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首页> 外文期刊>Electron Device Letters, IEEE >Numerical Simulation on the Photovoltaic Behavior of an Amorphous-Silicon Nanowire-Array Solar Cell
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Numerical Simulation on the Photovoltaic Behavior of an Amorphous-Silicon Nanowire-Array Solar Cell

机译:非晶硅纳米线阵列太阳能电池光伏行为的数值模拟

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摘要

In this letter, we propose an amorphous-silicon (a-Si) solar cell with a nanowire-array structure. The proposed structure has photon absorption and carrier transport that are perpendicular to each other, which could overcome the efficiency limit of an a-Si solar cell. This nanowire structure has an n-type a-Si nanowire array in which the i-layer and the p-layer a-Si are sequentially grown along the surface of the nanowire. Under illumination, light is absorbed along the axial direction of the nanowire, and carrier transport is along the radial direction. Numerical simulations show that the photocurrent of the a-Si solar cell with a 4000-nm-long nanowire is nearly 40% more than that of a planar a-Si solar cell. A conversion efficiency of 11.6% was obtained, which is around 32% enhancement.
机译:在这封信中,我们提出了一种具有纳米线阵列结构的非晶硅(a-Si)太阳能电池。所提出的结构具有彼此垂直的光子吸收和载流子传输,这可以克服a-Si太阳能电池的效率极限。该纳米线结构具有n型a-Si纳米线阵列,其中,i层和p层a-Si沿着纳米线的表面依次生长。在照明下,光沿纳米线的轴向被吸收,而载流子沿径向被吸收。数值模拟表明,具有4000nm长纳米线的a-Si太阳能电池的光电流比平面a-Si太阳能电池的光电流高近40%。获得了11.6%的转换效率,大约提高了32%。

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