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Efficient upcycling of polyvinyl chloride into N,S-codoped porous carbon for enhanced Pb(II) ion adsorption
Efficient upcycling of polyvinyl chloride into N,S-codoped porous carbon for enhanced Pb(ii) ion adsorption† A green and sustainable strategy was proposed to efficiently convert polyvinyl chloride (PVC) waste into high-value porous carbon adsorbents for simultaneous waste plastic resourcing and heavy metal pollution control. The synthesis integrates solvothermal pretreatment with dimethylformamide (DMF), followed by KOH activation and heteroatom doping using thiourea as the N/S source.
An integral composite electrode with low Ir loading for efficient acidic oxygen evolution
An integral composite electrode with low Ir loading for efficient acidic oxygen evolution The development of low-Ir-loading oxygen evolution reaction catalysts with high performance and stability is a major challenge for advancing proton exchange membrane water electrolysis (PEMWE). In this study, we report an integral composite electrode by depositing TiO₂ nanowires on titanium plate via an in-situ growth method and subsequently loading Ir nanoparticles onto these nanowires (Ir-TiO₂/TP).
Efficient and stable acidic oxygen evolution based on W18O49 nanowires supported IrOX
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