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porous materials

  • Sugarcane Biochar Electrode Outperforms Metal Oxide Composites for Next-Generation Supercapacitors

    Sugarcane Biochar Electrode Outperforms Metal Oxide Composites for Next-Generation Supercapacitors

  • Olive Stone Hydrochar with ZnCl2 Activation Achieves 1281 m2/g Surface Area, Improving  CO2​ Adsorption to 2.78 mmol/g.

    Olive Stone Hydrochar with ZnCl2 Activation Achieves 1281 m2/g Surface Area, Improving CO2​ Adsorption to 2.78 mmol/g.

  • Scalable Biochar Nanosheets: A Breakthrough for Thallium Removal from Water

    Scalable Biochar Nanosheets: A Breakthrough for Thallium Removal from Water

  • Unlocking Biochar’s Potential: The Role of Feedstocks, Pyrolysis, and Modifications

    Unlocking Biochar’s Potential: The Role of Feedstocks, Pyrolysis, and Modifications

  • Enhancing Supercapacitor Electrodes with Sulfur and Nitrogen Co-doped Biochar

    Enhancing Supercapacitor Electrodes with Sulfur and Nitrogen Co-doped Biochar

  • Transforming Biomass Waste into High-Performance Catalytic Materials

    Transforming Biomass Waste into High-Performance Catalytic Materials

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