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Photovoltaic effect in a few-layer ReS2/WSe2 heterostructure

机译:few-layer它/ WSe2光生伏打效应异质结构

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Two-dimensional transition-metal dichalcogenides (TMDCs) are notable materials owing to their flexibility, transparency, and appropriate bandgaps. Because of their unique advantages, TMDC p-n diodes have been studied for next-generation electronics and optoelectronics. However, their efficiency must be increased for commercialization. In this study, we demonstrated a heterostructure composed of few-layer ReS2 and WSe2. This few-layer ReS2/WSe2 heterostructure exhibits a p-n junction and an n-n junction in different gate-bias regimes. In the p-n junction regime, the heterostructure shows outstanding rectification behavior. Additionally, we identify three carrier-transfer mechanisms - direct tunneling, Fowler-Nordheim tunneling, and the space charge region - depending on the drain bias. Furthermore, the photovoltaic effect is observed in this few-layer ReS2/WSe2 heterostructure. As a result, a high fill factor (approximate to 0.56), power conversion (approximate to 1.5), and external quantum efficiency (approximate to 15.3) were obtained. This study provides new guidelines for flexible optoelectronic devices.
机译:二维过渡金属dichalcogenides(TMDCs)是著名的材料由于他们灵活性、透明度和合适的带隙。TMDC pn二极管已经研究了新一代的电子和光电。然而,他们必须提高效率商业化。一个few-layer它和组成的异质结构WSe2。展品pn结和n n结不同的栅偏压政权。政权,异质结构显示突出纠正行为。三个载波传输机制——直接Fowler-Nordheim隧道,隧道空间电荷区——根据排水偏见。观察到在这个few-layer它/ WSe2异质结构。0.56(近似),权力转换(大约1.5%),和外部量子效率(大约15.3%)。这项研究提供了灵活的新的指导方针光电设备。

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