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Official PDF TranslationChinese Journal of Energetic Materials (含能材料)

Solubility and Thermodynamic Properties of β-HMX in Dimethyl Sulfoxide–Alcohol Binary Solvent Mixtures

Authors: HE Yan; WU Hao; ZHAI Lian-jie; CAI Rong-bin; XU Cheng; HU Jian-jian; HUANG Jun-rui; ZHAO Xue

DOI: 10.11943/CJEM2026054Status: Verified Translated Edition
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Key Findings in This Report

• • Solubility of β-HMX in DMSO–alcohol mixtures increases with temperature and DMSO mole fraction; solvent composition exerts a stronger influence than temperature, with a maximum relative solubility change of 6.3% due to composition fluctuation (equivalent to 1.4–2.7 K temperature shift). This underscores the need for precise solvent ratio control in industrial crystallization to avoid batch-to-batch variability. • • The Apelblat model achieved the highest correlation accuracy with ARD < 5% and RMSD < 0.11%, outperforming Jouyban–Acree and NRTL models. This model can be reliably used for solubility prediction in process design and scale-up. • • Thermodynamic analysis (NRTL-based) revealed that dissolution of β-HMX in all three solvent systems is endothermic (positive enthalpy), entropy-driven (positive entropy), and spontaneous (negative Gibbs free energy). This indicates that higher temperatures and higher DMSO content enhance solubility, guiding the selection of operating conditions for cooling or anti-solvent crystallization. • • PXRD and DSC confirmed that β-HMX remains in its β-polymorph across all tested conditions, ensuring that solubility data are not confounded by polymorphic transitions. This is critical for reproducible crystallization and product quality control.