TY - JOUR
T1 - Ordered assembly of fluorinated graphene with nano fuels for coupling reaction and application in microenergetic devices
AU - Wang, Jun
AU - Ren, Li
AU - Zhang, Xingquan
AU - Mao, Yao Feng
AU - Wang, Haifu
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/6
Y1 - 2026/6
N2 - High toughness, superior reactivity with high energy and pressure output at micro-size are the basic requirements for energy materials applied in microenergetic devices such as micro-thrusters, micro-ignitors and micro-power sources. Herein, fluorinated graphene as a multifunctional additive is employed to ordered assembly flexible Al-FG/B-FG film based on “brick & mortar” structured concept prepared by vacuum self-assembly. Graphene fluoride (FG), as the “brick”, integrates with fluorine rubber loading Al (aluminum) or B (boron) nanoparticles as two types of "mortar" that are stacked alternately to assembly an ordered structure and obtain strong toughness. The layered ordered Al-FG/B-FG could efficiently combine the high reaction kinetics of Al-FG and the ultra-high calorific value of B-FG to realize coupling reaction and achieve superior self-sustaining combustion at micro-size, release high-energy and pressure. Subsequently, Al-FG/B-FG film has been integrated in micro-ignitor and self-destructive devices to achieve ignition and damage functions. More importantly, Al-FG/B-FG film still maintains stable energy output characteristics in harsh environments and could achieve damage effects in only 20 microseconds when applied in self-destructive devices. This work establishes an innovative configuration to design novel energy materials and apply in micro-devices.
AB - High toughness, superior reactivity with high energy and pressure output at micro-size are the basic requirements for energy materials applied in microenergetic devices such as micro-thrusters, micro-ignitors and micro-power sources. Herein, fluorinated graphene as a multifunctional additive is employed to ordered assembly flexible Al-FG/B-FG film based on “brick & mortar” structured concept prepared by vacuum self-assembly. Graphene fluoride (FG), as the “brick”, integrates with fluorine rubber loading Al (aluminum) or B (boron) nanoparticles as two types of "mortar" that are stacked alternately to assembly an ordered structure and obtain strong toughness. The layered ordered Al-FG/B-FG could efficiently combine the high reaction kinetics of Al-FG and the ultra-high calorific value of B-FG to realize coupling reaction and achieve superior self-sustaining combustion at micro-size, release high-energy and pressure. Subsequently, Al-FG/B-FG film has been integrated in micro-ignitor and self-destructive devices to achieve ignition and damage functions. More importantly, Al-FG/B-FG film still maintains stable energy output characteristics in harsh environments and could achieve damage effects in only 20 microseconds when applied in self-destructive devices. This work establishes an innovative configuration to design novel energy materials and apply in micro-devices.
KW - Al-FG/B-FG
KW - Interfacial structure
KW - Microenergetic device
KW - Pressure
KW - Self-sustaining combustion
UR - https://www.scopus.com/pages/publications/105041205899
U2 - 10.1007/s42114-026-01775-x
DO - 10.1007/s42114-026-01775-x
M3 - Article
AN - SCOPUS:105041205899
SN - 2522-0128
VL - 9
JO - Advanced Composites and Hybrid Materials
JF - Advanced Composites and Hybrid Materials
IS - 3
M1 - 267
ER -