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Design,preparation,and characterization of a novel ZnO/CuO/Al energetic diode with dual functionality:Logic and destruction
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作者 Jialu Yang Jiaheng Hu +3 位作者 Yinghua Ye Jianbing Xu Yan Hu Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期57-68,共12页
Self-destructing chips have promising applications for securing data.This paper proposes a new concept of energetic diodes for the first time,which can be used for self-destructive chips.A simple two-step electrochemi... Self-destructing chips have promising applications for securing data.This paper proposes a new concept of energetic diodes for the first time,which can be used for self-destructive chips.A simple two-step electrochemical deposition method is used to prepare ZnO/CuO/Al energetic diode,in which N-type ZnO and P-type CuO are constricted to a PN junction.This paper comprehensively discusses the material properties,morphology,semiconductor characteristics,and exploding performances of the energetic diode.Experimental results show that the energetic diode has typical rectification with a turn-on voltage of about 1.78 V and a reverse leakage current of about 3×10^(-4)A.When a constant voltage of 70 V loads to the energetic diode in the forward direction for about 0.14 s or 55 V loads in the reverse direction for about 0.17 s,the loaded power can excite the energetic diode exploding and the current rises to about100 A.Due to the unique performance of the energetic diode,it has a double function of rectification and explosion.The energetic diode can be used as a logic element in the normal chip to complete the regular operation,and it can release energy to destroy the chip accurately. 展开更多
关键词 Energetic diode zno—CuO—Al thermite zno/CuO pn junction Electrical explosion performance Self-destructing chips
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压电半导体光电池输出特性的机械调控研究
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作者 杨浩桢 刘金喜 +1 位作者 杨万里 胡元太 《应用数学和力学》 CSCD 北大核心 2024年第10期1279-1287,共9页
压电PN结光电池的性能与其内部的势垒构型和载流子分布密切相关,因此其输出性能可以通过压电性诱导的压电势改变载流子的输运特性来调控.然而,经典PN结模型因引入了耗尽层等假设而无法描述势垒区内多物理场与载流子的耦合作用,导致其预... 压电PN结光电池的性能与其内部的势垒构型和载流子分布密切相关,因此其输出性能可以通过压电性诱导的压电势改变载流子的输运特性来调控.然而,经典PN结模型因引入了耗尽层等假设而无法描述势垒区内多物理场与载流子的耦合作用,导致其预测结果严重失真.因此,针对光电池的核心基本单元PN结,建立了力-电-光与载流子全域耦合作用的多场耦合模型,研究了外加机械载荷对ZnO光电池输出特性的调控机理.结果表明:光照强度固定时,光电池的短路电流、开路电压和最大输出功率均随着压应力的增大而逐渐增加;相反,拉应力不利于光电池性能的提升.此外,研究还发现,加载区范围大于光照区或n/p区单侧同时受到光照和压应力作用时的调控效果更佳. 展开更多
关键词 zno pn 压电效应 光电池 数值模拟
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