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Lead Sodium Niobate Glass-Ceramic Dielectrics and Internal Electrode Structure for High Energy Storage Density Capacitors

机译:铌酸钠铅玻璃陶瓷介电材料和用于高能量存储密度电容器的内部电极结构

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$hbox{Na}_{2}hbox{O}{-}hbox{PbO}{-}hbox{Nb}_{2}hbox{O}_{5}{-} hbox{SiO}_{2}$ glass-ceramic dielectrics and internal electrode structures were investigated to improve the general energy storage density of capacitors. This work was brought out by the motivation of elimination of structural flaws and pores remaining in dielectrics and at electrode/dielectric interfaces, which are the main causes of low dielectric strength and low energy storage density of the traditional sintered dielectric capacitors. The combination of pore-free glass-ceramic dielectrics and series internal electrodes was adapted in the design of high energy storage density capacitors (HESDCs). The results show that the dielectric properties and the breakdown strength of glass-ceramics could be optimized through appropriate crystallization profiles, which could lead to an energy storage density of up to 17 $hbox{J/cm}^{3}$ for glass-ceramics crystallized at 850 $^{circ}hbox{C}$ for 3 h. The series multilayer capacitors could bear a rather higher electric field compared with the traditional ones without internal electrodes, and the dielectric strength could be further improved when the internal electrodes are made of sputtered gold films and printed paste. As a result, an overall energy storage density of about 8 $hbox{J/cm}^{3}$ has been achieved for the capacitor with internal electrodes made of gold film and screen-printed paste when the 850 $^{ circ}hbox{C}$-crystallized glass-ceramic dielectric was used.
机译:$ hbox {Na} _ {2} hbox {O} {-} hbox {PbO} {-} hbox {Nb} _ {2} hbox {O} _ {5} {-} hbox {SiO} _ {2}研究了玻璃陶瓷电介质和内部电极结构,以提高电容器的一般储能密度。这项工作是出于消除电介质和电极/电介质界面中残留的结构缺陷和孔隙的动机而提出的,这些缺陷是传统烧结电介质电容器的低介电强度和低能量存储密度的主要原因。无孔玻璃陶瓷电介质和串联内部电极的组合适用于高能量存储密度电容器(HESDC)的设计。结果表明,可以通过适当的结晶分布来优化玻璃陶瓷的介电性能和击穿强度,从而可以使玻璃-陶瓷的储能密度高达17 $ hbox {J / cm} ^ {3} $。陶瓷在850 $ ^ {box} hbox {C} $结晶3小时。与不带内部电极的传统多层电容器相比,该系列多层电容器可以承受更高的电场,并且当内部电极由溅射金膜和印刷浆料制成时,介电强度可以进一步提高。结果,当内部电极由金膜和丝网印刷的糊料制成时,当850 $ ^ {circ}时,其总储能密度约为8 $ hbox {J / cm} ^ {3} $。使用hbox {C} $结晶的玻璃-陶瓷电介质。

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