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首页> 外文期刊>Nanotechnology >Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials
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Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials

机译:使用分层2D材料增强螺旋纳米结构太阳能电池中的光子吸收

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Recent investigations of semiconducting two-dimensional (2D) transition metal dichalcogenides have provided evidence for strong light absorption relative to its thickness attributed to high density of states. Stacking a combination of metallic, insulating, and semiconducting 2D materials enables functional devices with atomic thicknesses. While photovoltaic cells based on 2D materials have been demonstrated, the reported absorption is still just a few percent of the incident light due to their sub-wavelength thickness leading to low cell efficiencies. Here we show that taking advantage of the mechanical flexibility of 2D materials by rolling a molybdenum disulfide (MoS2)/graphene (Gr)/hexagonal boron nitride stack to a spiral solar cell allows for optical absorption up to 90%. The optical absorption of a 1 mu m long hetero-material spiral cell consisting of the aforementioned hetero stack is about 50% stronger compared to a planar MoS2 cell of the same thickness; although the volumetric absorbing material ratio is only 6%. A core-shell structure exhibits enhanced absorption and pronounced absorption peaks with respect to a spiral structure without metallic contacts. We anticipate these results to provide guidance for photonic structures that take advantage of the unique properties of 2D materials in solar energy conversion applications.
机译:对半导体二维(2D)过渡金属二卤化硅的最新研究提供了相对于归因于高态密度的其厚度而言强光吸收的证据。堆叠金属,绝缘和半导体2D材料的组合可以使功能设备具有原子厚度。虽然已经证明了基于2D材料的光伏电池,但是报告的吸收率仍只是入射光的百分之几,这是因为它们的亚波长厚度导致电池效率低下。在这里,我们展示了通过将二硫化钼(MoS2)/石墨烯(Gr)/六方氮化硼叠层滚动到螺旋太阳能电池来利用2D材料的机械柔韧性,可实现高达90%的光吸收。与相同厚度的平面MoS2电池相比,由上述杂物堆叠组成的1μm长的异质材料螺旋形电池的光吸收强约50%。尽管体积吸收材料的比例仅为6%。相对于没有金属接触的螺旋结构,核-壳结构表现出增强的吸收和明显的吸收峰。我们预计这些结果将为在太阳能转换应用中利用2D材料的独特属性的光子结构提供指导。

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