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GaAs远红外探测器中的辐射复合特性研究
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作者 沈文忠 蒋立峰 +2 位作者 俞罡 王晓光 沈学础 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2002年第z1期15-18,共4页
借助光致发光技术对n-GaAs同质结内发射远红外探测器结构进行了详细的辐射复合特性研究.根据发光特性和高密度理论计算,观察和确认了来自探测器发射层中的光致发光信号.提出了光生载流子转移模型,很好地解释了发射层中光致发光... 借助光致发光技术对n-GaAs同质结内发射远红外探测器结构进行了详细的辐射复合特性研究.根据发光特性和高密度理论计算,观察和确认了来自探测器发射层中的光致发光信号.提出了光生载流子转移模型,很好地解释了发射层中光致发光信号与温度和激发功率的依赖关系.根据得到的辐射复合特性,提出了进一步提高探测器工作温度的方案. 展开更多
关键词 辐射复合 远红外探测器结构 光生载流子转移.
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Metal-induced oxygen vacancies on Bi_(2)WO_(6)for efficient CO_(2) photoreduction 被引量:4
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作者 Yinghui Wang Tong Chen +2 位作者 Fang Chen Ruofei Tang Hongwei Huang 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3497-3503,共7页
Semiconductor-based photocatalysis for efficient solar energy conversion is an ideal strategy to tackle the growing global energy and environmental crisis.However,the development of photocatalysis is still limited by ... Semiconductor-based photocatalysis for efficient solar energy conversion is an ideal strategy to tackle the growing global energy and environmental crisis.However,the development of photocatalysis is still limited by problems such as low utilization of visible light,low efficiency of charge transfer and separation,and insufficient reactive sites.Herein,Au nanoparticles(NPs)were deposited on the surface of Bi_(2)WO_(6)by a one-step reduction method,which simultaneously induced the formation of oxygen vacancies(OVs)on the surface of Bi_(2)WO_(6).The OVs concentration is found to be increased with the increase of Au loading.Au NPs and OVs improve the light absorption and facilitate the separation and transport of the photogenerated carriers.In addition,OVs act synergistically with the nearby metal active sites to optimize the adsorption energy of reactants on the catalyst surface,changing the adsorption form of CO_(2)molecules on the catalyst surface.The as-synthesized photocatalyst achieved a photocatalytic performance of up to 34.8μmol g^(−1)h^(−1)of CO_(2)reduction to CO without sacrificial agent in a gas-solid system,which is 9.4 times higher than that of the pristine Bi_(2)WO_(6).This work may further deepen our understanding on the relationship between metal NPs and OVs,and their combined role in photocatalysis. 展开更多
关键词 Au nanoparticles oxygen vacancies charge separation reactive sites CO_(2)photoreduction
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