Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials

Highlights A “five-in-one” multifunctional phase-change composite is developed for magnetothermal, electrothermal, solar-thermal, and thermoelectric energy conversion and electromagnetic shielding applications. The developed composite is based on an innovative combination of carbonized polyimide/Kev...

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Main Authors: Tao Shi, Xing Gao, Huan Liu, Xiaodong Wang
Format: Article
Language:English
Published: SpringerOpen 2025-04-01
Series:Nano-Micro Letters
Subjects:
Online Access:https://doi.org/10.1007/s40820-025-01761-w
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author Tao Shi
Xing Gao
Huan Liu
Xiaodong Wang
author_facet Tao Shi
Xing Gao
Huan Liu
Xiaodong Wang
author_sort Tao Shi
collection DOAJ
description Highlights A “five-in-one” multifunctional phase-change composite is developed for magnetothermal, electrothermal, solar-thermal, and thermoelectric energy conversion and electromagnetic shielding applications. The developed composite is based on an innovative combination of carbonized polyimide/Kevlar/graphene oxide@ZIF-67 complex aerogel as a supporting material and paraffin wax as a phase-change material. The developed composite exhibits excellent solar-thermal, thermoelectric, electrothermal, and magnetothermal energy conversion performance along with high electromagnetic interference shielding effectiveness.
format Article
id doaj-art-07951e4cdce346458e350e381fc438de
institution Kabale University
issn 2311-6706
2150-5551
language English
publishDate 2025-04-01
publisher SpringerOpen
record_format Article
series Nano-Micro Letters
spelling doaj-art-07951e4cdce346458e350e381fc438de2025-08-20T04:03:06ZengSpringerOpenNano-Micro Letters2311-67062150-55512025-04-0117112810.1007/s40820-025-01761-wMulti-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change MaterialsTao Shi0Xing Gao1Huan Liu2Xiaodong Wang3State Key Laboratory of Organic–Inorganic Composites, Beijing University of Chemical TechnologyState Key Laboratory of Organic–Inorganic Composites, Beijing University of Chemical TechnologyState Key Laboratory of Organic–Inorganic Composites, Beijing University of Chemical TechnologyState Key Laboratory of Organic–Inorganic Composites, Beijing University of Chemical TechnologyHighlights A “five-in-one” multifunctional phase-change composite is developed for magnetothermal, electrothermal, solar-thermal, and thermoelectric energy conversion and electromagnetic shielding applications. The developed composite is based on an innovative combination of carbonized polyimide/Kevlar/graphene oxide@ZIF-67 complex aerogel as a supporting material and paraffin wax as a phase-change material. The developed composite exhibits excellent solar-thermal, thermoelectric, electrothermal, and magnetothermal energy conversion performance along with high electromagnetic interference shielding effectiveness.https://doi.org/10.1007/s40820-025-01761-wCarbonaceous aerogelPhase-change compositesBidirectional porous structureSolar-thermal energy conversionThermoelectric generation
spellingShingle Tao Shi
Xing Gao
Huan Liu
Xiaodong Wang
Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
Nano-Micro Letters
Carbonaceous aerogel
Phase-change composites
Bidirectional porous structure
Solar-thermal energy conversion
Thermoelectric generation
title Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
title_full Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
title_fullStr Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
title_full_unstemmed Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
title_short Multi-Energy Conversion and Electromagnetic Shielding Enabled by Carbonized Polyimide/Kevlar/Graphene Oxide@ZIF-67 Bidirectional Complex Aerogel-Encapsulated Phase-Change Materials
title_sort multi energy conversion and electromagnetic shielding enabled by carbonized polyimide kevlar graphene oxide zif 67 bidirectional complex aerogel encapsulated phase change materials
topic Carbonaceous aerogel
Phase-change composites
Bidirectional porous structure
Solar-thermal energy conversion
Thermoelectric generation
url https://doi.org/10.1007/s40820-025-01761-w
work_keys_str_mv AT taoshi multienergyconversionandelectromagneticshieldingenabledbycarbonizedpolyimidekevlargrapheneoxidezif67bidirectionalcomplexaerogelencapsulatedphasechangematerials
AT xinggao multienergyconversionandelectromagneticshieldingenabledbycarbonizedpolyimidekevlargrapheneoxidezif67bidirectionalcomplexaerogelencapsulatedphasechangematerials
AT huanliu multienergyconversionandelectromagneticshieldingenabledbycarbonizedpolyimidekevlargrapheneoxidezif67bidirectionalcomplexaerogelencapsulatedphasechangematerials
AT xiaodongwang multienergyconversionandelectromagneticshieldingenabledbycarbonizedpolyimidekevlargrapheneoxidezif67bidirectionalcomplexaerogelencapsulatedphasechangematerials