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Numerical optimization of interface engineering parameters for a highly efficient HTL-free perovskite solar cell
Decarbonizing the world's energy system has set the stage in favor of renewable energy
alternatives such as the more reliable, abundant, inexhaustible, and sustainable solar …
alternatives such as the more reliable, abundant, inexhaustible, and sustainable solar …
Polymorphic Localized Heterostructure Design for High‐Performance Amorphous/Nanocrystalline Composite Film
R Huang, J Wang, H Wang, C Tao, H Hao… - Advanced …, 2024 - Wiley Online Library
Analogous to linear dielectric, amorphous perovskite dielectrics characterized of high
breakdown strength and low remanent polarization possess in‐depth application in the sea …
breakdown strength and low remanent polarization possess in‐depth application in the sea …
A multifunctional oriented nanocrystalline Pb 0.91 La 0.06 Zr 0.8 Ti 0.2 O 3 relaxor ferroelectric thin film for chip power and thermal management
Y Hou, J Li, R Yin, X Su, Y Su, L Qiao, C Liu… - Journal of Materials …, 2024 - pubs.rsc.org
Development of microelectronic technology is highly desired to address chip power
instability and micro-overheating in highly integrated devices utilizing a single material. For …
instability and micro-overheating in highly integrated devices utilizing a single material. For …
Significantly improving the energy storage capability of transparent ceramics via a voltage endurance double enhancement strategy
Z Sun, S Zhao, Z Wang, L Diwu, Y Liu, J Xu… - Chemical Engineering …, 2025 - Elsevier
While epitaxial thin films and polymer films exhibit superior voltage endurance and higher
maximum polarization (P max), making them advantageous for achieving high energy …
maximum polarization (P max), making them advantageous for achieving high energy …
Unlocking high capacitive energy-density in Sm-doped Pb (Mg1/3Nb2/3) O3–PbTiO3 thin films via strain and domain engineering
Relaxor ferroelectrics have garnered significant attention in the field of energy storage due
to their exceptional properties, such as high recoverable energy density and impressive …
to their exceptional properties, such as high recoverable energy density and impressive …
Improving energy storage properties in (Ba0. 75Sr0. 1Bi0. 1)(Ti0. 9Zr0. 1) O3 ceramic thick films by adding (Sb0. 5Li0. 5) TiO3, domain engineering and defect …
J Yan, G Yan, J Sun, B Fang, S Zhang, X Lu… - Journal of Energy …, 2024 - Elsevier
x)(Ba 0.75 Sr 0.1 Bi 0.1)(Ti 0.9 Zr 0.1) O 3-x (Sb 0.5 Li 0.5) TiO 3 (BSBiTZ-xSLT, x= 0.025,
0.05, 0.075, 0.1) ceramic thick films were prepared via film sca** process. The decrease of …
0.05, 0.075, 0.1) ceramic thick films were prepared via film sca** process. The decrease of …
Superior energy storage performance in lead-free SrTiO3 films via ion do** and crystalline optimization
T Zhang, S Sun, C Yin, X Zhang, C Zhang, Y Zhang… - Ceramics …, 2024 - Elsevier
SrTiO 3 paraelectric materials exhibit significant potential to be used as lead-free energy
storage dielectrics due to their distinctive linear-like polarization behavior. Nonetheless, the …
storage dielectrics due to their distinctive linear-like polarization behavior. Nonetheless, the …
Dielectric behavior of point defects on ferroelectric films for different substrate strains by phase–field simulations
Y Song, J Wang, H Huang - Journal of the American Ceramic …, 2025 - Wiley Online Library
Relaxor films constructed by do** point defects are widely applied in various fields,
including nanoelectromechanical systems, capacitive energy storage, and pyroelectric …
including nanoelectromechanical systems, capacitive energy storage, and pyroelectric …
[PDF][PDF] Investigate the effect of co-do** on the grain size and diffuse phase transition of barium titanate ceramics.
MS Alkathy, JP Goud, KE Ibrahim… - Journal of Ovonic …, 2024 - chalcogen.ro
Ferroelectric materials have a natural dielectric polarization, known as Ps, which may be
reversed by applying an electric field [1-3]. The movement of the charge centers about each …
reversed by applying an electric field [1-3]. The movement of the charge centers about each …