Controlled Self-Assembly and Photo-Thermal Activation of Viologen-Based 2D Semiconductors for Dual-Function Energy Management in All-Weather Applications

dc.contributor.authorIrshad, Muhammad Sultan
dc.contributor.authorAhmed, Iftikhar
dc.contributor.authorArshad, Naila
dc.contributor.authorE.T.A.L..
dc.date.accessioned2025-07-07T06:06:25Z
dc.date.available2025-07-07T06:06:25Z
dc.date.issued2025-02-08
dc.descriptionWater shortage is a significant and urgent global issue that impacts millions of people and ecosystems on a global scale. The increasing need for freshwater resulting from population increase, industrialization, and agricultural requirements has placed a significant strain on water supplies.
dc.description.abstractSolar thermal technology offers a promising solution to water scarcity; however, the continuous operation of solar evaporators remains challenging due to sunlight's intermittent availability. Herein, an alternative strategy is proposed to achieve dual-functional energy management of photo-thermoactivated viologen T semiconductors for enhanced solar water evaporation, water-enabled electricity generation, and electrothermal evaporation. A sequential cyanide-bridged layer-directed intercalation approach is developed, where infinitely π-stacked, redox-active N-methyl bipyridinium cations with near-planar structures are sandwiched between cyanide-bridged MnII–FeIII. The extended absorption range of 95% is achieved through radical–π interactions that occur within the continuously π-stacked N-methyl bipyridinium units upon thermal activation. The photo-thermoactivated MnII–FeIII compounds anchored charcoal mask (MnII–FeIII@CM) with a sided evaporation structure and controllable water transfer, offering a high evaporation rate of 2.39 kg m−2 h−1 under one sun (1 kW m−2) illumination. As an energy nanogenerator, the output voltage and current of MnII–FeIII@CM can reach up to ≈480 mV and ≈60 µA cm−2 under ambient conditions. Furthermore, storage of electrical energy from MnII–FeIII@CM using energy storage devices is expected to enable all-weather evaporation by electric heating due to unsustainable sunlight, providing a unique technology for seawater desalination and offshore work platform energy access. Keywords: Solar Thermal, Semiconductors, Weather Applications, Seawater Desalination
dc.identifier.citationIrshad, M. S., Ahmed, I., Arshad, N., Alomar, M., Shu, Y., Zhenzhen, G., ... & Wang, X. (2025). Controlled Self‐Assembly and Photo‐Thermal Activation of Viologen‐Based 2D Semiconductors for Dual‐Function Energy Management in All‐Weather Applications. Advanced Science, 2415101.
dc.identifier.doihttps://doi.org/10.1002/advs.202415101
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/7178
dc.language.isoen
dc.publisherWiley
dc.titleControlled Self-Assembly and Photo-Thermal Activation of Viologen-Based 2D Semiconductors for Dual-Function Energy Management in All-Weather Applications
dc.typeArticle

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