会议论文详细信息
18th APS-SCCM; 24th AIRAPT
Energetic lanthanide complexes: coordination chemistry and explosives applications
Manner, V.W.^1 ; Barker, B.J.^1 ; Sanders, V.E.^1 ; Laintz, K.E.^1 ; Scott, B.L.^1 ; Preston, D.N.^1 ; Sandstrom, M.^1 ; Reardon, B.L.^1
Los Alamos National Laboratory, Los Alamos
NM
87545, United States^1
关键词: Co-ordination chemistries;    Coordination environment;    Energetic properties;    Explosive performance;    Heterogeneous composites;    High molecular weight;    Lanthanide complex;    Systematic method;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/500/18/182028/pdf
DOI  :  10.1088/1742-6596/500/18/182028
来源: IOP
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【 摘 要 】

Metals are generally added to organic molecular explosives in a heterogeneous composite to improve overall heat and energy release. In order to avoid creating a mixture that can vary in homogeneity, energetic organic molecules can be directly bonded to high molecular weight metals, forming a single metal complex with Angstrom-scale separation between the metal and the explosive. To probe the relationship between the structural properties of metal complexes and explosive performance, a new series of energetic lanthanide complexes has been prepared using energetic ligands such as NTO (5-nitro-2,4-dihydro-1,2,4-triazole-3-one). These are the first examples of lanthanide NTO complexes where no water is coordinated to the metal, demonstrating novel control of the coordination environment. The complexes have been characterized by X-ray crystallography, NMR and IR spectroscopies, photoluminescence, and sensitivity testing. The structural and energetic properties are discussed in the context of enhanced blast effects and detection. Cheetah calculations have been performed to fine-tune physical properties, creating a systematic method for producing explosives with 'tailor made' characteristics. These new complexes will be benchmarks for further study in the field of metalized high explosives.

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