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      The emergence of solar thermal utilization: solar-driven steam generation

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          Abstract

          This work mainly reviewed the classification, development, influencing factors and future prospects of solar-driven steam generation systems.

          Abstract

          Solar-driven steam generation not only has a long history of application demand, but is also a new research topic due to the progress in nano-material science. Conventional solar-driven steam generation suffers from low efficiency and high cost in practical applications. A new type of steam generation system based on plasmonic absorption of nano-materials with a good cost-efficiency balance has emerged in the last few years. For the first time, studies on various plasmonic solar-driven steam generation systems are summarized and discussed in this review based on the types of materials used. Throughout this article, the basic concept, classification, mechanism and development of plasmonic solar-steam generation systems, as well as the factors that influence these novel systems, are clearly presented. This review provides unique insight into this rapidly developing field and sheds light on the potential of research into plasmonic solar-driven steam generation systems.

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          3D self-assembly of aluminium nanoparticles for plasmon-enhanced solar desalination

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            Core/shell nanoparticles: classes, properties, synthesis mechanisms, characterization, and applications.

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              Research opportunities to advance solar energy utilization.

              Major developments, as well as remaining challenges and the associated research opportunities, are evaluated for three technologically distinct approaches to solar energy utilization: solar electricity, solar thermal, and solar fuels technologies. Much progress has been made, but research opportunities are still present for all approaches. Both evolutionary and revolutionary technology development, involving foundational research, applied research, learning by doing, demonstration projects, and deployment at scale will be needed to continue this technology-innovation ecosystem. Most of the approaches still offer the potential to provide much higher efficiencies, much lower costs, improved scalability, and new functionality, relative to the embodiments of solar energy-conversion systems that have been developed to date.
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                Author and article information

                Journal
                JMCAET
                Journal of Materials Chemistry A
                J. Mater. Chem. A
                Royal Society of Chemistry (RSC)
                2050-7488
                2050-7496
                2017
                2017
                : 5
                : 17
                : 7691-7709
                Affiliations
                [1 ]Guangxi Key Laboratory of Information Material
                [2 ]Guangxi Collaborative Innovation Center of Structure and Property for New Energy and Materials
                [3 ]School of Material Science and Engineering
                [4 ]Guilin University of Electronic Technology
                [5 ]Guilin
                Article
                10.1039/C7TA01361B
                f42969d0-c33f-4a69-8a63-5b63fd0d0c31
                © 2017
                History

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