Zhe Yang

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2012-2017 Physics Tsinghua National University, Beijing, Beijing Shi, China 
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"Zhe Yang"
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Gan B, Peng LE, Liu W, et al. (2024) Ultra-permeable silk-based polymeric membranes for vacuum-driven nanofiltration. Nature Communications. 15: 8656
Xiao Q, Yang Z, Li W, et al. (2024) Iron Nanoparticles-Confined Graphene Oxide Membranes Coupled with Sulfite-Based Advanced Reduction Processes for Highly Efficient and Stable Removal of Bromate. Environmental Science & Technology
Wang LA, He H, Gan Q, et al. (2024) Polar Solvent-Induced Spontaneous Nanofoaming for Synthesizing Ultra-High-Performance Polyamide Nanofiltration Membranes. Nano Letters
Qu HT, Li Q, Hao L, et al. (2024) Esophageal cancer screening, early detection and treatment: Current insights and future directions. World Journal of Gastrointestinal Oncology. 16: 1180-1191
Liu W, Long L, Yang Z, et al. (2023) Enhancing the removal of organic micropollutants by nanofiltration membrane with Fe (III)-tannic acid interlayer: Mechanisms and environmental implications. Water Research. 245: 120623
Gan Q, Wu C, Long L, et al. (2023) Does Surface Roughness Necessarily Increase the Fouling Propensity of Polyamide Reverse Osmosis Membranes by Humic Acid? Environmental Science & Technology
Gan Q, Peng LE, Yang Z, et al. (2023) Demystifying the Role of Surfactant in Tailoring Polyamide Morphology for Enhanced Reverse Osmosis Performance: Mechanistic Insights and Environmental Implications. Environmental Science & Technology. 57: 1819-1827
Zhou S, Long L, Yang Z, et al. (2022) Unveiling the Growth of Polyamide Nanofilms at Water/Organic Free Interfaces: Toward Enhanced Water/Salt Selectivity. Environmental Science & Technology
Gan Q, Peng LE, Guo H, et al. (2022) Cosolvent-Assisted Interfacial Polymerization toward Regulating the Morphology and Performance of Polyamide Reverse Osmosis Membranes: Increased -Phenylenediamine Solubility or Enhanced Interfacial Vaporization? Environmental Science & Technology
Shao S, Shi D, Hu J, et al. (2021) Unraveling the Kinetics and Mechanism of Surfactant-Induced Wetting in Membrane Distillation: An In Situ Observation with Optical Coherence Tomography. Environmental Science & Technology
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