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1.
范海波  杨荣杰  李向梅 《化学学报》2012,70(16):1737-1742
使用高效液相色谱-电喷雾四级杆飞行时间质谱(HPLC-ESI-Q-TOF MS)联用技术对八硝基苯基硅倍半氧烷(ONPS)纯度进行分析, 从而判定ONPS产物峰及杂质峰的位置, 根据ONPS峰和杂质峰的面积比计算ONPS的纯度. 通过改变HPLC的洗脱梯度和测试时间, 将ONPS产物中的杂质峰完全分开, 测得硝基苯基硅倍半氧烷(NPS)质量分数为97.55%, 其中ONPS的纯度约为92.42%, 产物中含有九硝基八苯基硅倍半氧烷(9-NPS)约5.13%, 其它杂质含量约为2.45%. 通过对ONPS高效液相色谱图峰形和同分异构体极性情况分析, 进一步证明ONPS分子中硝基取代发生于对位和间位. 使用超高效液相色谱(UPLC)对ONPS进行分析, 以更高的分离效率验证了HPLC的结果. 该方法可作为ONPS纯度的分析方法.  相似文献   

2.
通过在聚酰亚胺(PI)中分别添加笼型八氨基苯基硅倍半氧烷(OAPS)、笼型八苯基硅倍半氧烷(OPS)、梯形聚苯基硅倍半氧烷(PPSQ)和无机纳米SiO2,制备了4种含硅聚酰亚胺(PI/Si)复合膜. 对PI/Si复合膜的相容性、力学性能、热性能和阻燃性能进行了研究. 结果表明,OAPS与PI间展现出较好的相容性,PPSQ次之,而OPS,SiO2与PI的相容性较差;但相容性与复合膜的力学和热性能无明显的对应关系. SiO2可提高PI的力学性能;PI/OAPS复合膜的Tg最高;OAPS,PPSQ或SiO2的加入使PI复合膜的热稳定性稍有提高,而少量OPS的加入大大降低PI膜的热稳定性. 这类PI/Si复合膜的显著特点是能够大幅提高PI膜的极限氧指数,含硅化合物能够增加PI燃烧后残炭量,使残炭的形貌得到显著改善. PI/Si复合膜在燃烧过程中在表面形成一层白色含硅包裹层,起到隔热隔氧及保护内层有机物不被燃烧的作用. 硅倍半氧烷对炭层形貌的改善显著,展现出比SiO2更好的阻燃性能.  相似文献   

3.
通过在聚酰亚胺(PI)中分别添加笼型八氨基苯基硅倍半氧烷(OAPS)、 笼型八苯基硅倍半氧烷(OPS)、 梯形聚苯基硅倍半氧烷(PPSQ)和无机纳米SiO2, 制备了4种含硅聚酰亚胺(PI/Si)复合膜. 对PI/Si复合膜的相容性、 力学性能、 热性能和阻燃性能进行了研究. 结果表明, OAPS与PI间展现出较好的相容性, PPSQ次之, 而OPS, SiO2与PI的相容性较差; 但相容性与复合膜的力学和热性能无明显的对应关系. SiO2可提高PI的力学性能; PI/OAPS复合膜的Tg最高; OAPS, PPSQ或SiO2的加入使PI复合膜的热稳定性稍有提高, 而少量OPS的加入大大降低PI膜的热稳定性. 这类PI/Si复合膜的显著特点是能够大幅提高PI膜的极限氧指数, 含硅化合物能够增加PI燃烧后残炭量, 使残炭的形貌得到显著改善. PI/Si复合膜在燃烧过程中在表面形成一层白色含硅包裹层, 起到隔热隔氧及保护内层有机物不被燃烧的作用. 硅倍半氧烷对炭层形貌的改善显著, 展现出比SiO2更好的阻燃性能.  相似文献   

4.
李紫千  杨荣杰 《有机化学》2014,(11):2338-2344
以笼型低聚八苯基硅倍半氧烷(OPS)为原料,AlCl3为催化剂,苯磺酰氯为磺酰化试剂,在二氯甲烷溶液中反应72h,合成了笼型八(二苯砜基)硅倍半氧烷(ODPSS).该方法合成过程简单稳定,产率高.通过FTIR、MALDI-TOF MS、1H NMR、13C NMR、29Si NMR和元素分析对产物进行了表征,证明OPS已完全转化为ODPSS.通过改变溶剂、催化剂、反应时间和各反应物物质的量之比,优化了反应条件,分析了反应机理,建立了该体系下OPS的磺酰化反应机理模型.  相似文献   

5.
笼型倍半硅氧烷(POSS)是具有独特分子结构的有机硅化合物,无机硅氧骨架核心为其提供良好的硬度和热稳定性,外围有机基团可增强与聚合物基体间的相容性,以它为前驱体可以制备分子级分散的有机/无机纳米高分子杂化材料。近年来,全芳香结构的八苯基笼型倍半硅氧烷因其高的耐热性和官能化方法的多样性尤其得到关注。本文重点综述了八苯基笼...  相似文献   

6.
大分子植酸-聚有机硅倍半氧烷的合成及性能   总被引:1,自引:0,他引:1  
采用溶胶-凝胶方法, 无需小分子酸催化剂, 利用硅烷化植酸的反应活性和酸催化活性, 与硅烷单体共水解缩聚, 在聚有机硅倍半氧烷分子链上原位接枝植酸, 合成了分子量大于50000的大分子植酸-聚有机硅倍半氧烷. 用GPC, 13C NMR, 29Si NMR, XPS, Raman光谱, SEM及电化学测试等分析手段进行表征, 对比不同酸催化植酸-聚有机硅倍半氧烷(PAP), 单宁酸-聚有机硅半氧烷(TAP), 盐酸-聚有机硅半氧烷(HCP)的结构和性能, 发现植酸-聚有机硅倍半氧烷上的螯合基团与金属表面的活性基团反应而键合, 在金属表面形成致密的保护膜, PAP与TAP和HCP比较具有优异的防腐性能.  相似文献   

7.
聚有机硅倍半氧烷由于具有优异的力学、电学、光学性能,近年来被广泛应用作涂层材料以提高其热稳定性、耐腐蚀性、耐磨性、耐刮伤性、绝缘性等。介绍了聚有机硅倍半氧烷的合成方法及其在涂层材料中的应用。  相似文献   

8.
色谱用金属柱管的脱活研究   总被引:1,自引:0,他引:1  
利用苯基三乙氧基硅烷的酸催化水解缩合反应合成了具有梯形结构的聚苯基硅倍半氧烷预聚体,再以其20%-30%的丙酮溶液对气相色谱用金属柱管进行遮盖性脱活,预聚体涂层经溶剂挥发高温老化处理后获得了能耐400℃高温的脱活涂层,。以甲醇、乙醇、异丙醇、叔丁醇为测试物,内径2mm、长3.0m,固定相为PorapackQ的填充聚四氟乙烯柱为预分离柱串接测试柱的方法对该涂层进行了评价,结果表明,经该涂层处理的不锈钢柱管在115℃时对低级醇的吸附活性与PorapackQ柱的活性相近,活性明显降低,涂层结构中含有的苯环和羟基等官能基,将提高其与固定液的相容性并为固定液的交联提供必要的活性点。  相似文献   

9.
多面齐聚硅倍半氧烷研究进展   总被引:2,自引:0,他引:2  
总结了多面齐聚硅倍半氧烷的研究进展,主要介绍了它的合成方法、合成机理和应用,着重介绍了它在二氧化硅模型、树枝状大分子、多孔材料以及聚合物纳米杂化材料中的应用。  相似文献   

10.
利用硅氧烷试剂(10-isocyanadedecyl)triethoxysilane与含不同碳数的直链有机二胺(氨基连接于碳链的两端)反应,制备得到了系列双脲基有机硅氧烷化合物,上述化合物酸性水解得到了系列硅氧倍半聚合物.扫描电镜照片显示,随着参与反应的直链有机二胺碳数的增加,硅氧倍半聚合物形貌由薄片状向纤维状过渡.一个有趣的现象是,所形成的硅氧倍半聚合物形貌随着产物存放时间的延长而发生变化,并最终纤维消失.含12碳数的二胺形成的聚合产物四个星期后纤维彻底消失而形成规整的球型.上述结果对于研究线型硅氧倍半聚合物的合成及性质具有重要意义.  相似文献   

11.
The mechanisms of the thermal degradation of polyhedral oligomeric octaphenylsilsesquioxane (OPS), octa(nitrophenyl)silsesquioxane (ONPS), and octa(aminophenyl)silsesquioxane (OAPS) were investigated. The –NO2 or –NH2 substituents on the phenyl group affected the mechanism of the POSS thermal degradation. The thermal stabilities of OPS, ONPS, and OAPS were characterized by TG and FTIR. Thermal degradation of OPS included mainly the degradation of caged polyhedral oligomeric silsesquioxane structures and phenyl groups. Nitro or amino substituents decreased its thermal stability. The thermal degradation processes of OPS, ONPS, and OAPS differed. Phenyl groups and cyclobutadiene were observed in the OPS degradation products. Oxygen radicals that caused intensive CO2 release between 350 and 450 °C were generated by the degradation of ONPS –NO2. OAPS released mainly aminophenyl groups at 370 °C, whereas a small number of phenyl groups decomposed at 500 °C. The OAPS reactivity could enhance the thermal stability of POSS structure in the polyimide OAPS composites.  相似文献   

12.
Well‐defined organic/inorganic hybrid fluorinated star polymers were synthesized via atom transfer radical polymerization (ATRP) of 2,2,3,4,4,4‐hexafluorobutyl methacrylate (HFBMA) using octa(aminophenyl)silsesquioxane (OAPS) nano‐cage as initiator. For this purpose, OAPS was transformed into ATRP initiator by reacting with 2‐bromoisobutyrylbromide. ATR polymerization of HFBMA was carried out in trifluorotoluene at 75 °C using CuCl/2,2‐bipyridine or N,N,N′,N″,N″‐pentamethyldiethylenetriamine as catalyst system. GPC and 1H NMR data confirmed the synthesis of OAPS/PHFBMA hybrid star polymer. Kinetics of the ATR polymerization of HFBMA using OAPS nano‐cage initiator was also investigated. The OAPS/PHFBMA hybrid stars were found to be molecularly dispersed in solution (THF); however, TEM micrographs revealed the formation of spherical particles of ~ 120–180 nm by the OAPS/PHFBMA hybrid star polymer after solvent evaporation. Thermal characterization of the nanocomposites by differential scanning calorimetry (DSC) revealed a slightly higher glass transition temperature (Tg) (when compared with the linear PHFBMA) of higher molecular weight OAPS/PHFBMA hybrid star polymers. In contrast, lower Tg than the linear PHFBMA was observed for OAPS/PHFBMA of relatively lower molecular weight (but higher than the linear PHFBMA). Thermal gravimetric analysis (TGA) showed a significant retardation (by ~60 °C) in thermal decomposition of nanocomposites when compared with the linear PHFBMA. Additionally, surface properties were evaluated by measuring the contact angles of water on polymer surfaces. © 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 7287–7298, 2008  相似文献   

13.
Octa(maleimido phenyl) silsesquioxane (OMPS) was prepared from octa(aminophenyl) silsesquioxane (OAPS) and maleic anhydride. Initially, octaphenyl silsesquioxane was prepared, and it was nitrated to obtain octa(nitrophenyl) silsesquioxane; subsequently, reduction was carried out to obtain OAPS. These compounds were characterized with Fourier transform infrared, NMR, gel permeation chromatography, and wide‐angle X‐ray diffraction. Differential scanning calorimetry scans of OMPS showed an exotherm above 100 °C, and it was attributed to the curing. The peak maximum temperature depended on the heating rate. Both Ozawa's and Kissinger's methods were used to determine the activation energy for the curing reaction, which was approximately 29 kcal/mol. OMPS was copolymerized with various molar percentages of (1) N,N′‐p‐phenylenedimaleimide (PPMI) and (2) urethane methacrylate (UMA) by thermal and free‐radical polymerization, respectively. The copolymers were characterized with differential scanning calorimetry, dielectric analysis, thermogravimetric analysis, and wide‐angle X‐ray diffraction. In the PPMI and UMA copolymer series, the glass‐transition temperature increased with an increase in the OMPS concentration. The permittivity of the UMA copolymers decreased and tan δ increased with an increase in the OMPS concentration. In air and nitrogen atmospheres, the thermal stability of the PPMI and UMA copolymers increased with an increase in the OMPS concentration. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 2483–2494, 2005  相似文献   

14.
Organic/inorganic hybrid star‐like nanocomposites from two different octafunctional cubic silsesquioxane (CSSQ) nano‐cage cores and poly(methyl methacrylate) (PMMA) were synthesized using atom transfer radical polymerization (ATRP) at mild conditions, in which octafunctional octakis(3‐hydroxypropyldimethylsiloxy)octasilsesquioxane (OHPS) and octa(aminophenyl)silsesquioxane (OAPS) nano‐cages were used as ATRP initiators. The polymerization was carried out at 50 °C in acetonitrile/water mixture. 1H‐NMR and GPC were employed to characterize the obtained nanocomposites. GPC data revealed that the resulting nanocomposites exhibit unimodal and narrow molecular weight distributions indicating well‐controlled synthesis and well‐defined hybrid nanocomposites with star architecture. The influence of CSSQ nano‐cages on the thermal property of nanocomposites was investigated using differential scanning calorimetry and thermal gravimetric analysis (TGA). It was observed that the nanocomposites exhibit significantly higher glass transition temperature compared with its linear counterpart because of slow relaxation caused by the star‐like architecture. TGA study, however, did not reveal any significant improvement in thermal stability of nanocomposites as compared with linear PMMA. Finally, field emission scanning electron microscopy images of fractured surfaces of nanocomposite sample films showed well dispersed CSSQ nano‐cages in PMMA matrix without phase separation. © 2007 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 766–776, 2008  相似文献   

15.
Copolymerization of aniline with octa(aminophenyl) silsesquioxane (OAPS) was performed, which resulted in polyaniline‐tethered, polyhedral oligomeric silsesquioxane (POSS‐PANI), with star‐like molecular geometry. The spectro‐electrochemical studies show that the electrochromic contrast of POSS‐PANI is much higher than that of polyaniline (PANI). The great improvement can be attributed to the more accessible doping sites and the facile ion movement during the redox switching, brought by the loose packing of the PANI chains. This was evidenced by a drastic increase in ionic conductivity, a decrease in the electrical conductivity, and a decrease in the crystallinity and crystal size, with the increase of the OAPS concentration in the POSS‐PANI.

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16.
Sulphur-containing aromatic amines were prepared efficiently in good to excellent yields by reduction of the corresponding sulphur-containing aromatic nitro compounds with hydrazine hydrate in the presence of iron(III) oxide-MgO catalyst. The catalyst exhibited high activity and stability for the reduction of sulphur-containing aromatic nitro compounds. The yields of sulphur-containing aromatic amines were up to 91-99 % at 355 K after reduction for 1-4 h over this catalyst.  相似文献   

17.
Xia Chen  Hong Wu  Yi-Zhu Lei    Jin-Hui Li 《合成通讯》2013,43(19):2475-2484
Herein, we described a highly efficient heterogeneous Pd/C-catalyzed transfer hydrogenation of nitro compounds for the synthesis of primary amines, using ammonium formate and hydrazine hydrate as hydrogen source independently. The products were obtained with up to >99% yield. Furthermore, gram scale and recycling of catalyst had been tested with well results.  相似文献   

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