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Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications

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Published in:Small Science
Format: Online Article RSS Article
Published: 2026
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publishDate 2026
publishDateSort 2026
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spellingShingle Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
Biology
Natural Sciences — Life Sciences
Natural Sciences
sub_discipline_display Natural Sciences — Life Sciences
sub_discipline_facet Natural Sciences — Life Sciences
subject_display Biology
Natural Sciences — Life Sciences
Natural Sciences
Biology
Natural Sciences — Life Sciences
Natural Sciences
subject_facet Biology
Natural Sciences — Life Sciences
Natural Sciences
title Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_auth Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_full Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_fullStr Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_full_unstemmed Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_short Ultralight Conductive MXene Aerogels: From Material Design to Energy, Environment, and Electronic Applications
title_sort ultralight conductive mxene aerogels: from material design to energy, environment, and electronic applications
topic Biology
Natural Sciences — Life Sciences
Natural Sciences
url https://onlinelibrary.wiley.com/doi/10.1002/smsc.70287?af=R