Xiao-Hong Yi, Hong-Yu Chu, Chao-Yang Wang, Hang Ren, Li-hong Zhou, Yujie Zhao, Fu-Xue Wang, Hao Du, Yixuan Zhai, Tao Xia, Shaohua Guo, Xiaoning Wang, Yunlong Wang, Qian Wen, Ge Shen, Meng Yang, Yu-Hang Li, Mingjia Xu, Xiaoyuan Zhang, Hao Wang, Xudong Zhao, Yifei Sun, Yi-Lin Liu, Qingyi Zeng, Yuying Deng, Qi Wang, Xiaodong Zhang, Jie Li, Ning Liu, Chuanxi Yang, Jiansheng Li, Anping Wang, Xun Wang, Xuchun Qiu, Haodong Ji, Xuedong Du, Jiaxing Wu, Chong-Chen Wang
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This review comprehensively summarizes the latest advancements in the synthesis and multifaceted applications of metal-organic frameworks (MOFs) for clean water. It systematically explores scalable synthesis methods, from solvothermal to green mechanochemical routes, and highlights the innovative transformation of waste into high-value MOFs. The article delves into the diverse functionalities of MOFs in water remediation, including the adsorptive and catalytic removal of heavy metals, organic pollutants, pharmaceuticals, PFASs, and micro/nano-plastics. Applications in sensing, radionuclide separation, oil-water separation, and advanced membrane technologies are also detailed. Furthermore, emerging roles in water capture, algal inhibition and resource recovery are discussed. Finally, the review provides a critical perspective on future challenges and opportunities, emphasizing sustainable synthesis, life-cycle assessment, and the integration of AI for the intelligent design of next-generation MOFs, paving the way for their transition from laboratory research to real-world water treatment solutions.