用于太阳能转换的半导体光物理和光化学系统。回顾

IF 0.1 Q4 PHYSICS, MULTIDISCIPLINARY Anales AFA Pub Date : 2021-04-15 DOI:10.31527/ANALESAFA.2021.32.1.22
F. A. Filippin, H. Fasoli
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引用次数: 1

摘要

电化学能源是一种替代以燃烧化石燃料为基础的技术。在电化学系统中,电势下降扩散到界面的一个非常狭窄的区域,产生高电场。因此,研究半导体/电解质界面有很好的技术理由。目前,利用可再生资源的方法之一是通过光伏技术,直接将太阳辐射转化为电能。这项技术是由半导体(通常是硅)制成的,经过了极其谨慎和昂贵的制造过程。光伏器件的一种选择是光电化学电池。这些电池是通过半导体电极与溶液接触制成的,这种溶液很容易制备,并提供了低成本制造的可能性。了解这些器件的工作原理需要了解半导体的特性,以及这些材料在与电解溶液接触和阳光照射下的行为。本文通过对半导体电极作为光电化学太阳能电池(PEC)的主要组成部分的原理和应用的最新综述,描述了半导体电极在进行具有技术意义的化学反应方面的应用。此外,本文还讨论了提高PEC性能和结构所需的要素。
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PHOTOPHYSICAL AND PHOTOCHEMICAL SYSTEMS WITH SEMICONDUCTORS FOR THE CONVERSION OF SOLAR ENERGY. A REVIEW
Electrochemical energy sources are an alternative to replace technology based on the burning of fossil fuels. In an elec-trochemical system the potential drop spreads over a very narrow region at an interphase, creating high electric fields.So, there are good technological reasons to study semiconductor / electrolyte interphases. Currently, one of the ways touse renewable resources is through photovoltaic technology that directly converts solar radiation into electrical energy.This technology is manufactured from semiconductors, generally silicon, following an extremely careful and expensivemanufacturing procedure. An option for photovoltaic devices is photoelectrochemical cells.These cells are made bythe contact of a semiconductor electrode with a solution, which can be easily prepared and offers the possibility oflow-cost manufacturing. Understanding how these devices work requires knowledge of the characteristics of semicon-ductors and how these materials behave in contact with an electrolytic solution and under illumination by sunlight. Thepresent work describes, through an updated review, the principles and applications of semiconductor electrodes as themain components in a photoelectrochemical solar cell (PEC), to carry out chemical reactions of technological interest.In addition, the elements that are required for the improvement in the performance and construction of the PEC are discussed.
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Anales AFA
Anales AFA PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.40
自引率
0.00%
发文量
43
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