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Xiaodong Yan
Xiaodong Yan
在 ust.hk 的电子邮件经过验证
标题
引用次数
引用次数
年份
The alignment of BCZT particles in PDMS boosts the sensitivity and cycling reliability of a flexible piezoelectric touch sensor
X Gao, M Zheng, X Yan, J Fu, M Zhu, Y Hou
Journal of Materials Chemistry C 7 (4), 961-967, 2019
862019
Composition-driven phase boundary and its energy harvesting performance of BCZT lead–free piezoelectric ceramic
X Yan, M Zheng, Y Hou, M Zhu
Journal of the European Ceramic Society 37 (7), 2583-2589, 2017
682017
A highly dense structure boosts energy harvesting and cycling reliabilities of a high-performance lead-free energy harvester
M Zheng, Y Hou, X Yan, L Zhang, M Zhu
Journal of Materials Chemistry C 5 (31), 7862-7870, 2017
682017
High-performance lead-free ferroelectric BZT–BCT and its application in energy fields
X Yan, M Zheng, X Gao, M Zhu, Y Hou
Journal of Materials Chemistry C 8 (39), 13530-13556, 2020
562020
Active self-assembly of piezoelectric biomolecular films via synergistic nanoconfinement and in-situ poling
Z Zhang, X Li, Z Peng, X Yan, S Liu, Y Hong, Y Shan, X Xu, L Jin, B Liu, ...
Nature Communications 14 (1), 4094, 2023
412023
Boosting energy harvesting performance in (Ba, Ca)(Ti, Zr) O 3 lead-free perovskites through artificial control of intermediate grain size
X Yan, M Zheng, S Sun, M Zhu, Y Hou
Dalton Transactions 47 (28), 9257-9266, 2018
372018
High performance piezocomposites for flexible device application
X Gao, M Zheng, X Yan, J Fu, Y Hou, M Zhu
Nanoscale 12 (8), 5175-5185, 2020
362020
Giant current performance in lead-free piezoelectrics stem from local structural heterogeneity
X Yan, M Zheng, X Gao, M Zhu, Y Hou
Acta Materialia 187, 29-40, 2020
352020
High power density in a piezoelectric energy harvesting ceramic by optimizing the sintering temperature of nanocrystalline powders
Y Yue, Y Hou, M Zheng, X Yan, J Fu, M Zhu
Journal of the European Ceramic Society 37 (15), 4625-4630, 2017
322017
Ultrahigh energy harvesting performance in lead-free piezocomposites with intragranular structure
X Yan, M Zheng, X Gao, L Li, J Rödel, M Zhu, Y Hou
Acta Materialia 222, 117450, 2022
302022
Soft and hard piezoelectric ceramics for vibration energy harvesting
X Yan, M Zheng, M Zhu, Y Hou
Crystals 10 (10), 907, 2020
302020
Revealing the origin of thermal depolarization in piezoceramics by combined multiple in-situ techniques
H Zhao, Y Hou, M Zheng, X Yu, X Yan, L Li, M Zhu
Materials Letters 236, 633-636, 2019
262019
High energy conversion efficiency in Mn‐modified Ba0.9Ca0.1Ti0.93Zr0.07O3 lead‐free energy harvester
X Yan, M Zheng, Y Hou, M Zhu, H Yan
Journal of the American Ceramic Society 101 (6), 2330-2338, 2018
252018
Submicron crystalline buildup and size‐dependent energy harvesting characteristic in PZN–PZT ternary ferroelectrics
Y Yue, Y Hou, M Zheng, X Yan, M Zhu
Journal of the American Ceramic Society 100 (11), 5211-5219, 2017
212017
Origin of superior dielectric and piezoelectric properties in 0.4 Ba (Zr0. 2Ti0. 8) O3–0.6 (Ba0. 7Ca0. 3) TiO3 at intermediate grain sizes
X Yan, M Zheng, Y He, M Zhu, Y Hou
Journal of the European Ceramic Society 40 (12), 3936-3945, 2020
192020
The structural origin of enhanced energy harvesting performance in piezoelectric perovskite
M Zheng, Y Hou, X Yan, M Zhu
Journal of the European Ceramic Society 38 (2), 585-591, 2018
192018
A low frequency lead‐free piezoelectric energy harvester with high‐power density
X Yan, M Zheng, M Zhu, Y Hou
Journal of the American Ceramic Society 102 (6), 3085-3089, 2019
172019
Ultrahigh current density and fatigue stability in flexible energy harvester by designing delivery paths
X Gao, M Zheng, X Yan, M Zhu, Y Hou
Materials Today Physics 19, 100424, 2021
152021
Metal Particle Composite Hardening in Ba0.85Ca0.15Ti0.90Zr0.10O3 Piezoceramics
M Zheng, C Zhao, X Yan, R Khachaturyan, F Zhuo, Y Hou, J Koruza
Advanced Functional Materials 33 (38), 2301356, 2023
92023
Fast and versatile electrostatic disc microprinting for piezoelectric elements
X Li, Z Zhang, Z Peng, X Yan, Y Hong, S Liu, W Lin, Y Shan, Y Wang, ...
Nature Communications 14 (1), 6488, 2023
72023
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