BaTiO3-based materials show great promise for energy storage capacitors, but their low breakdown strength and high remnant polarization currently result in relatively low energy density. Here, we report a novel (1–x)BaTiO3–xBi(Li0.5Ta0.5)O3 (0.06 ≤ x ≤ 0.12, BT–xBLT) lead-free ceramic with electric field (E) ∼ 280 kV cm–1, discharge energy density (We) ∼ 2.2 J cm–3, charge–discharge efficiency (η) > 89% that is thermally stable up to 160 °C and with a fast discharge time (≤0.5 μs). Multilayers of compositions with x = 0.1 also exhibited high We = 4.05 J cm–3 and η = 95.5%, demonstrating their potential for energy storage
Lead-free perovskite oxide thin films prepared by alloying of titanates and materials with lower mel...
Lead-free BaTiO3 (BT)-based multilayer ceramic capacitors (MLCCs) with the thickness of dielectric l...
High recoverable energy density (Wrec ~ 2.1 J/cm3) was obtained in (0.7-x)BiFeO3-0.3BaTiO3-xBi(Zn2/3...
BaTiO3-based materials show great promise for energy storage capacitors, but their low breakdown str...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
High-temperature BaTiO3-based ceramic capacitors have broad application prospects in energy storage ...
High recoverable energy density (10 J cm−3) multilayers have been fabricated from lead-free 0.61BiFe...
The critical role of electrical homogeneity in optimising electric-field breakdown strength (BDS) an...
An increasing number of new dielectrics are being reported for the development of next-generation ce...
High recoverable energy density (Wrec ∼ 2.1 J/cm3) was obtained in (0.7 – x)BiFeO3-0.3BaTiO3-xBi(Zn2...
The Gerson–Marshall (1959) relationship predicts an increase in dielectric breakdown strength (BDS) ...
High recoverable energy density (10 J cm−3) multilayers have been fabricated from lead-free 0.61BiFe...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
Lead-free ceramics with high recoverable energy density (Wrec) and energy storage efficiency (η) are...
Lead-based electroceramics such as Pb(Zr.Ti)O3 (PZT) and its derivatives have excellent piezoelectri...
Lead-free perovskite oxide thin films prepared by alloying of titanates and materials with lower mel...
Lead-free BaTiO3 (BT)-based multilayer ceramic capacitors (MLCCs) with the thickness of dielectric l...
High recoverable energy density (Wrec ~ 2.1 J/cm3) was obtained in (0.7-x)BiFeO3-0.3BaTiO3-xBi(Zn2/3...
BaTiO3-based materials show great promise for energy storage capacitors, but their low breakdown str...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
High-temperature BaTiO3-based ceramic capacitors have broad application prospects in energy storage ...
High recoverable energy density (10 J cm−3) multilayers have been fabricated from lead-free 0.61BiFe...
The critical role of electrical homogeneity in optimising electric-field breakdown strength (BDS) an...
An increasing number of new dielectrics are being reported for the development of next-generation ce...
High recoverable energy density (Wrec ∼ 2.1 J/cm3) was obtained in (0.7 – x)BiFeO3-0.3BaTiO3-xBi(Zn2...
The Gerson–Marshall (1959) relationship predicts an increase in dielectric breakdown strength (BDS) ...
High recoverable energy density (10 J cm−3) multilayers have been fabricated from lead-free 0.61BiFe...
Ceramic dielectrics are reported with superior energy storage performance for applications, such as ...
Lead-free ceramics with high recoverable energy density (Wrec) and energy storage efficiency (η) are...
Lead-based electroceramics such as Pb(Zr.Ti)O3 (PZT) and its derivatives have excellent piezoelectri...
Lead-free perovskite oxide thin films prepared by alloying of titanates and materials with lower mel...
Lead-free BaTiO3 (BT)-based multilayer ceramic capacitors (MLCCs) with the thickness of dielectric l...
High recoverable energy density (Wrec ~ 2.1 J/cm3) was obtained in (0.7-x)BiFeO3-0.3BaTiO3-xBi(Zn2/3...