无机太阳能电池的新设计概念:从薄膜到功能纳米结构:使用脉冲激光原位生长半导体核壳纳米结构

L. Roca, Yerila Rodríguez Martínez, Jesús Antonio Alba Cabañas, Osmel Cruzata Montero
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引用次数: 0

摘要

多年来,太阳能电池完全是无机的,它的设计曾经很简单。无论你能想到多少个连接点,最终界面都是平面的,其结构遵循层的分层。然后,纳米技术开启了各种各样的可能性,其中太阳能电池的结构不仅改变了太阳能电池结构的外观,而且改变了工作原理和材料的功能。在这种类型的太阳能电池中,我们使用了Nd:YAG脉冲激光器作为局部热源。在此之前,我们已经通过水热技术影响了ZnO纳米棒生长之前的播种过程[1]。在这种方法中,我们用它来实现CdS量子点半导体收割机和ZnO纳米棒电子传输伙伴在一个单一的,简单的原位步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Design Concepts for Inorganic Solar Cells: From Thin Films to Functional Nanostructures: Using a pulsed laser for in-situ growth of semiconductor core-shell nanostructures
For many years solar cells were totally inorganic and its design used to be simple. No matter how many junctions you could think about, at the end the interfaces were planar and the configurations followed a stratification of layers. And then, nanotechnology opened a wide variety of possibilities in which the architecture of the solar cells not only changed how solar cells architectures look like, but also, the working principle and materials functionality. In this type of solar cells, we have used a Nd:YAG pulsed laser as a heat local source. Previously, we have impacted in the process of seeding prior to ZnO nanorods growth by an hydrothermal technique [1]. In this approach, we use it for achieving the CdS quantum dot semiconductor harvester and ZnO nanorod electron transport partners in a single, simple and in-situ step.
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