Interdisciplinary Hybrid Solar-Driven Evaporators: Theoretical Framework of Fundamental Mechanisms and Applications

dc.contributor.authorMuhammad Sultan Irshad
dc.contributor.authorNaila Arshad
dc.contributor.authorGhazala Maqsood
dc.contributor.authorMuhammad Sohail Asghar
dc.contributor.authorPan Wu
dc.contributor.authorNaveed Mushtaq
dc.contributor.authorM.A.K. Yousaf Shah
dc.contributor.authorLiangyou Lin
dc.date.accessioned2025-07-02T12:34:52Z
dc.date.available2025-07-02T12:34:52Z
dc.date.issued2024-12
dc.description.abstractThe global water and energy crisis seems to be mitigated with promising prospects of emerging interdisciplinary hybrid solar-driven evaporator technology (IHSE). However, the lack of numeric standards for comparison between enormously reported systems and the synergistic effects of interdisciplinary hybridization remains a significant challenge. To entice researchers from various domains to collaborate on the design of a system for realistic, large-scale applications, this study provides a comprehensive overview of the interdisciplinary approaches to IHSE from the domains of physics, chemistry, materials science, and engineering, along with their guiding principles and underlying challenges. First, an in-depth analysis of IHSE with the basic scientific foundations and current advancements in recent years is discussed. Then, the physical principles/scientific principles alongside the overall system improvement enhancement techniques at the macro and micro scale are highlighted. Furthermore, the review analyzes the impact of significant physical factors that alter or restrict the efficiency of IHSE, as well as their connection and potential regulation. In addition, a comprehensive study of emerging sustainable applications for insight into the design and optimization of IHSE is provided for scientists from different fields. Lastly, the current challenges and future perspectives of interdisciplinary IHSE for large-scale applications are emphasized. Keywords: Nterdisciplinary hybrid solar-driven evaporator (IHSE), Solar evaporation, Water-energy nexus, Sustainable technology, Interdisciplinary collaboration
dc.identifier.citationIrshad, M. S., Arshad, N., Maqsood, G., Asghar, M. S., Wu, P., Mushtaq, N., ... & Wang, X. (2025). Interdisciplinary Hybrid Solar‐Driven Evaporators: Theoretical Framework of Fundamental Mechanisms and Applications. Small, 21(7), 2407280.
dc.identifier.doihttps://doi.org/10.1002/smll.202407280
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/7161
dc.language.isoen
dc.publisherWILLY
dc.titleInterdisciplinary Hybrid Solar-Driven Evaporators: Theoretical Framework of Fundamental Mechanisms and Applications
dc.typeArticle

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