Recent advances in carbon‐based materials for solar‐driven interfacial photothermal conversion water evaporation: Assemblies, structures, applications, and prospective
Последние достижения в области углеродсодержащих материалов для солнечно-управляемого межфазного фототермического испарения воды: сборки, структуры, применения и перспективы
2023-03-20
SCID: 54.1/mkfyfwxn
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carbon-based photothermal materialsphotothermal conversionseawater desalinationsolar evaporation devicessolar-driven interfacial evaporation
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Abstract (AI)
Abstract The shortage of fresh water in the world has brought upon a serious crisis to human health and economic development. Solar‐driven interfacial photothermal conversion water evaporation including evaporating seawater, lake water, or river water has been recognized as an environmentally friendly process for obtaining clean water in a low‐cost way. However, water transport is restricted by itself by solar energy absorption capacity's limits, especially for finite evaporation rates and insufficient working life. Therefore, it is important to seek photothermal conversion materials that can efficiently absorb solar energy and reasonably design solar‐driven interfacial photothermal conversion water evaporation devices. This paper reviews the research progress of carbon‐based photothermal conversion materials and the mechanism for solar‐driven interfacial photothermal conversion water evaporation, as well as the summary of the design and development of the devices. Based on the research progress and achievements of photothermal conversion materials and devices in the fields of seawater desalination and photothermal electric energy generation in recent years, the challenges and opportunities faced by carbon‐based photothermal conversion materials and devices are discussed. The prospect of the practical application of solar‐driven interfacial photothermal conversion evaporation technology is foreseen, and theoretical guidance is provided for the further development of this technology.
Key Findings
1
Carbon-based photothermal materials and evaporation devices have demonstrated relevance to seawater desalination and photothermal electricity generation.
2
Limited solar-energy absorption, finite evaporation rates, restricted water transport, and insufficient operational lifetime remain major barriers to practical performance.
3
Solar-driven interfacial photothermal evaporation is identified as a low-cost, environmentally friendly approach for producing clean water from seawater, lake water, and river water.
4
The review examines carbon-based photothermal materials, their solar-energy-conversion mechanisms, and device designs for interfacial water evaporation.
5
The review synthesizes current achievements, identifies challenges and opportunities, and provides guidance for advancing practical solar-driven interfacial evaporation technology.
Research Object
Carbon-based photothermal conversion materials and solar-driven interfacial water-evaporation devices
Research Subject
Solar-energy absorption, photothermal conversion, interfacial evaporation mechanisms, device design, performance, and applications for clean-water production
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2023-03-20
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