
FOLLOWUS
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, China
School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China
Xi'an Modern Chemistry Research Institute, Xi'an 710065, China
These authors contributed equally to this work.
Corresponding author. E-mail address: xtf_e@bit.edu.cn (X.-t.-f. E).
收稿:2025-06-15,
修回:2025-08-22,
录用:2025-09-16,
网络首发:2025-12-05,
纸质出版:2026-02
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Ma Tingting, Xie Junjian, Li Hui, 等. Enhanced combustion and hydrophobic performance of aluminum micro-particles coated with high-energy fluorine-containing materials[J]. 中国化学工程学报(英文), 2026,90(2):361-371.
Ma Tingting, Xie Junjian, Li Hui, et al. Enhanced combustion and hydrophobic performance of aluminum micro-particles coated with high-energy fluorine-containing materials[J]. Chinese Journal of Chemical Engineering, 2026, 90(2): 361-371.
Ma Tingting, Xie Junjian, Li Hui, 等. Enhanced combustion and hydrophobic performance of aluminum micro-particles coated with high-energy fluorine-containing materials[J]. 中国化学工程学报(英文), 2026,90(2):361-371. DOI:
Ma Tingting, Xie Junjian, Li Hui, et al. Enhanced combustion and hydrophobic performance of aluminum micro-particles coated with high-energy fluorine-containing materials[J]. Chinese Journal of Chemical Engineering, 2026, 90(2): 361-371. DOI:
Fluorine-containing compounds have proven to be effective coating materials for enhancing the combustion efficiency of aluminum micro-particles (Al MPs). However
these compounds are usually lowenergy polymeric materials
which may inevitably diminish the overall energy density of propellants or explosives. This study introduces a two-step coating strategy using fluorinated energetic smallmolecule 2-NCF to coat Al MPs
employing FeCl
3
as an intermediate layer. Compared to pristine Al MPs
2-NCF coated Al MPs can reduce the ignition delay from 36 ms to 3 ms and shorten the time to maximum flame area from 551 ms to 114 ms
accompanied by intensified sparking combustion. Thermal analyses demonstrate that the energetic 2-NCF induces localized micro-explosions to disrupt the alumina shell
and the fluorinated segments produced by 2-NCF react with the aluminum
followed by β-AlF
3
to α-AlF
3
phase evolution
which sustains oxygen penetration for complete aluminum core oxidation to release more energy. The 2-NCF coating concurrently enhances hydrophobicity of Al MPs
elevating contact angles from 0° to 120°. This coating can effectively block water penetration and prevent hydrolysis of the inner aluminum during long storage. This work demonstrates the potential of 2-NCF as an excellent high-energetic coating material to enhance the combustion and hydrophobic performance of aluminum powder.
S.X. Sun, B.B. Zhao, G.P. Zhang, Y.J. Luo, Applying mechanically activated Al/PTFE in CMDB propellant, Propellants Explos , Pyrotech 43 (11) (2018) 1105—1114.
N.H. Yen, L.Y. Wang, Reactive metals in explosives, Propellants Explos , Pyrotech. 37 (2) (2012) 143—155.
C.C. Zeng, Z.J. Yang, Y.S. Wen, W. He, J.H. Zhang, J. Wang, C. Huang, F.Y. Gong, Performance optimization of core-shell HMX@(Al@GAP) aluminized explosives, Chem. Eng. J. 407 (2021) 126360.
H.X. Wang, H. Ren, T. Yan, Y.R. Li, W.J. Zhao, A latent highly activity energetic fuel: thermal stability and interfacial reaction kinetics of selected fluoropolymer encapsulated sub-micron sized Al particles, Sci. Rep. 11 (1) (2021) 738.
C. Wang, X.R. Zou, S.P. Yin, J.L. Wang, H.Y. Li, Y. Liu, N.F. Wang, B.L. Shi, Improvement of ignition and combustion performance of micro-aluminum particles by double-shell nickel-phosphorus al loy coating, Chem. Eng. J. 433 (2022)133585.
D.Y. Tang, J.Y. Lyu, W. He, J. Chen, G.C. Yang, P.J. Liu, Q.L. Yan, Metastable intermixed Core-shell Al@M(IO 3 ) x nanocomposites with improved combustion efficiency by using tannic acid as a functional interfacial layer, Chem. Eng. J. 384 (2020) 123369.
F. Xiao, Z.H. Liu, T.X. Liang, R.J. Yang, J.M. Li, P. Luo, Establishing the interface layer on the aluminum surface through the self-assembly of tannic acid(TA):improving the ignition and combustion properties of aluminum, Chem. Eng. J. 420(2021)130523.
Q.L. Qiu, Y.N. Zhou, J.Z. Liu, W. Shi, W.J. Yang, Combustion of aluminum powder using CO 2 laser in O 2 /CO 2 atmosphere under different pressure conditions, J. Therm. Anal. Calorim. 147 (8) (2022) 4959—4970.
Y.M. Huang, J.X. Zhang, R.H. Wang, B. Gao, R.Y. Miao, S.R. Zhang, D.J. Wang, Enhancing the energy release performance of Al@(1H, 1H, 2H, 2H-perfluorodecyltriethoxysilane/Glycidyl azide polymer) core-shell materials via in situ polymerization, Colloids Surf. A Physicochem , Eng. Aspects 710 (2025) 136278.
Y.R. Li, H. Ren, T. Yan, Q.J. Jiao, H.X. Wang, Reactivity of fluororubbermodified aluminum in terms of heat transfer effect, J. Therm. Anal. Calorim. 142 (2) (2020) 871—876.
J.Y. Piao, S.Y. Duan, Y.F. Mao, J. Wang, A.M. Cao, L. Zhang, Stabilization of the energetic Al powder through uniform and controlled surface coating for promoting its energy output, Surf. Coat. Technol. 389(2020)125603.
L.T. DeLuca, Overview of Al-based nanoenergetic ingredients for solid rocket propulsion, Def. Technol. 14 (5)(2018)357—365.
J.F. Yuan, J.Z. Liu, Y.N. Zhou, J.R. Wang, T. Xv, Aluminum agglomeration of AP/HTPB composite propellant, Acta Astronaut. 156(2019)14—22.
W. He, J.Y. Lyu, D.Y. Tang, G.Q. He, P.J. Liu, Q.L. Yan, Control the combustion behavior of solid propellants by using core-shell Al-based composites, Combust. Flame 221(2020)441—452.
F. Saceleanu, T.V. Vuong, E.R. Master, J.Z. Wen, Tunable kinetics of nanoaluminum and microaluminum powders reacting with water to produce hydrogen, Int. J. Energy Res. (2019) 4769.
F.W. Li, Q. Wang, J. Cheng, Z.H. Zhang, Y.X. Zhou, K.E. Ouyang, J.B. Xu, Y.H. Ye, R.Q. Shen, Mitigating the negative catalytic effect of CuO by FAS-17 coated Al nanopowder: isothermal ageing of Al/CuO nanotHermite at 71℃ and 60% relative humidity, Def. Technol. 34(2024) 156—167.
J.P. Liu, H.R. Zhang, Q.L. Yan, Anti-sintering behavior and combustion process of aluminum nano particles coated with PTFE: a molecular dynamics study, Def. Technol. 24(2023)46—57.
Y.N. Li, S.Y. Hang, J. Li, W.X. Guo, W. Xiao, Z.W. Han, B.L. Wang, Study on the preparation parameters and combustion performance of Al/PTFE composites prepared by a mechanical activation-sintering method, New J. Chem. 44(48) (2020)21092—21099.
J. Wang, L. Zhang, Y.F. Mao, F.Y. Gong, An effective way to enhance energy output and combustion characteristics of Al/PTFE, Combust. Flame 214(2020) 419—425.
Z.Y. Wu, J.X. Liu, S. Zhang, X.Q. Liu, X. Xu, W.Z. Ma, S.K. Li, C. He, Enhanced thermal- and impact-initiated reactions of PTFE/Al energetic materials through ultrasonic-assisted core-shell construction, Def. Technol. 18 (8) (2022) 1362—1368.
H. Li, J.K. Zhang, F.Q. Zhao, X.F. Huang, Aluminum combustion enhancement in AP free nitramine- based solid propellants by PVDF coating, Fuel 390 (2025)134689.
Y.N. Li, B.L. Wang, Z.W. Han, Energy evolution mechanism of a PVDF activated nano-aluminum based metastable intermixed composites, J. Alloys Compd. 966(2023)171586.
W.C. Zhang, K.Y. Xiong, Z.M. Fan, Y. Shu, P.J. Liu, Q.L. Yan, W. Ao, An experimental study of the combustion characteristics of novel Al/MO X /PVDF metastable intermixed composites, Aero. Sci. Technol. 137 (2023) 108263.
C.C. Wu, J.X. Nie, S.W. Li, W. Wang, Q. Pan, X.Y. Guo, Tuning the reactivity of perfluoropolyether-functionalized aluminu m nanoparticles by the reaction interface fuel-oxidizer ratio, Nanomaterials 12 (3)(2022)530.
C.C. Wu, J.X. Nie, S.W. Li, Q.J. Jiao, D. Wang, X.Y. Guo, μAl-based reactive materials with improved energy efficiency by using the fluorine-containing oxidizer perfluoropolyether as an interfacial layer, Combust. Flame 248 (2023)112554.
L.C. Zhang, X.D. Li, S. Wang, X. Su, M.S. Zou, Facile energetic fluoride chemistryinduced organically coated aluminum powder with effectively improved ignition and combustion performances, J. Therm. Anal. Calorim. 148 (13) (2023) 5957—5966.
H.X. Zhang, F. Xiao, Surface fluorinated metastable aluminum microspheres:improved ignition and anti-aging properties of aluminum powder, Combust. Sci. Technol. 197(3)(2025)618—635.
L.L. Campbell, K.J. Hill, D.K. Smith, M.L. Pantoya, Thermal analysis of microscale aluminum particles coated with perfluorotetradecanoic (PFTD) acid, J. Therm. Anal. Calorim. 145 (2) (2021) 289—296.
Y.H. Hu, B.W. Tao, D.Y. Hao, R.Q. Fan, D.B. Xia, K.F. Lin, A.M. Pang, Y.L. Yang, Fabrication and mechanistic study of AP/nAl/PTFE spherical encapsulated energetic materials with enhanced combustion performance, Chem. Eng. Sci. 222(2020)115701.
Z.J. Li, X. Zhao, G. Li, F.Y. Gong, Y. Liu, Q.L. Yan, Z.J. Yang, F.D. Nie, Surface fluorination of n -Al particles with improved combustion performa nce and adjustable reaction kinetics, Chem. Eng. J. 425 (2021)131619.
R.B. Wang, L.C. Zhang, X.D. Li, L.X. Zhu, Z.L. Xiang, J. Xu, D.C. Xue, Z.T. Deng, X. Su, M.S. Zou, High-performance aluminum fuels induced by monolayer selfassembly of nano-sized energetic fluoride vesicles on the surface, Adv. Sci. 11 (26) (2024) 2401564.
F. Xiao, T.X. Liang, Preparation of hierarchical core-shell Al-PTFE@TA and Al-PTFE@TA-Fe architecture for improving the combustion and ignition properties of aluminum, Surf. Coat. Technol. 412 (2021) 127073.
Y. Chen, K. Xue, Y. Liu, L. Pan, X.W. Zhang, J.J. Zou, Preparation and properties of high-energy-density aluminum/boron-containing gelled fuels, Chin. J. Chem. Eng. 65 (2024)230—242.
V. Chobaomsup, M. Metzner, Y. Boonyongmaneerat, Superhydrophobic surface modification for corrosion protection of metals and alloys, J. Coating Technol. Res. 17 (3) (2020) 583—595.
H.M. Ali, M.A. Qasim, S. Malik, G. Murtaza, Techniques for the fabrication of super-hydrophobic surfaces and their heat transfer applications. Heat Transfer-Models, Methods and Applications, InTech,2018.
L.C. Zhang, X.D. Li, S. Wang, X. Su, M.S. Zou, Self-assembly of composite salts induced uniform, ammonium perchlorate-catalytic, ignitable and energetic coating on aluminum fuels, Combust. Flame 260(2024)113109.
Y. Pan, Y.J. Chen, K.L. Wu, Z. Chen, S.J. Liu, X. Cao, W.C. Cheong, T. Meng, J. Luo, L.R. Zheng, C.G. Liu, D.S. Wang, Q. Peng, J. Li, C. Chen, Regulating the coordination structure of single-atom Fe-N x C y catalytic sites for benzene oxidation, Nat. Commun. 10 (2019) 4290.
K. Kamiya, H. Koshikawa, H. Kiuchi, Y. Harada, M. Oshima, K. Hashimoto, S. Nakanishi, Inside cover picture: Iron—nitrogen coordination in modified graphene catalyzes a four-electron-transfer oxygen reduction reaction, Chemelectrochem 1 (5) (2014) 820.
M.A. Trunov, M. Schoenitz, X.Y. Zhu, E.L. Dreizin, Effect of polymorphic phase transformations in Al 2 O 3 film on oxidation kinetics of aluminum powders, Combust. Flame 140 (4) (2005) 310—318.
Z. Nie, H.F. Yang, M.H. Zhang, W.M. Wang, X.L. Fu, Z.Q. Qiao, G.C. Yang, X. Y. Liu, X. Wang, Synergistically enhanced long-term effectiveness and combustion performance of aluminum nanoparticles by partially fluorinating external alumina shell, Ind. Eng. Chem. Res. 61 (43) (2022) 16071—16080.
M. Yang, D.Z. Gao, T. Wen, J. Guo, X.Q. Zhang, Q. Wang, C.P. Guo, Efficient construction of Al/F microspheres in pickering emulsion to regulate combustion reactivity, J. Mater. Sci. 59 (7) (2024) 2828—2840.
Y. Chen, J.Q. Wang, Y.N. Wang, B.Z. Zhu, Y.L. Sun, Probing the difference in improving the ignition and combustion of micro/nano-sized aluminum powde r modified by VitonA, J. Mater. Sci. 59 (48) (2024) 22091—22108.
D. Riello, C. Zetterström, C. Parr, M.A.L. Braulio, M. Moreira, J.B. Gallo, V.C. Pandolfelli, AlF 3 reaction mechanism and its influence on α-Al 2 O 3 mineralization, Ceram. Int. 42 (8) (2016) 9804—9814.
C. Huang, Z.J. Yang, Y.C. Li, B.H. Zheng, Q.L. Yan, L.F. Guan, G. Luo, S.B. Li, F.D. Nie, Incorporation of high explosives into nano-aluminum based microspheres to improve reactivity, Chem. Eng. J. 383 (2020) 123110.
B.Z. Zhu, S.Y. Zhang, Y.L. Sun, Y.W. Ji, J.H. Wang, Fluorinated graphene improving thermal reaction and combustion characteristics of nanoaluminum powder, Thermochim. Acta 705 (2021) 179038.
E.L. Dreizin, Metal-based reactive nanomaterials, Prog. Energy Combust. Sci. 35(2)(2009)141—167.
R.K. Walzel, V.I. Levitas, M.L. Pantoya, Aluminum particle reactivity as a function of alumina shell structure: amorphous versus crystalline, Powder Technol. 374(2020)33—39.
V. Dichiarante, M.I. Martinez Espinoza, L. Gazzera, M. Vuckovac, M. Latikka, G. Cavallo, G. Raffaini, R. Oropesa-Nuñez, C. Canale, S. Dante, S. Marras, R. Carzino, M. Prato, R.H.A. Ras, P. Metrangolo, A short-chain multibranched perfluoroalkyl thiol for more sustainable hydrophobic coatings, ACS Sustainable Chem. Eng. 6 (8) (2018) 9734—9743.
M. Abdolmaleki, G.R. Allahgholipour, H. Tahzibi, S. Azizian, Fabrication of superhydrophobic aluminum with enhanced anticorrosive property, Mater. Chem. Phys. 313(2024)128711.
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