Flash Femtosecond Laser Heating-Driven High-Entropy Alloy Anchored Graphene for Anti-Icing/Deicing

Abstract High-entropy alloy nanoparticles (HEA-NPs) offer opportunities for multifunctional thermal conversion because of their multielement composition, tunable electronic structures, and metallic transport characteristics. However, their coupled photothermal–electrothermal behavior remains insufficiently explored, particularly for anti-/deicing applications that require solar-driven heating, electrical heating, and their combined operation. Here, we develop a flash femtosecond laser strategy to fabricate FeCoNiCrMn HEA-NPs on Kevlar-fiber-based laser-induced graphene (LIG). During laser irradiation, metal precursors undergo ultrafast decomposition, alloying, and in situ immobilization on the conductive graphene framework. The resulting HEA/LIG exhibits strong optical absorption of 98.37% over 0.2–1.4 μm and excellent electrothermal performance, reaching 278.5 °C under an applied voltage of 8 V. Under 2.0 sun illumination and 4 V voltage, HEA/LIG completely melts ice within 150 s, demonstrating its potential for flexible, multifunctional, anti-/deicing.

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Publication Details

Journal
ACS Applied Materials & Interfaces
Published
2026-09-24
DOI
https://doi.org/10.1021/acsami.6c15150
Primary Topic
High Entropy Alloys Studies
Type
article
Field-Weighted Citation Impact
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article

Flash Femtosecond Laser Heating-Driven High-Entropy Alloy Anchored Graphene for Anti-Icing/Deicing

Ji’an Duan, Xiaoyang Zhou, Kai Yin, Jianqiang Xiao et al.
ACS Applied Materials & Interfaces
High Entropy Alloys Studies
article

Flash Femtosecond Laser Heating-Driven High-Entropy Alloy Anchored Graphene for Anti-Icing/Deicing

Ji’an Duan, Xiaoyang Zhou, Kai Yin, Jianqiang Xiao, Xinghao Song, Lingxiao Wang, Jiaqing Pei, Bin Zhou
article en

Abstract

Abstract High-entropy alloy nanoparticles (HEA-NPs) offer opportunities for multifunctional thermal conversion because of their multielement composition, tunable electronic structures, and metallic transport characteristics. However, their coupled photothermal–electrothermal behavior remains insufficiently explored, particularly for anti-/deicing applications that require solar-driven heating, electrical heating, and their combined operation. Here, we develop a flash femtosecond laser strategy to fabricate FeCoNiCrMn HEA-NPs on Kevlar-fiber-based laser-induced graphene (LIG). During laser irradiation, metal precursors undergo ultrafast decomposition, alloying, and in situ immobilization on the conductive graphene framework. The resulting HEA/LIG exhibits strong optical absorption of 98.37% over 0.2–1.4 μm and excellent electrothermal performance, reaching 278.5 °C under an applied voltage of 8 V. Under 2.0 sun illumination and 4 V voltage, HEA/LIG completely melts ice within 150 s, demonstrating its potential for flexible, multifunctional, anti-/deicing.

ACS Applied Materials & Interfaces
Central South University (CN), South University (US)
Affordable and clean energy
Openalex Percentile: Top 21%
High Entropy Alloys Studies
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