二硫化钼
光电子学
材料科学
异质结
制作
二极管
光电二极管
纳米尺度
图层(电子)
光电导性
硅
纳米技术
医学
病理
冶金
替代医学
作者
Chanyoung Yim,Maria O’Brien,Niall McEvoy,Sarah Riazimehr,Heiko Schäfer-Eberwein,Andreas Bablich,Ravinder Pawar,Giuseppe Iannaccone,Clive Downing,Gianluca Fiori,Max C. Lemme,Georg S. Duesberg
摘要
We investigate a vertically-stacked hybrid photodiode consisting of a thin n-type molybdenum disulfide (MoS2) layer transferred onto p-type silicon. The fabrication is scalable as the MoS2 is grown by a controlled and tunable vapor phase sulfurization process. The obtained large-scale p-n heterojunction diodes exhibit notable photoconductivity which can be tuned by modifying the thickness of the MoS2 layer. The diodes have a broad spectral response due to direct and indirect band transitions of the nanoscale MoS2. Further, we observe a blue-shift of the spectral response into the visible range. The results are a significant step towards scalable fabrication of vertical devices from two-dimensional materials and constitute a new paradigm for materials engineering.
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