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TiO2 Nanotubes Architectures for Solar Energy Conversion

机译:TiO2纳米管结构用于太阳能转换

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Electromagnetic light from the Sun is the largest source, and the cleanest energy available to us; extensive efforts have been dedicated to developing science and engineering solutions in order to avoid the use of fossil fuels. Solar energy transforms photons into electricity via the photovoltaic effect, generating about 20 GW of energy in the USA in 2020, sufficient to power about 17 million households. However, sunlight is erratic, and technologies to store electric energy storage are unwieldy and relatively expensive. A better solution to store energy and to deliver this energy on demand is storage in chemical bonds: synthesizing fuels such as H2, methane, ethanol, and other chemical species. In this review paper we focus on titania (TiO2) nanotubes grown through electrochemical anodization and various modifications made to them to enhance conversion efficiency; these semiconductors will be used to implement the synthesis of H2 through water splitting. This document reviews selected research efforts on TiO2 that are ongoing in our group in the context of the current efforts worldwide. In addition, this manuscript is enriched by discussing the latest novelties in this field.
机译:来自太阳的电磁光是最大的来源,以及我们可用的最干净的能源;广泛的努力致力于开发科学和工程解决方案,以避免使用化石燃料。太阳能通过光伏效果将光子转化为电力,在2020年在美国产生约20 GW的能量,足以为大约1700万个家庭提供动力。然而,阳光是不稳定的,存储电能存储的技术是笨重的,并且相对昂贵。更好的解决方案来储存能量和按需提供这种能量的是化学键的储存:合成燃料,如H2,甲烷,乙醇和其他化学物质。在本文中,我们专注于通过电化学阳极氧化和对它们进行的各种改进来增强转换效率的钛菊(TiO2)纳米管;这些半导体将用于通过水分裂来实现H2的合成。本文献审查在全球当前努力的背景下,在我们的小组上正在进行的TiO2上选择的研究工作。此外,通过讨论该领域的最新新科技,富集了这份手稿。

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