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Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance

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Published in:ChemistryOpen
Format: Online Article RSS Article
Published: 2026
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spellingShingle Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
Chemistry
General
Chemistry
sub_discipline_display General
sub_discipline_facet General
subject_display Chemistry
General
Chemistry
Chemistry
General
Chemistry
subject_facet Chemistry
General
Chemistry
title Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_auth Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_full Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_fullStr Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_full_unstemmed Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_short Bio‐Derived Hard Carbon from Bassia scoparia as a Multifunctional Reinforcement for Chlorinated Polypropylene: Structural, Thermal, and Bioactive Performance
title_sort bio‐derived hard carbon from bassia scoparia as a multifunctional reinforcement for chlorinated polypropylene: structural, thermal, and bioactive performance
topic Chemistry
General
Chemistry
url https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/open.70241?af=R