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Atomic layer deposition in nanostructured photovoltaics: tuning optical, electronic and surface properties

机译:原子层沉积在纳米光电:优化光学、电子和表面性质

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摘要

Nanostructured materials offer key advantages for third-generation photovoltaics, such as the ability to achieve high optical absorption together with enhanced charge carrier collection using low cost components. However, the extensive interfacial areas in nanostructured photovoltaic devices can cause high recombination rates and a high density of surface electronic states. In this feature article, we provide a brief review of some nanostructured photovoltaic technologies including dye-sensitized, quantum dot sensitized and colloidal quantum dot solar cells. We then introduce the technique of atomic layer deposition (ALD), which is a vapor phase deposition method using a sequence of self-limiting surface reaction steps to grow thin, uniform and conformal films. We discuss how ALD has established itself as a promising tool for addressing different aspects of nanostructured photovoltaics. Examples include the use of ALD to synthesize absorber materials for both quantum dot and plasmonic solar cells, to grow barrier layers for dye and quantum dot sensitized solar cells, and to infiltrate coatings into colloidal quantum dot solar cell to improve charge carrier mobilities as well as stability. We also provide an example of monolayer surface modification in which adsorbed ligand molecules on quantum dots are used to tune the band structure of colloidal quantum dot solar cells for improved charge collection. Finally, we comment on the present challenges and future outlook of the use of ALD for nanostructured photovoltaics.
机译:纳米材料提供关键优势第三代光伏发电,如实现高的吸收光的能力增强型电荷载体一起收藏使用低成本的组件。界面纳米光伏领域设备可能导致重组率高和高密度的表面电子态。这篇文章中,我们提供了一个简短回顾一些纳米光电技术包括涂料、量子点敏化和胶体量子点太阳能电池。介绍原子层的技术沉积(ALD),这是一个蒸汽阶段使用一系列的沉积方法自限性表面生长反应步骤薄,制服和保形电影。ALD已经确立了自己作为一个有前途的工具寻址的不同方面纳米光电。ALD合成吸收材料的使用量子点和电浆太阳能电池,生长势垒层染料和量子点敏化太阳能电池,并渗透涂料成胶体量子点太阳能电池提高电荷载体的机动性以及稳定。单层吸附的表面改性配体分子量子点用于调优胶体量子点太阳能的能带结构细胞提高电荷收集。评论当前的和未来的挑战前景的纳米制程使用光伏发电。

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