Academic Publication Design strategy of high-entropy perovskite energy-storage ceramics: A review
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Design strategy of high-entropy perovskite energy-storage ceramics: A review
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Optimizing high-temperature energy storage in tungsten bronze-structured ceramics via high-entropy strategy and bandgap engineering
AbstractAs a vital material utilized in energy storage capacitors, dielectric ceramics have widespread applications in high-power pulse devices. However, the development of dielectric ceramics with...
Photochemistry
Breakthroughs in high-entropy perovskite nanocrystals enable manipulation of spin-polarized excited states at room temperature, signaling new optoelectronic capabilities. Concurrently, direct dynam...
Spin-state regulation of high-entropy Ruddlesden-Popper perovskite oxides for efficient seawater electrolysis
Designing efficient high entropy catalysts is highly desired but remains challenging. Here, the authors report the spin state engineering to develop high-entropy Ruddlesden Popper perovskite oxides...
Fast Na+ Kinetics and Suppressed Voltage Hysteresis Enabled by a High‐Entropy Strategy for Sodium Oxide Cathodes
AbstractO3‐type layered transition metal cathodes are promising energy storage materials due to their sufficient sodium reservoir. However, sluggish sodium ions kinetics and large voltage hysteresi...
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Yes, highly correlated activity was mapped. An entry titled 'Design strategy of high-entropy perovskite energy-storage ceramics: A review' discusses this: No description provided.
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Yes, highly correlated activity was mapped. An entry titled 'Photochemistry' discusses this: Breakthroughs in high-entropy perovskite nanocrystals enable manipulation of spin-polarized excited states at room temperature, signaling new optoe...
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