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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Bismuth ferrite-based lead-free ceramics and multilayers with high recoverable energy density
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Bismuth ferrite-based lead-free ceramics and multilayers with high recoverable energy density

机译:铋铁氧体的无铅陶瓷和多层能量密度高可回收的陶瓷和多层

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摘要

Lead-free ceramics with high recoverable energy density (W-rec) and energy storage efficiency () are attractive for advanced pulsed power capacitors to enable greater miniaturization and integration. In this work, dense bismuth ferrite (BF)-based, lead-free 0.75(Bi1-xNdx)FeO3-0.25BaTiO(3) (BNxF-BT) ceramics and multilayers were fabricated. A transition from a mixed pseudocubic and R3c to a purely pseudocubic structure was observed as x increased with the optimum properties obtained for mixed compositions. The highest energy densities, W approximate to 4.1 J cm(-3) and W-rec approximate to 1.82 J cm(-3), were achieved for BN15F-BT, due to the enhanced breakdown field strength (BDS approximate to 180 kV cm(-1)) and large maximum polarization (P-max approximate to 40 C cm(-2)). The multilayers of this composition possessed both a high W-rec of 6.74 J cm(-3) and of 77% and were stable up to 125 degrees C. Nd doped BF-based ceramics with enhanced BDS and large W-rec are therefore considered promising candidates for lead-free energy storage applications.
机译:具有高可回收能量密度(W-REC)和能量存储效率()的无铅陶瓷对于先进的脉冲电容器具有吸引力,以实现更大的小型化和集成。在这项工作中,基于致密的铋铁氧体(BF),无铅0.75(BI1-XNDX)FeO3-0.25BATIO(3)(BNXF-BT)陶瓷和多层。观察到从混合的假伪和R3C转变为纯假细胞结构,随着用于混合组合物的最佳性质而增加。由于增强的击穿场强度(BDS近似为180 kV厘米,为BN15F-BT,为BN15F-BT近似为4.1J厘米(-3)和W-REC近似为1.82JCm(-3)的最高能量密度。 (-1))和大的最大偏振(p-max近似为40 c cm(-2))。该组合物的多层具有6.74J厘米(-3)和77%的高W-REC,并且稳定达125℃。因此,考虑了具有增强的BDS和大W-REC的Nd掺杂的BF基陶瓷。有前途的无铅储能应用候选人。

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