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Smart Pickering Emulsions Co-Stabilized by Chalcogenoviologen Surfactants and Single-Atom Pt-Decorated g-C 3 N 4 for Switchable Biphasic Photocatalysis

皮克林乳液 光催化 化学 催化作用 乳状液 化学工程 亚胺 水溶液 甲烷氧化偶联 卤水 纳米技术 苄胺 石墨烯 氮化碳 多相催化 石墨氮化碳 水介质
作者
Zhaohui Cui,Siyu Sun,Tianyue Yuan,Lijie Ding,X M Han,Qi Sun,Zhaoguang Zhang,Hanchang Lu,Houbing Zou,Y F Li,Ruyi Zheng,Gang He
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
标识
DOI:10.1021/jacs.6c07620
摘要

Interfacial reaction microenvironments play a critical role in determining photocatalytic performance beyond the intrinsic properties of photocatalysts. However, emulsion-based photocatalytic platforms that simultaneously offer structural robustness, switchable operation, and efficient interfacial charge-transfer regulation remain rare. Herein, smart-responsive Pickering emulsions are developed by costabilization of chalcogenoviologen surfactants (SV 2+ -UDA/SeV 2+ -UDA/TeV 2+ -UDA) and single-atom platinum-decorated graphitic carbon nitride (Pt SAs@g-C 3 N 4 ) for biphasic photocatalysis. The resulting emulsions exhibit outstanding stability in strong acidic and alkaline media as well as in saturated brine while allowing reversible demulsification and re-emulsification under an external electric field, thereby enabling switchable catalysis and catalyst recovery. The optimized emulsion achieves a hydrogen evolution rate of up to 7824 μmol·h –1 ·g –1 under visible-light irradiation, corresponding to a 3.0-fold enhancement over the bulk aqueous, viologen-free system, while retaining over 90% of its activity across a wide pH range and under seawater salinity. More importantly, the emulsion functions as a bidirectional microreactor, coupling aqueous hydrogen evolution with oil-phase oxidative coupling of benzylamine without sacrificial reagents, and delivers imine yields above 85% together with a hydrogen evolution rate of 3892 μmol·h –1 ·g –1 . The enhanced performance highlights the critical role of interfacial synergy. The surfactant/photocatalyst costabilization strategy provides a versatile platform for robust, switchable, and synergistic biphasic photocatalysis.
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