Aug 2026· ChemistrySelect· Vol 11· 1 citation· 108 references
Abstract
This review provides a critical and exhaustive analysis of the Purolite resin portfolio, positioning it as a high‐precision technological platform for advanced separation and chemical conversion processes. Moving beyond their historical application in conventional water treatment, these polymeric materials have evolved into sophisticated molecular architectures, encompassing strong acid cation (SAC) and strong base anion (SBA) exchangers, high‐affinity chelating resins, and specialized enzymatic supports. The study first evaluates the decisive influence of matrix morphology contrasting gel‐type and macroporous structures on active site accessibility and diffusional constraints. Subsequently, the fundamental mechanisms governing adsorbate‐resin interactions are elucidated through the lens of thermodynamic equilibrium models and advanced spectroscopic characterization, including XPS, Raman and EXAFS. Particular emphasis is placed on emerging frontiers, such as the sequestration of per‐ and polyfluoroalkyl substances (PFAS), the selective recovery of uranium and rare earth elements, and the deployment of heterogeneous enzymatic catalysis for biofuel synthesis. Finally, the integration of life cycle assessment and techno‐economic indicators underscores the industrial scalability and sustainability of these functional materials in addressing the contemporary challenges of green chemistry and the global ecological transition.
This review comprehensively and critically examines the research progress on hydrocarbon (HC) adsorbent materials in three key application scenarios: engine cold‐start HC emission control, industrial VOC recovery, and petrochemical HC separation. Written in a general‐to‐specific structure, the review first outlines t...
Jun-Yan Chen, Bin Guan, Lei Zhu et al.· ChemistrySelect· 0 citations
Functional polymer catalysts have emerged as a transformative class of materials for CO2 capture and conversion, offering exceptional tunability, high CO2 affinity, and excellent recyclability. This review provides a comprehensive polymer-centric analysis of four major classes of functional polymer catalysts—linear and...
Membrane‐based desalination and wastewater reclamation play an important role in addressing the global freshwater crisis. However, state‐of‐the‐art polyamide (PA) composite membranes still suffer from inherent limitations, including the trade‐off between permeability and selectivity, insufficient retention of small neu...
Zhenxiang Pan, Adhithya Patabendige, Jian Sun et al.· Advanced Functional Material...· 0 citations
The design and application of advanced materials for selectively capturing trace amounts of radionuclides have drawn great attention in recent years due to the increased demand for the adsorption and separation of nuclear fuel and the mitigation of radioactive contamination in the marine environment. Among these materi...
Ning Wang, Fei Pan, Shuai Ding et al.· Journal of Hazardous Materia...· 0 citations
Phosphonate metal-organic frameworks (MOFs) have emerged as promising alternatives to conventional perfluorosulfonic acid-based proton exchange membranes because of their excellent chemical stability, tunable structures, and efficient proton transport properties. This review examines recent advances in the design of ph...