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触发区域宽度对砷化镓光导开关输出特性影响
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作者 陈红 韦金红 +4 位作者 曾凡正 贾成林 付泽斌 李嵩 钱宝良 《强激光与粒子束》 CAS CSCD 北大核心 2023年第10期150-155,共6页
基于TCAD数值仿真软件,建立了异面结构砷化镓光导开关(GaAs PCSS)的二维数值计算模型,研究了触发区域宽度对GaAs PCSS输出特性影响。首先分析了PCSS的瞬态导通特性,结果表明,急剧增加的载流子浓度与快速演化的空间电离畴使PCSS工作在超... 基于TCAD数值仿真软件,建立了异面结构砷化镓光导开关(GaAs PCSS)的二维数值计算模型,研究了触发区域宽度对GaAs PCSS输出特性影响。首先分析了PCSS的瞬态导通特性,结果表明,急剧增加的载流子浓度与快速演化的空间电离畴使PCSS工作在超快速导通模式。基于此,研究了触发区域宽度对PCSS输出特性影响,结果表明,宽度变大会促进载流子密度急剧倍增和雪崩电离畴的快速演化,缩短PCSS的延迟时间和导通时间。研究分析了不同触发位置对延迟时间与导通时间影响,结果表明,阴极触发的延迟时间明显低于阳极触发,而导通时间受触发位置的影响不显著。 展开更多
关键词 砷化镓 光电导半导体开关 异面电极 雪崩电离畴 超快速导通
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An effective CdS/Ti-Fe_(2)O_(3)heterojunction photoanode:Analyzing Z-scheme charge-transfer mechanism for enhanced photoelectrochemical water-oxidation activity 被引量:2
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作者 Yinyin Li Qiannan Wu +5 位作者 Qijing Bu Kai Zhang Yanhong Lin Dejun Wang Xiaoxin Zou Tengfeng Xie 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第5期762-771,共10页
Z-scheme photocatalytic system has been regarded as a popular field of research in photoelectrochemical(PEC)water splitting.Among the many obstacles facing a Z-scheme photocatalytic system,the analysis methods of inte... Z-scheme photocatalytic system has been regarded as a popular field of research in photoelectrochemical(PEC)water splitting.Among the many obstacles facing a Z-scheme photocatalytic system,the analysis methods of interfacial Z-scheme charge transfer still remain a significant challenge.Hence,in this study,CdS/Ti-Fe_(2)O_(3)heterojunction photoanodes are elaborately designed to explore the charge-transfer behavior in PEC water splitting.In this study,photophysical measurements,including the Kelvin probe measurement,surface photovoltage spectroscopy(SPV),and transient photovoltage spectroscopy(TPV),are used to monitor the migration behavior of photogenerated charges at the interface electric field of CdS/Ti-Fe_(2)O_(3)Z-scheme heterojunction photoanodes.The Kelvin probe and SPV measurements demonstrate that CdS/Ti-Fe_(2)O_(3)interfacial driving force favors the rapid transfer of photoexcited electrons to CdS.The double-beam strategy based on TPV indicates that more electrons of Ti-Fe_(2)O_(3)are combined with the holes of CdS owing to the intensive interface electric field.The results of these measurements successfully prove the Z-scheme migration mechanism of CdS/Ti-Fe_(2)O_(3)photoanodes.Benefiting from the desirable charge transfer at the interface electric field,CdS/Ti-Fe_(2)O_(3)photoanodes exhibit superior photocatalytic oxygen evolution reaction performance compared with that of pure Ti-Fe_(2)O_(3).The photocurrent density of the 25CdS/Ti-Fe_(2)O_(3)photoanode reaches 1.94 mA/cm^(2) at 1.23 V versus reversible hydrogen electrode without excess cocatalyst,and it is two times higher than that of pure Ti-Fe_(2)O_(3)photoanode.Therefore,an outstanding strategy is provided in this study to prove the Z-scheme charge-transfer mechanism of photocatalytic systems in PEC water splitting. 展开更多
关键词 CdS/Ti-Fe_(2)O_(3) Z-scheme Charge transfer Interface electric field Heterojunction photoanodes
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