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Ceramic capacitor dielectric material for energy storage and preparation method and application thereof
The invention provides a ceramic capacitor dielectric material for energy storage and a preparation method and application thereof, and belongs to the technical field of electronic materials and devices. The chemical formula of the ceramic capacitor dielectric material provided by the invention is Sr < 1.85-2x > Ba < 0.15 + x > Sm < x > NaMn < x > Nb < 5-x > O < 15 >, and the value of x is 0.005, 0.01, 0.015 or 0.02. The ceramic capacitor dielectric material provided by the invention is good in temperature stability, excellent in energy storage performance and simple in preparation method, and has good industrialization prospects and application prospects.
本发明提供了一种用于储能的陶瓷电容器介质材料及其制备方法和应用,属于电子材料与器件技术领域。本发明提供的陶瓷电容器介质材料的化学式为Sr1.85‑2xBa0.15+xSmxNaMnxNb5‑xO15,其中,x的取值为0.005、0.01、0.015或0.02。本发明所提供的陶瓷电容器介质材料温度稳定性好、储能性能优良、制备方法简单,具有良好的产业化前景和应用前景。
Ceramic capacitor dielectric material for energy storage and preparation method and application thereof
The invention provides a ceramic capacitor dielectric material for energy storage and a preparation method and application thereof, and belongs to the technical field of electronic materials and devices. The chemical formula of the ceramic capacitor dielectric material provided by the invention is Sr < 1.85-2x > Ba < 0.15 + x > Sm < x > NaMn < x > Nb < 5-x > O < 15 >, and the value of x is 0.005, 0.01, 0.015 or 0.02. The ceramic capacitor dielectric material provided by the invention is good in temperature stability, excellent in energy storage performance and simple in preparation method, and has good industrialization prospects and application prospects.
本发明提供了一种用于储能的陶瓷电容器介质材料及其制备方法和应用,属于电子材料与器件技术领域。本发明提供的陶瓷电容器介质材料的化学式为Sr1.85‑2xBa0.15+xSmxNaMnxNb5‑xO15,其中,x的取值为0.005、0.01、0.015或0.02。本发明所提供的陶瓷电容器介质材料温度稳定性好、储能性能优良、制备方法简单,具有良好的产业化前景和应用前景。
Ceramic capacitor dielectric material for energy storage and preparation method and application thereof
一种用于储能的陶瓷电容器介质材料及其制备方法和应用
HU CHANGZHENG (Autor:in) / DAN YUEJUN (Autor:in) / WU SHA (Autor:in) / FANG LIANG (Autor:in)
16.01.2024
Patent
Elektronische Ressource
Chinesisch
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