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1.
1-氧-2,6-二氨基-3,5-二硝基吡嗪(LLM-105)的合成   总被引:5,自引:0,他引:5  
经四个反应步骤合成了新型钝感高能炸药1-氧-2,6-二氨基-3,5-二硝基吡嗪(LLM-105),给出了各步产物的基本理化性质,并采用FT-IR、~1HNMR及MS等分析手段表征了各步产物。  相似文献   

2.
2,6-二氨基-3,5-二硝基吡嗪-1-氧化物的合成   总被引:9,自引:0,他引:9  
研究了2,6-二氨基-3,5-二硝基吡嗪-1-氧化物(LLM-105)的合成新方法. 该方法是以2,6-二氯吡嗪和甲醇钠作为起始原料, 经烷氧基化、硝化、胺化、N-氧化四步反应得到LLM-105, 总收率为50%. 用1H NMR, 13C NMR, IR, MS和元素分析对LLM-105及其中间体结构进行了表征.  相似文献   

3.
应用Micro-DSCⅢ微热量仪的两种连续比热容测定模式对1,1-二氨基-2,2-二硝基乙烯(FOX-7)比热容进行了测定. 得到298.15 K时FOX-7的标准摩尔比热容分别为176.56和176.02 J•mol-1•K-1, 相对偏差为0.31%. 运用Gaussian 03W程序的DFT-RB3LYP/6-311++G**方法对FOX-7在283~353 K温度范围内进行了比热容理论计算, 结果为147.11~170.54 J•mol-1•K-1, 与Micro-DSCⅢ微热量仪测定值偏差在13.27%~15.46%之间. 用测得的比热容方程计算了298.15 K为基础的FOX-7的热力学函数并得到了绝热至爆时间.  相似文献   

4.
2,6-二氨基-3,5-二硝基吡啶-1-氧化物的合成新方法   总被引:5,自引:0,他引:5  
成健  姚其正  周新利  杜扬  方东  刘祖亮 《有机化学》2008,28(11):1943-1947
研究了2,6-二氨基-3,5-二硝基吡啶-1-氧化物(ANPyO)的合成新方法. 以2,6-二氨基吡啶为起始原料, 经酰基化、N-氧化、硝化三步反应得到ANPyO, 总收率为75%. 测试了ANPyO的爆速、爆压、DSC, 以及电火花感度和落锤感度, 同1,3,5-三氨基-2,4,6-三硝基苯(TATB)的性能进行了对比, 结果表明ANPyO综合性能和TATB基本相当. 用1H NMR, MS和红外光谱对ANPyO及其中间体结构进行了表征.  相似文献   

5.
2,6-二氨基-3,5-二硝基吡嗪-1-氧化物的合成及其晶体结构   总被引:4,自引:0,他引:4  
李海波  聂福德  李金山  程碧波 《合成化学》2007,15(3):296-300,315
以三氟乙酸为溶剂和催化剂,2,6-二氨基-3,5-二硝基吡嗪与过氧化氢反应制备了2,6-二氨基-3,5-二硝基吡嗪-1-氧化物(LLM-105),其结构经1H NMR,IR,MS,元素分析和四圆单晶X-射线衍射仪表征。LLM-105属单斜晶系,空间群P21/n,晶胞参数:a=0.571 6(3)nm,b=1.593 5(5)nm,c=0.841 2(5)nm,α=90°,β=100.97(4)°,γ=90°,V=0.7522(6)nm3,Dc=1.908 g.cm-3,Z=4,μ=0.175 mm-1,F(000)=440,μ(MoKα)=1.047 mm-1;R1=0.053 2,wR2=0.137 9。LLM-105存在分子内和分子间氢键。  相似文献   

6.
一个简易的2,6-二氨基-3,5-二硝基吡啶-1-氧化物的合成方法   总被引:3,自引:0,他引:3  
研究了2,6-二氨基-3,5-二硝基吡啶-1-氧化物(DADNP-1-O)的一个简易合成方法. 该方法是以2,6-二氨基吡啶(DAP)为原料, 利用两步法得到高纯度高产率的2,6-二氨基-3,5-二硝基吡啶, 再在三氟乙酸和双氧水作用下进行N-氧化反应得到DADNP-1-O, 总收率在90%以上, 并对主要反应影响因素进行了讨论, 经傅立叶变换红外光谱(FT2IR), 氢核磁(1H NMR), 碳核磁(13C NMR), 高效液相色谱(HPLC), 元素分析, DSC等方法对中间体和DADNP-1-O结构进行了表征.  相似文献   

7.
本文开发了一种化合物N-(3,5-二氨基-6-氯吡嗪-2-甲酰基)硫脲(TM)的合成新工艺。将叔丁醇钾与硫脲原位反应制得硫脲钾盐,再与3,5-二氨基-6-氯-吡嗪甲酸甲酯发生亲核反应一步合成TM,收率85%,化学纯度99%,其结构经1H NMR, 13C NMR和LC-MS表征。该合成工艺稳定,已放大至公斤级。  相似文献   

8.
5-烃基-2,3-二甲基吡嗪N-单氧化物的合成   总被引:1,自引:0,他引:1  
一烃基或二烃基吡嗪的N-单氧化物可以进行氯化、乙酰氧基化等反应,它是重要的有机合成中间体.据报道二烃基吡嗪与30%过氧化氢在醋酸中进行N-氧化反应,当二烃基吡嗪:30%过氧化氢:醋酸的摩尔比为1:2:5、反应温度70~80℃、反应时间8h时,产物是N-单氧化物;当摩尔比为1:4:10、反应温度95℃、反应时间8~24h时,产物是N-二氧  相似文献   

9.
利用DSC和TG/DTG法研究了1-氨基-1-肼基-2,2-二硝基乙烯(AHDNE)热分解行为及分解动力学,第一热分解过程的动力学方程为: ,其热爆炸临界温度为98.16 ºC。同时,利用微量热法测定了AHDNE的比热容,298.15K时的标准摩尔比热容为211.86 J•mol-1•K-1。计算得到了AHDNE的绝热至爆时间为59.21 s。AHDNE是不稳定的,其热稳定性远低于母体化合物FOX-7。  相似文献   

10.
利用1,1-二氨基-2,2-二硝基乙烯(FOX-7)和水合肼在水体系中合成了1-氨基-1-肼基-2,2-二硝基乙烯(AHDNE), 并在甲醇溶液中培养出可用于X射线衍射的单晶. 晶体属正交晶系, 空间群为Pnma, 晶胞参数为: a=0.6283(4) nm, b=0.7713(5) nm, c=1.2280(8) nm, a=b=g=90°, V=0.5950(7) nm3, Dc=1.821 g/cm3, μ=0.171 mm-1, F(000)=336, Z=4, R1=0.0489, wR2=0.1456. 选取标题化合物的一个结构单元作为初始模型, 运用Gaussian 03程序, 在6-311+G(d)的基组水平上, 用HF, MP2以及B3LYP三种计算方法对标题化合物进行了几何全优化, 并对其成键情况及自然键轨道(NBO)进行了分析.  相似文献   

11.
A new compound, 2‐(dinitromethylene)‐1,3‐diazacyclopentane (DNDZ), was prepared by the reaction of 1,1‐diamino‐2,2‐dinitroethylene (FOX‐7) with 1,2‐diaminoethane in N‐methylpyrrolidone (NMP). Thermal decomposition of DNDZ was studied under non‐isothermal conditions by DSC, TG/DTG methods, and the enthalpy, apparent activation energy and pre‐exponential factor of the exothermic decomposition reaction were obtained as 317.13 kJ·mol?1, 269.7 kJ·mol?1 and 1024.51 s?1, respectively. The critical temperature of thermal explosion was 261.04°C. Specific heat capacity of DNDZ was determined with a micro‐DSC method and a theoretical calculation method, and the molar heat capacity was 205.41 J·mol?1·K?1 at 298.15 K. Adiabatic time‐to‐explosion was calculated to be a certain value between 263–289 s. DNDZ has higher thermal stability than FOX‐7.  相似文献   

12.
通过1,5-二氨基-1,2,3,4-四唑(DAT)与等摩尔的2,4,6-三硝基-1,3,5-苯三酚(TNPG)反应,制备了新型离子型含能化合物DATH+TNPG-。通过X射线单晶衍射、元素分析、FT-IR光谱和1H NMR对其进行了表征。晶体结构测试表明:该化合物的晶体属于单斜晶系,P2(1)/c空间群,a = 1.3399(3),b= 0.47088(9),c = 2.0127(4) nm,β= 92.83(3) o,V = 1.2684(4) nm3, Z= 4。在氢键、静电引力和范德华力的作用下该化合物形成了稳定的三维网状结构。对DAT和DATH+TNPG-晶体进行了DFT-B3LYP/6-31G**周期性计算研究,得到其Mulliken电荷分布和重叠布居,从理论上说明DAT质子化位置是在四唑环的N(4)原子。采用TG-DTG和DSC技术对目标化合物的热分解进行了研究,并采用Kissinger和Ozawa-Doyle法对热分解过程的非等温反应动力学进行了计算。  相似文献   

13.
The title compound 3,3-dinitroazetidinium (DNAZ) 3,5-dinitrosalicylate (3,5-DNSA) was prepared and the crystal structure has been determined by a four-circle X-ray diffractometer. The thermal behavior of the title compound was studied under a non-isothermal condition by DSC and TG/DTG techniques. The kinetic parameters were obtained from analysis of the TG curves by Kissinger method, Ozawa method, the differential method and the integral method. The kinetic model function in differential form and the value of E a and A of the decomposition reaction of the title compound are f(α)=4α3/4, 130.83 kJ mol−1 and 1013.80s−1, respectively. The critical temperature of thermal explosion of the title compound is 147.55 °C. The values of ΔS , ΔH and ΔG of this reaction are −1.35 J mol−1 K−1, 122.42 and 122.97 kJ mol−1, respectively. The specific heat capacity of the title compound was determined with a continuous C p mode of mircocalorimeter. Using the relationship between C p and T and the thermal decomposition parameters, the time of the thermal decomposition from initiation to thermal explosion (adiabatic time-to-explosion) was obtained.  相似文献   

14.
The syntheses, structures and properties of the complexes [CdBr2( L )2·4H2O]n [ L = 2,6‐dimethyl‐3,5‐dicyano‐4‐(4‐pyridyl)‐1,4‐dihydropyridine], 1 and [Cd(SCN)2( L )2(H2O)]n, 2 , are reported. In polymeric complexes 1 — 2 , the L ligands bridge the metal centers through the pyrimidyl and cyano nitrogen atoms forming 1‐D double‐stranded chain and zigzag chain, respectively. The L ligands in complex 1 act as κ1, κ1‐bidentate bridging ligand, whereas the L ligands in complex 2 act as κ1‐monodentae and κ1, κ1‐bidentate bridging ligand. The molecules of these complexes are interlinked through various weak interactions that form the packed structure. All the complexes exhibit emissions which may be tentatively assigned as intraligand (IL) π→π* transitions.  相似文献   

15.
Michael addition of some substituted anilines to methyl acrylate in acidic medium afforded the methyl 3-(substituted anilino)propionates (1a—1i), which on treatment with hydrazine hydrate in methanol were converted into corresponding 3-(substituted anilino) propionohydrazides (2a—2i) in good yields. Microwave irradiation of the latter with pentane-2,4-dione afforded 1-(3,5-dimethyl-1H-pyrazol-1-yl)-3-(substituted anilino)propan-1-ones (3a—3i) under solventless conditions. The structures were confirmed by spectroscopic data, elemental analyses and in case of the 3h by single crystal X-ray diffraction data.  相似文献   

16.
The reaction of solution 2,6‐pyridinedicarboxylic acid and 1,10‐phenanthroline ( 1 ) with CrCl3·6H2O led to the complex [Cr(phen)(pydc)(H2O)][Cr(pydc)2]·4H2O ( 2 ) (phen is 1,10‐phenanthroline and pydcH2 is 2,6‐pyridinedicarboxylic acid). 2 was characterized by elemental analysis, IR spectroscopy and single‐crystal structure determination. Crystal data for 2 at ?80 °C: triclinic, space group , a = 818.5(1), b = 1492.2(1), c = 1533.6(2) pm, α = 76.45(1)°, β = 84.22(1)°, γ = 77.99(1)°, Z = 2, R1 = 0.0416.  相似文献   

17.
用1,1-二氨基-2,2-二硝基乙烯(FOX-7)和盐酸胍在KOH水溶液中合成了[HN=C(NH2)2]+(FOX-7)---G(FOX-7),并培养出淡黄色单晶。化合物属正交晶系,空间群为P-bca,晶体结构参数为: a=1.0428(3)nm, b=0.73099(18)nm,c=2.2253(5)nm,V=1.6963(7) nm3,Dc=1.542 g/cm3,μ=0.333 mm-1,F(000)=864, Z=8。在分析分子晶体结构的基础上,采用B3LYP、HF和MP2三种方法在6-31+G(d)基组水平上对标题化合物进行几何全优化,并对其成键情况、原子电荷分布、分子轨道能量进行了分析。  相似文献   

18.
A new class of thermosetting poly(2,6‐dimethyl‐1,4‐phenylene oxide)s containing pendant epoxide groups were synthesized and characterized. These new epoxy polymers were prepared through the bromination of poly(2,6‐dimethyl‐1,4‐phenylene oxide) in halogenated aromatic hydrocarbons followed by a Wittig reaction to yield vinyl‐substituted polymer derivatives. The treatment of the vinyl‐substituted polymers with m‐chloroperbenzoic acid led to the formation of epoxidized poly(2,6‐dimethyl‐1,4‐phenylene oxide) with variable pendant ratios, and the structures and properties were studied with nuclear magnetic resonance spectroscopy, Fourier transform infrared spectroscopy, differential scanning calorimetry, thermogravimetric analysis, and gel permeation chromatography. The ratios of pendant functional groups were tailored for the polymer properties, and the results showed that the glass‐transition temperatures increased as the benzylic protons were replaced by bromo‐, vinyl‐, or epoxide‐functional groups, whereas the thermal stability decreased in comparison with the original polymer. Within a molar fraction of 20–50%, the degree of functionalization had little effect on the glass‐transition temperature; however, it correlated inversely with the thermal stability of each functionalized polymer. The thermal curing behavior of the epoxide‐functionalized polymer was enhanced by the increment of the pendant functionality, which resulted in a significant increase in the glass‐transition temperature as well as the thermal stability after the curing reaction. © 2006 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 44: 5875–5886, 2006  相似文献   

19.
Energetic copper(II) complexes based on 3,5‐dinitrobenzoic acid (HDNBA) and 1,5‐diaminotetrazole (DAT), Cu(DNBA)2(H2O)2 ( 1 ) and Cu(DAT)2(DNBA)2 ( 2 ) were synthesized and characterized by elemental analysis, IR spectroscopy, single‐crystal and powder X‐ray diffraction. In both complexes, CuII was coordinated to a plane tetragon, by four oxygen atoms from two DNBA ions and two coordinated H2O molecules for 1 , and by two oxygen atoms and two nitrogen atoms from different DNBA ions and DAT ligands for 2 . Differential scanning calorimetry (DSC) and thermogravimetry (TG) analyses were employed to measure the thermal decomposition processes and non‐isothermal kinetics parameters of the complexes. The thermal decomposition onset temperatures of 1 and 2 are 321 and 177 °C. The apparent activation energies of the first exothermic decomposition peaks of 1 and 2 are 247.2 and 185.2 kJ · mol–1. Both 1 (35 J, > 360 N) and 2 (12.5 J, > 360 N) are less sensitive than RDX. The catalytic effects on the decomposition of ammonium perchlorate (AP) of 1 and 2 were studied by DSC. All results supported the potential applications of the energetic complexes as additives of solid rocket propellants.  相似文献   

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