Abstract Photocatalysis has emerged as a highly promising strategy to address global energy and environmental challenges. Although S‐scheme heterojunctions offer a robust strategy for enhancing the migration efficiency of photo‐generated charge carriers, their capability to precisely regulate the generation of reactive oxygen species for bacterial inactivation remains unclear. Here, a 2D/2D S‐scheme heterojunction is constructed that enables ultrafast interfacial electron transfer and, upon introducing a polar surface, further achieves a marked enhancement in H 2 O 2 production. As a result, the catalyst exhibits markedly enhanced photocatalytic water disinfection performance, achieving a complete 7‐log inactivation of E. coli within 40 min under simulated‐sunlight irradiation (λ = 200–2500 nm). This work provides new insights into harnessing the potential of S‐scheme heterojunctions for the precise control of ROS generation during water disinfection.
Zhang et al. (Tue,) studied this question.
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