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首页> 外文期刊>ACS nano >Mercury Telluride Quantum Dot Based Phototransistor Enabling High-Sensitivity Room-Temperature Photodetection at 2000 nm
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Mercury Telluride Quantum Dot Based Phototransistor Enabling High-Sensitivity Room-Temperature Photodetection at 2000 nm

机译:汞碲化物量子点的光电晶体管在2000 nm下实现高灵敏度室温光检测

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摘要

Near-to-mid-infrared photodetection technologies could be widely deployed to advance the infrastructures of surveillance, environmental monitoring, and manufacturing, if the detection devices are low-cost, in compact format, and with high performance. For such application requirements, colloidal quantum dot (QD) based photodetectors stand out as particularly promising due to the solution processability and ease of integration with silicon technologies; unfortunately, the detectivity of the QD photodetectors toward longer wavelengths has so far been low. Here we overcome this performance bottleneck through synergistic efforts between synthetic chemistry and device engineering. First, we developed a fully automated aprotic solvent, gas-injection synthesis method that allows scalable fabrication of large sized HgTe QDs with high quality, exhibiting a record high photoluminescence quantum yield of 17% at the photoluminescence peak close to 2.1 mu m. Second, through gating a phototransistor structure we demonstrate room-temperature device response to reach >2 x 10(10) cm Hz(1/2) W-1 (at 2 kHz modulation frequency) specific detectivity beyond the 2 mu m wavelength range, which is comparable to commercial epitaxial-grown photodetectors. To demonstrate the practical application of the QD phototransistor, we incorporated the device in a carbon monoxide gas sensing system and demonstrated reliable measurement of gas concentration. This work represents an important step forward in commercializing QD-based infrared detection technologies.
机译:如果检测装置以紧凑的格式,高性能,可以广泛地部署,以推进监控,环境监测和制造的基础设施,以推进监控,环境监测和制造的基础设施。对于这种应用要求,基于胶体量子点(QD)的光电探测器由于解决方案可加工性和与硅技术的整合而易于集成,因此脱颖而出;遗憾的是,QD光电探测器朝向较长波长的探测器已经很低。在这里,我们通过合成化学和设备工程之间的协同努力来克服这种性能瓶颈。首先,我们开发了一种全自动的非质子溶剂,气体喷射合成方法,允许具有高质量的大型HGTE QD的可伸缩制造,在光致发光峰值接近2.1μm,在光致发光峰值下表现出17%的记录高光致发光量子产率。其次,通过选中光电晶体管结构,我们展示室温器件响应于达到的> 2×10(10 )cm Hz(1/2)W-1(以2kHz调制频率)特定探测超过2μm波长范围,这与商业外延生长的光电探测器相当。为了证明QD光电晶体管的实际应用,我们将该装置纳入一氧化碳气体传感系统中,并证明了气体浓度可靠测量。这项工作代表了商业化基于QD的红外检测技术的重要一步。

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