variations, leading to dielectric constant, piezoelectric, ferroelectric, and pyroelectric response differences. The fabricated sensors can distinguish different exercise activities.

檔案與連結 (2)

pdf
d4sc06643j - Ya-Ju Chuang1.91 MB下載檢視
開放存取(OA)
url
https://doi.org/10.1039/d4sc06643j檢視
已出版(紀錄版本)

相關連結

指標

1 檢視次數

詳細資料

Logo image