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Radial pn junction nanorod solar cells: device physics principles and routes to fabrication in silicon

机译:径向pn结纳米棒太阳能电池:器件物理原理和硅制造工艺路线

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摘要

We have developed quantitative device-physics models for a radial pn junction nanorod solar cell, that is, a cell which consists of densely packed nanorods attached to a conducting substrate, each nanorod with a pn junction in the radial direction. It is found that this novel design shows large improvements over the planar geometry so long as two conditions are satisfied: a) a planar solar cell made from the same material is collection limited, i.e. the diffusion length of minority carriers is too low to allow for collection of most or all of the light-generated carriers in the conventional planar geometry, and b) recombination in the depletion region is not too high, or, equivalently, the lifetime of carriers in the depletion region is not too short. In order to experimentally validate this concept, the vapor-liquid-solid (VLS) growth of silicon (Si) nanorods has been explored using metal catalyst particles that are not as deleterious to the minority carrier lifetime of Si as gold (Au), the most commonly used wire growth catalyst.
机译:我们已经为径向pn结纳米棒太阳能电池开发了定量的器件物理模型,也就是说,该电池由紧密附着的纳米棒组成,该纳米棒附着在导电基底上,每个纳米棒在径向上都具有pn结。发现,只要满足两个条件,该新颖的设计就对平面几何形状显示出很大的改进:a)由相同材料制成的平面太阳能电池受收集限制,即少数载流子的扩散长度太短而不能满足要求。常规平面几何形状中大多数或所有光生载流子的聚集,以及b)耗尽区中的复合不太高,或者等效地,耗尽区中载流子的寿命也不太短。为了通过实验验证此概念,已使用不像金(Au)那样有害于硅的少数载流子寿命的金属催化剂颗粒探索了硅(Si)纳米棒的气液固(VLS)生长。最常用的焊丝生长催化剂。

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