ZHENG Fu-Ping, OU Yu-Xiang, CHEN Jiang-Tao, et al. Preparation and characterization of nano-sized Pd(OH)2 and its use in catalytic hydrogenolysis of HBIW[J]. Chemical Journal of Chinese Universities, 1999, 20(6): 843-845.
[2]
马振叶,李凤生,崔平,等. 纳米Fe2O3的制备及其对高氯酸铵热分解的催化性能[J]. 催化学报, 2003, 24(10): 795-798.MA Zhen-ye, LI Feng-sheng, CUI Ping, et al. Preparation of nanometer sized Fe2O3 and catalytic performance for ammonium perchlorate decomposition[J]. Chinese Journal of Catalysis, 2003, 24(10): 795-798.
[3]
陈厚和,马慧华,裴艳敏,等. 纳米黑索金的制备及其机械感度[J]. 弹道学报,2003,15(3): 11-13, 18.CHEN Hou-he, MA Hui-hua, PEI Yan-min, et al. The Preparing technology and mechanical sensitivity of nanometer RDX[J]. Journal of Ballistic, 2003, 15(3): 11-13,18.
[4]
曾贵玉,聂福德,尹莉莎,等. 冲击结晶技术制备亚微米TATB粒子的研究[J]. 火炸药学报,2001,24(4): 12-14.ZENG Gui-yu, NIE Fu-de, YIN Li-sha, et al. Study on the preparation of sub-micron TATB particles using the crash crystal technology[J]. Chinese Journal of Explosive and Propellant, 2001, 24(4): 12-14.
[5]
HUANG Hui, TAN Ying-xin, HU Shuang-qi. Study on the flyer sensitivity of the fine-grained HMX [A]. Theory and practice of energetic materials[C], 2003, 661-663.
[6]
郁卫飞,曾贵玉,聂福德,等. 两种炸药的微波干燥[J]. 含能材料,2004, 12(2): 101-103. YU Wei-fei, ZENG Gui-yu, NIE Fu-de, et al. Microwave desiccation of TATB and RDX[J]. Hanneng cailiao, 2004,12(2): 101-103.
Alba Lalitha Ramaswamy, Pamela Kaste. Combustion modifiers for energetic materials[A]. International Annual Conference of ICT 34th [C], 2003, 21/1-21/15
[9]
Jones D E G, Brousseau P, Fouchard R C, et al. Thermal characterization of passivated nanometer size aluminum powders[J]. J Therm Anal Calorim, 2000, 61(3), 805-818.
[10]
Lefrancois Alexandre. Expertise of Nanometric aluminum powder on the detonation efficiency of explosives [A]. International Annual Conference of ICT 32nd[C]. 2001, 36/1-36/12
[11]
Utkin A V, Kanel G I, Bogach A. Macrokinetics of the energy release in high explosives containing nano-size boron particles[A]. AIP Conf Proc, 505(Shock Compression of Condensed Matter, Pt. 2)[C], 2000,869-872 .
[12]
HUANG Hui, HUANG Heng-jian, HUANG Yong. Influence of particle size of aluminum powder and morphology of oxidizer in RDX based aluminized explosive on the ability of accelerating metal (I)[A]. Theory and Practice of Energetic Materials[C],2003, 504-509.
[13]
黄辉,黄勇,李尚斌. 含纳米级铝粉的复合炸药研究[J]. 火炸药学报, 2002, 25(2): 1-3.HUANG Hui, HUANG Yong, LI Shang-bin. Research on composite explosive with nano-aluminium[J]. Chinese Journal of Explosive and Propellant, 2002, 25(2): 1-3.
[14]
罗元香,陆路德,刘孝恒,等. 纳米CuO的制备及对NH4ClO4热分解的催化性能[J]. 无机化学学报, 2002, 18(12): 1211-1214.LUO Yuan-xiang, LU Lu-de, LIU Xiao-heng, et al. Synthesis of nano-crystalline CuO and its catalytic activity on the thermal decomposition of NH4ClO4[J]. Chinese Journal of Inorganic Chemistry, 2002,18(12): 1211-1214.
[15]
秦志春,陈西武,周彬,等. 纳米TiO2对K1K点火药点火能力的影响[J].含能材料, 2003,11(1): 37-39.QIN Zhi-chun, CHEN Xi-wu, ZHOU Bin, et al. Effect of nano TiO2 on igniting strength of K1K ignition mixture[J]. Hanneng Cailiao, 2003, 11(1): 37-39.
[16]
Sandra K. Young, Overview of Sol-Gel Science and Technology[R]. US Army Research Laboratory Report No. ARL-TR-2650.
[17]
Lawrence Hrubesh, A Shared Award in Aerogel Process Technology [J]. LLNL Science and Technology Review, 1995, Nov/Dec, 22-25.
[18]
Ann Parker. Nanoscale Chemistry Yields Better Explosives [J]. LLNL Science and Technology Review, 2000, Oct, 19-21.
[19]
Tillotson T M, Gash A E, Simpson R L, et al. Nanostructured energetic materials using sol-gel methodologies[J]. Non-Cryst. Solids, 2002, 285(1-3), 338-345.
[20]
Barbee T W, Gash A E, Satcher J H, et al. Nanotechnology based environmentally robust primers[A]. 34th International Annual Conference of ICT [C], 2003,31/1-31/13.
[21]
Bryce C Tappan, Thomas B Brill. Cryogel synthesis of nano-crystalline CL-20 coated with cured nitrocellulose [A]. 34th International Annual Conference of ICT [C], 2003, 29/1-29/10.
[22]
Bryce C Tappan, Thomas B Brill, Very Sensitive Energetic Materials Highly Loaded into RF Matrices by the Sol-Gel Method [A]. 33rd International Annual Conference of ICT [C], 2002,38/1-38/10.
[23]
Simpson R L, Tillotson T M, Hrubesh L W, et al. Nanostructured Energetic Materials Derived from Sol-gel Chemistry[A], 31st International Annual Conference of ICT[C], Germany, 2000,35/1-35/7.
[24]
张汝冰,刘宏英,李凤生. 含能催化复合纳米材料的制备研究[J]. 火炸药学报, 2000, 23(3): 9-12,15.Zhang Ru-bing, Liu Hong-ying, Li Fen-sheng. Preparation of composite nanometer-sized particle [J], Chinese Journal of Explosive and Propellant,2000, 23(3): 9-12,15.
[25]
张汝冰,刘宏英,李凤生. 含能催化复合纳米材料的制备研究[J]. 兵器材料科学与工程, 1999,22(5): 27-32.ZHANG Rubing, LIU Hongying, LI Fengsheng. Preparation of composite nanometer- sized particle[J]. Ordnance Material Science and Engineering, 1999,22(5): 27-32.
[26]
YU Wei-fei, HUANG Hui, NIE Fu-de, et al. Preparation of explosive nanometer composite of porous silicon - nitrate salt[A]. 34th International Annual Conference of ICT[C]. 2003,1711-1718.
[27]
黎学明,潘进,郁卫飞. 化学浸蚀温度对多孔硅粉理化性质的影响[J]. 重庆大学学报, 2003,26(3): 39-41.Li Xue-ming, Pan Jin, Yu Wei-fei, et al. Effect of the Temperature on Properties of Porous Silicon Powder in Chemical Etching Process [J]. Journal of Chongqing University, 2003,26(3): 39-41.
[28]
郁卫飞,黄辉,聂福德,等. 纳米多孔硅复合材料爆炸反应的实验与理论研究[A]. 2004全国含能材料发展与应用研讨会论文集[C], 476-482.YU Weifei, HUANG Hui, NIE Fude, et al. Experimental and theoretical investigation on explosion phenomena of nano-structure porous silicon composite[A]. Proceeding of 2004\' National Symposium on Development and Application of Energetic Materials[C], 476-482.