TY - JOUR
T1 - Liquid Carbon-Boron Cluster Additives for Mixed Amine-50
AU - Mu, Xiaogang
AU - Wang, Shenghui
AU - Yang, Fanzhi
AU - Li, Hao
N1 - Publisher Copyright:
© 2025 by the authors.
PY - 2025/5
Y1 - 2025/5
N2 - Boron-containing compounds, known for their high calorific value, can significantly enhance the energy density of traditional liquid propellants. Through precise chemical modification of the C-H bonds in ortho-carborane, a novel liquid cluster material was synthesized: C,C′-Bis(2-ethylhexanoylmethyl)-o-carborane (BEHMC). This compound exhibits excellent stability, density, and energy properties. By combining BEHMC with mixed amine-50, a cluster liquid propellant was formulated, and its key performance metrics such as density, freezing point, mass calorific value, and volumetric calorific value were evaluated. The propellant achieved a density of 0.884 g·cm−3, a freezing point below −55 °C, a mass calorific value of 41.13 kJ·g−1, and a volumetric calorific value of 36.36 kJ·cm−3. The theoretical specific impulse reached 346 s, and the theoretical density impulse was 2.99 × 106 N·s·m−3. Compared to the traditional mixed amine-50/red fuming nitric acid propellant, the cluster liquid propellant developed in this study maintains a similar calorific value while improving the theoretical specific impulse and density impulse by 2.3% and 3.8%, respectively.
AB - Boron-containing compounds, known for their high calorific value, can significantly enhance the energy density of traditional liquid propellants. Through precise chemical modification of the C-H bonds in ortho-carborane, a novel liquid cluster material was synthesized: C,C′-Bis(2-ethylhexanoylmethyl)-o-carborane (BEHMC). This compound exhibits excellent stability, density, and energy properties. By combining BEHMC with mixed amine-50, a cluster liquid propellant was formulated, and its key performance metrics such as density, freezing point, mass calorific value, and volumetric calorific value were evaluated. The propellant achieved a density of 0.884 g·cm−3, a freezing point below −55 °C, a mass calorific value of 41.13 kJ·g−1, and a volumetric calorific value of 36.36 kJ·cm−3. The theoretical specific impulse reached 346 s, and the theoretical density impulse was 2.99 × 106 N·s·m−3. Compared to the traditional mixed amine-50/red fuming nitric acid propellant, the cluster liquid propellant developed in this study maintains a similar calorific value while improving the theoretical specific impulse and density impulse by 2.3% and 3.8%, respectively.
KW - carborane
KW - cluster
KW - energy density
KW - liquid propellant
KW - theoretical specific impulse
UR - http://www.scopus.com/inward/record.url?scp=105004839749&partnerID=8YFLogxK
U2 - 10.3390/molecules30092037
DO - 10.3390/molecules30092037
M3 - Article
AN - SCOPUS:105004839749
SN - 1420-3049
VL - 30
JO - Molecules
JF - Molecules
IS - 9
M1 - 2037
ER -