Aug 2026· ACS Applied Polymer Materials· Vol 8, pp. 14014-14026· 0 citations· 41 references
Abstract
Green and safe separators are regarded as key materials for the construction of renewable and environmentally friendly energy storage devices. Air-laid paper (AP) exhibits promising application prospects owing to its excellent flexibility, high porosity, and acceptable degradability, yet its inherent high flammability severely restricts its use in high-safety energy storage devices. Accordingly, a starch/ammonium polyphosphate/montmorillonite (ST/APP/MMT) ternary composite flame-retardant separator is fabricated on an AP substrate via a facile coating method. Benefiting from the synergistic effects of catalytic charring, intumescent charring, physical barrier, and gas dilution, an organic–inorganic hybrid three-dimensional carbonization network is formed on the fiber surface, which effectively improves the flame retardancy of the separator while maintaining its porous structure and ion transport properties. The resultant separator achieves a high limiting oxygen index (LOI) of 46.25%, and the char residue at 800 °C is increased by 28.09% compared with pure AP, demonstrating outstanding flame-retardant performance. Besides, the flame-retardant separator exhibits an ionic conductivity of 2.78 mS cm–1, showing no significant reduction relative to the pure AP separator. The supercapacitor assembled with the separator still exhibits a capacitance retention rate of 91.74% after 5000 charge–discharge cycles, demonstrating superior electrochemical performance that outperforms most reported flame-retardant separators. This work achieves synergistic optimization of flame retardancy, ionic conductivity, and comprehensive electrochemical properties for paper-based separators, paving a feasible route toward the application of paper-based materials in advanced energy storage systems.
Fire and explosion accidents caused by thermal runaway of lithium-ion batteries (LIBs) have seriously hindered the development of their high-energy-density applications. Herein, we designed and synthesized a novel ZIF-67@COF hybrid material and incorporated it into an epoxy resin (EP) matrix to prepare a composite co...
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To address the challenge of balancing flame retardancy and dust suppression in conventional coal mine treatment materials, a multi-component synergistic flame-retardant dust-suppressant gel was fabricated using carboxymethyl cellulose (CMC) as the matrix, compounded with ammonium polyphosphate (APP), zinc borate (ZB),...
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Developing sustainable cellulose aerogels that simultaneously provide exceptional flame retardancy and high mechanical robustness is crucial for energy-efficient buildings, however, it remains a significant challenge. Herein, mullite fibers frameworked porous multi-ridged sandwich-structured nanofibrillated cellulose (...
Zi-Yi Wu, Sheng-Jiong Nie, Ning-Ning Song et al.· International Journal of Bio...· 0 citations
Developing rigid polyurethane foam (RPUF) featuring well-balanced heat insulation, mechanical robustness, flame retardancy, and smoke inhibition properties through a halogen-free method is crucial for the advancement of building heat-isolated materials. In this study, a multi-component synergistic flame-retardant sys...
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Lithium (Li) metal batteries represent a transformative candidate for high-end energy storage due to their ultra-high energy density. However, commercial polyolefin separators suffer from poor thermal stability and insufficient electrolyte wettability, resulting in high interfacial resistance and inferior compatibility...
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