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Progress and outlook on lead-free ceramics for energy storage applications
F Yan, J Qian, S Wang, J Zhai - Nano Energy, 2024 - Elsevier
With the rapid development of economic and information technology, the challenges related
to energy consumption and environmental pollution have recently intensified. Faced with …
to energy consumption and environmental pollution have recently intensified. Faced with …
Electroceramics for high-energy density capacitors: current status and future perspectives
Materials exhibiting high energy/power density are currently needed to meet the growing
demand of portable electronics, electric vehicles and large-scale energy storage devices …
demand of portable electronics, electric vehicles and large-scale energy storage devices …
High-performance lead-free bulk ceramics for electrical energy storage applications: design strategies and challenges
Compared with fuel cells and electrochemical capacitors, dielectric capacitors are regarded
as promising devices to store electrical energy for pulsed power systems due to their fast …
as promising devices to store electrical energy for pulsed power systems due to their fast …
Large energy capacitive high-entropy lead-free ferroelectrics
Advanced lead-free energy storage ceramics play an indispensable role in next-generation
pulse power capacitors market. Here, an ultrahigh energy storage density of~ 13.8 J cm− 3 …
pulse power capacitors market. Here, an ultrahigh energy storage density of~ 13.8 J cm− 3 …
Progress and perspectives in dielectric energy storage ceramics
D Li, X Zeng, Z Li, ZY Shen, H Hao, W Luo… - Journal of Advanced …, 2021 - Springer
Dielectric ceramic capacitors, with the advantages of high power density, fast charge-
discharge capability, excellent fatigue endurance, and good high temperature stability, have …
discharge capability, excellent fatigue endurance, and good high temperature stability, have …
Local structure engineered lead-free ferroic dielectrics for superior energy-storage capacitors: a review
H Qi, A **e, R Zuo - Energy Storage Materials, 2022 - Elsevier
With the development of energy-storage technology and power electronics industry,
dielectric capacitors with high energy density are in high demand owing to their high power …
dielectric capacitors with high energy density are in high demand owing to their high power …
NaNbO3‐(Bi0.5Li0.5)TiO3 Lead‐Free Relaxor Ferroelectric Capacitors with Superior Energy‐Storage Performances via Multiple Synergistic Design
A **e, R Zuo, Z Qiao, Z Fu, T Hu… - Advanced Energy …, 2021 - Wiley Online Library
Relaxor ferroelectric (FE) ceramic capacitors have attracted increasing attention for their
excellent energy‐storage performance. However, it is extremely difficult to achieve desirable …
excellent energy‐storage performance. However, it is extremely difficult to achieve desirable …
Constructing phase boundary in AgNbO3 antiferroelectrics: pathway simultaneously achieving high energy density and efficiency
Dielectric capacitors with high energy storage density (W rec) and efficiency (η) are in great
demand for high/pulsed power electronic systems, but the state-of-the-art lead-free dielectric …
demand for high/pulsed power electronic systems, but the state-of-the-art lead-free dielectric …
Perovskite lead-free dielectrics for energy storage applications
The projected increase in world energy consumption within the next 50 years, coupled with
low emission requirements, has inspired an enormous effort towards the development of …
low emission requirements, has inspired an enormous effort towards the development of …
Enhancing energy storage performance in Na 0.5 Bi 0.5 TiO 3-based lead-free relaxor ferroelectric ceramics along a stepwise optimization route
W Wang, L Zhang, Y Yang, W Shi, Y Huang… - Journal of Materials …, 2023 - pubs.rsc.org
Despite the fact that relaxor ferroelectrics (RFEs) have been extensively researched
because of their various advantages, there are still barriers to simultaneously increasing …
because of their various advantages, there are still barriers to simultaneously increasing …