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2篇 您的检索式:作者名="Liuchong Fu"
    题名 作者 年代 出处 被引量
1Filter-free self-power CdSe/Sb_(2)(S_(1-x),Se_(x))_(3)nearinfrared narrowband detection and imaging显示文摘Accurate and clear bioimaging is crucial in the field of medical diagnosis.High-quality bioimaging requires to avoid the effects of ambient light as well as the absorption of biological tissues.Nearinfrared(NIR)narrowband detectors located at wavelength from 650 to 900 nm can meet these requirements;thus,they are the potential solution.In this work,we construct a filter-free and self-power NIR narrowband photodetector based on the structure of n-CdSe/p-Sb_(2)(S_(1-x),Se_(x))_(3)heterojunction,and achieve a narrow spectral response at 735 nm with a full width at half-maximum of 35.3 nm in the detector.Further,the imaging characteristics of the NIR narrowband detector are explored,verifying the ability to narrowband detection and imaging.This filter-free and self-power NIR narrowband detector shows considerable promise in real-life applications.Kanghua Li Yue Lu Xuke Yang Liuchong Fu Jungang He Xuetian Lin Jiajia Zheng Shuaicheng Lu Chao Chen Jiang Tang 2021InfoMat2021,3,10:0
2Fabrication and characterization of ZnO/Se1‑xTex solar cells显示文摘Selenium(Se)element is a promising light-harvesting material for solar cells because of the large absorption coefcient and prominent photoconductivity.However,the efciency of Se solar cells has been stagnated for a long time owing to the suboptimal bandgap(>1.8 eV)and the lack of a proper electron transport layer.In this work,we tune the bandgap of the absorber to the optimal value of Shockley-Queisser limit(1.36 eV)by alloying 30%Te with 70%Se.Simultaneously,ZnO electron transport layer is selected because of the proper band alignment,and the mild reaction at ZnO/Se_(0.7)Te_(0.3) interface guarantees a good-quality heterojunction.Finally,a superior efciency of 1.85%is achieved on ZnO/Se_(0.7)Te_(0.3)solar cells.Jiajia Zheng Liuchong Fu Yuming He Kanghua Li Yue Lu Jiayou Xue Yuxuan Liu Chong Dong Chao Chen Jiang Tang 2022Frontiers of Optoelectronics2022,15,3:0
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