Precision‐Targeted N–H and Cl–O Bond Cleavage: Trinuclear Ferrocenyl Coordination Compounds as Efficient Catalysts for Ammonium Perchlorate Decomposition

ABSTRACT Two novel trinuclear ferrocenyl coordination compounds, Fc 3 N 4 /Fe and Fc 3 N 4 /Co, were synthesized as burning‐rate catalysts for ammonium perchlorate (AP). The trinuclear architecture, featuring a nitrogen‐rich ligand bridging three ferrocene units with transition metal centers, was designed to enhance multi‐site electron transfer and thereby promote catalytic performance. At 3 wt% loading, Fc 3 N 4 /Co reduced AP's high‐temperature decomposition temperature by 126°C, decreased the apparent activation energy by 74.0 kJ · mol −1 , and increased heat release by 718 J · g −1 , outperforming the corresponding mononuclear analogues and commercial binuclear ferrocene catalysts. Structural characterization (XRD, BET, XPS) and DFT calculations suggest that the superior catalytic activity arises from synergistic Co–Fe electronic modulation that facilitates N–H and Cl–O bond activation, together with a high specific surface area (310.6 m 2 · g −1 ) that provides abundant active sites. This work establishes trinuclear ferrocenyl coordination compounds as a promising platform for high‐performance burning‐rate catalysts in composite solid propellants.

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Publication Details

Journal
Applied Organometallic Chemistry
Published
2026-09-18
DOI
https://doi.org/10.1002/aoc.70655
Primary Topic
Energetic Materials and Combustion
Type
article
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Precision‐Targeted N–H and Cl–O Bond Cleavage: Trinuclear Ferrocenyl Coordination Compounds as Efficient Catalysts for Ammonium Perchlorate Decomposition

Xiaoyan Ma, Xiaoju Liu, Xiangrong Ma, Guoxiong Wang et al.
Applied Organometallic Chemistry
Energetic Materials and Combustion
article

Precision‐Targeted N–H and Cl–O Bond Cleavage: Trinuclear Ferrocenyl Coordination Compounds as Efficient Catalysts for Ammonium Perchlorate Decomposition

Xiaoyan Ma, Xiaoju Liu, Xiangrong Ma, Guoxiong Wang, Zeyu Ye, Shijin Hu, Sunqiu Fan
article en

Abstract

ABSTRACT Two novel trinuclear ferrocenyl coordination compounds, Fc 3 N 4 /Fe and Fc 3 N 4 /Co, were synthesized as burning‐rate catalysts for ammonium perchlorate (AP). The trinuclear architecture, featuring a nitrogen‐rich ligand bridging three ferrocene units with transition metal centers, was designed to enhance multi‐site electron transfer and thereby promote catalytic performance. At 3 wt% loading, Fc 3 N 4 /Co reduced AP's high‐temperature decomposition temperature by 126°C, decreased the apparent activation energy by 74.0 kJ · mol −1 , and increased heat release by 718 J · g −1 , outperforming the corresponding mononuclear analogues and commercial binuclear ferrocene catalysts. Structural characterization (XRD, BET, XPS) and DFT calculations suggest that the superior catalytic activity arises from synergistic Co–Fe electronic modulation that facilitates N–H and Cl–O bond activation, together with a high specific surface area (310.6 m 2 · g −1 ) that provides abundant active sites. This work establishes trinuclear ferrocenyl coordination compounds as a promising platform for high‐performance burning‐rate catalysts in composite solid propellants.

Applied Organometallic ChemistryVol. 40(10)
Northwestern Polytechnical University (CN), Dalian Institute of Chemical Physics (CN), Chinese Academy of Sciences (CN), Luoyang Cement Engineering Design and Research Institute (CN), Yulin University (CN)
Affordable and clean energy
Openalex Percentile: Top 19%
Energetic Materials and Combustion
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Precision‐Targeted N–H and Cl–O Bond Cleavage: Trinuclear Ferrocenyl Coordination Compounds as Efficient Catalysts for Ammonium Perchlorate Decomposition — Xiaoyan Ma, Xiaoju Liu, et al. · Applied Organometallic Chemistry (2026) | TGRS Research Map | TGRS