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Emerging approach in semiconductor photocatalysis: Towards 3D architectures for efficient solar fuels generation in semi-artificial photosynthetic systems

机译:半导体光电偶分析的新兴方法:朝向半人工光合系统中高效太阳能燃料的3D架构

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Interest in the application of semiconductors toward the photocatalytic generation of solar fuels, including hydrogen from water-splitting and hydrocarbons from the reduction of carbon dioxide, remains strong due to concerns over the continued emission of greenhouse gases as well as other environmental impacts from the use of fossil fuels. While the efficiency and durability of such systems will depend heavily on the types of the semiconductors, co-catalysts, and mediators employed, the dimensionality of the semiconductors employed can also have a significant impact. Recognizing the broad nature of this field and the many recent advances in it, this review focuses on the emerging approaches from 0-dimensional (OD) to 3-dimensional (3D) semiconductor photocatalysts towards efficient solar fuels generation. We place particular emphasis on systems that are "semi-artificial", that is, hybrid systems that integrate naturally occurring enzymes or whole cells with semiconductor components that harvest light energy. The semiconductors in these systems must have suitable interfacial properties for immobilization of enzymes to be effective photocatalysts. These requirements are particularly sensitive to surface structures and morphology, making the semiconductor dimensionality a critical factor. In addition to providing an overview of advances towards designing 3D architecture in semi-artificial photosynthetic field, we also present recent advances in fabrication strategies for 3D inorganic photocatalysts. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于对持续排放的温室气体以及使用的其他环境影响,因此对来自含二氧化碳的碳氢化合物的光催化产生半导体的光催化产生的太阳能燃料和烃的氢气仍然很强劲化石燃料。虽然这种系统的效率和耐久性将大量取决于所用半导体,助催化剂和介质的类型,而所用半导体的维度也可能产生显着的影响。认识到这一领域的广泛性质和其许多最近的进步,本综述重点介绍了从0维(OD)到三维(3D)半导体光催化剂的新出现方法朝向有效的太阳能燃料产生。我们特别强调是“半人为”的系统,即杂交系统,其与收获光能的半导体元件相结合天然存在的酶或整个电池。这些系统中的半导体必须具有合适的界面性质,用于固定酶以有效的光催化剂。这些要求对表面结构和形态特别敏感,使得半导体维度成为关键因素。除了在半人工光合领域设计三维架构的进步之外,我们还提出了3D无机光催化剂的制造策略的最新进展。 (c)2019年Elsevier B.V.保留所有权利。

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