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界面工程与等离激元效应协同作用增强的ZnO微米线同质结自驱动紫外探测器
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作者 唐楷 沙树林 +4 位作者 万鹏 翟亚林 阚彩侠 施大宁 姜明明 《Science China Materials》 SCIE EI CAS CSCD 2024年第3期842-851,共10页
高灵敏度的自驱动紫外探测器在许多应用中都大有可为.本研究提出了一种一维ZnO基同结光电探测器,它包括表面覆盖着Ag纳米线的锑掺杂ZnO微米线(AgNWs@ZnO:Sb MW)、MgO缓冲纳米层和ZnO薄膜.该探测器在0 V偏压下对紫外光非常敏感,其性能参... 高灵敏度的自驱动紫外探测器在许多应用中都大有可为.本研究提出了一种一维ZnO基同结光电探测器,它包括表面覆盖着Ag纳米线的锑掺杂ZnO微米线(AgNWs@ZnO:Sb MW)、MgO缓冲纳米层和ZnO薄膜.该探测器在0 V偏压下对紫外光非常敏感,其性能参数包括约7个量级的开关比、292.2 mA W^(-1)的响应度、6.9×10^(13)Jones的比探测率,以及微秒量级的快速响应速度(上升时间16.4μs,下降时间465.1μs).特别是10μW cm^(-2)的微弱紫外光时接近99.3%的外量子效率.此外,本文系统研究了MgO纳米薄膜和表面修饰AgNWs对探测器件性能增强的机理.作为自驱动光接收器,该光电二极管被进一步集成到能够实时传输信息的紫外通信系统中.此外,基于AgNWs@p-ZnO:Sb MW/i-MgO/n-ZnO的同质结9×9阵列显示出均匀的光响应分布,可用作具有良好空间分辨率的成像传感器.这项研究有望为设计高性能紫外光检测器提供一条具有低功耗和可大规模建造的途径. 展开更多
关键词 interface engineering p-type ZnO:Sb microwire selfpowered photodetector imaging sensor UV optical communication plasmonic effect
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Light trapping enhanced broadband photodetection and imaging based on MoSe_(2)/pyramid Si vdW heterojunction 被引量:2
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作者 Shaoqin Pan Shuo-En Wu +8 位作者 Jinjin Hei Zhiwen Zhou Longhui Zeng Yakun Xing Pei Lin Zhifeng Shi Yongtao Tian Xinjian Li Di Wu 《Nano Research》 SCIE EI CSCD 2023年第7期10552-10558,共7页
Two-dimensional(2D)layered materials have been considered promising candidates for next-generation optoelectronics.However,the performance of 2D photodetectors still has much room for improvement due to weak light abs... Two-dimensional(2D)layered materials have been considered promising candidates for next-generation optoelectronics.However,the performance of 2D photodetectors still has much room for improvement due to weak light absorption of planar 2D materials and lack of high-quality heterojunction preparation technology.Notably,2D materials integrating with mature bulk semiconductors are a promising pathway to overcome this limitation and promote the practical application on optoelectronics.In this work,we present the patterned assembly of MoSe_(2)/pyramid Si mixed-dimensional van der Waals(vdW)heterojunction arrays for broadband photodetection and imaging.Benefited from the light trapping effect induced enhanced optical absorption and high-quality vdW heterojunction,the photodetector demonstrates a wide spectral response range from 265 to 1550 nm,large responsivity up to 0.67 A·W^(-1),high specific detectivity of 1.84×10^(13)Jones,and ultrafast response time of 0.34/5.6μs at 0 V.Moreover,the photodetector array exhibits outstanding broadband image sensing capability.This study offers a novel development route for high-performance and broadband photodetector array by MoSe_(2)/pyramid Si mixed-dimensional heterojunction. 展开更多
关键词 two-dimensional(2D)MoSe_(2)layers light trapping van der Waals(vdW)heterojunction broadband photodetector selfpowered imaging
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Fabrication of nanofibrous sensors by electrospinning 被引量:2
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作者 HAN WeiHua WANG YuZhi +4 位作者 SU JianMin XIN Xin GUO YinDa LONG Yun-Ze RAMAKRISHNA Seeram 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第6期886-894,共9页
This article reviews the techniques and applications of electrospinning for the fabrication of nanofibrous sensors. Considering that nanosensors require a large specific surface area and a continuous structure for the... This article reviews the techniques and applications of electrospinning for the fabrication of nanofibrous sensors. Considering that nanosensors require a large specific surface area and a continuous structure for the conduction of current signals, electrospun nanofibers have the dominant advantage. The device preparation is mainly divided into surface treatment and high-temperature sintering, which are, respectively, used for preparing composite conductive fibers and inorganic semiconductor fibers. Typical applications include pressure sensing, gas sensing, photoelectric sensing, and temperature sensing. In addition, nano-selfpowered systems have been mentioned to emphasize the good performance of smart nanosystems that do not require external power. In addition, we have summarized some existing methods and suggestions for increasing the specific surface area and presented constructive ideas for the future development of these devices. 展开更多
关键词 SMART NANOFIBERS ELECTROSPINNING CONDUCTIVE composite NANOFIBERS INORGANIC semiconductive NANOFIBERS SENSORS selfpowered device
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