DOI: 10.1021/acs.iecr.6c02094 ISSN: 0888-5885

Cd Doping as a Dual-Functional Promoter: Steering Interfacial Architecture and Creating Active Sites for Exceptional Photocatalytic Uranium Extraction

Xiaonan Zhang, Dongdong Deng, Congyu Du, Huiye Zhang, Xueze Wang, Yuanyuan Cheng, Jingjing Dong, Liyong Yuan

Abstract

The photocatalytic reduction of soluble U(VI) to insoluble U(IV) is a promising strategy for uranium extraction and wastewater remediation. Herein, we rationally design a Cd-doped ZnO/BiOCl direct Z-scheme heterojunction, where Cd serves a dual-functional role grounded in its optimal ionic radius match with Zn2+ and unique electronic configuration. Cd acts as a morphology-directing promoter to regulate BiOCl nucleation, building an intimately interlocked heterointerface for efficient charge transfer, while simultaneously introducing oxygen vacancies that synergize with BiOCl-derived Cl– sites to form dual-functional active centers for UO22+ adsorption and activation. This synergistic architecture achieves 94.14% U(VI) removal within 180 min under simulated sunlight with excellent stability and selectivity. This work presents a unified strategy for engineering both interfacial architecture and surface reactivity for advanced photocatalysis.