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Updated: Feb 19, 2026

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Isolation and Biophysical Study of Fruit Cuticles
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Ingeniería Anatómica de Exocarpio-Mesocarpio-Endocarpio: Oxidación y Activación Adaptan la Alianza Micromesoporosa
Weihong Guo1, Weijun Ma1, Lin Yang1
1School of Materials Science and Engineering, Dongguan University of Technology, Dongguan 523808, China.
Langmuir : the ACS journal of surfaces and colloids
|February 17, 2026
Resumen
Los investigadores diseñaron carbono poroso a partir de distintas capas de la pulpa de la fruta, logrando una capacitancia superior en el material derivado del exocarpio. Este enfoque de ingeniería anatómica mejora el rendimiento y la durabilidad de los supercondensadores.
Conclusiones:
- La ingeniería anatómica de las capas de la pulpa es una estrategia viable para mejorar la capacitancia.
- La estructura de panal a nanoescala de Ex-Pc mejora la accesibilidad de los iones y el rendimiento electroquímico.
- Este estudio abre vías para la preparación de carbono poroso homogéneo derivado de biomasa con microestructuras adaptadas para el almacenamiento de energía avanzado.
Palabras clave:
carbono porosoKigelia africanasupercondensadoresingeniería anatómicaalmacenamiento de energíacapacitanciadurabilidadmateriales derivados de biomasamicroestructuradifusión de ionesMás Videos Relacionados
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