167 resultados para ANILINE OLIGOMERS


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XPS has extensively been applied to the study of polymers, in which a considerably important topic is the surface phase separations in block copolymers and blends. Copolymers (or blends) will produce a phase separation if their components are in-

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The effect of inorganic salts such as sodium chloride on the hydrolysis of chitosan in a microwave field was investigated. While it is known that microwave heating is a convenient way to obtain a wide range of products of different molecular weights only by changing the reaction time and/or the radiation power, the addition of some inorganic salts was shown to effectively accelerate the degradation of chitosan under microwave irradiation. The molecular weight of the degraded chitosan obtained by microwave irradiation was considerably lower than that obtained by traditional heating. Moreover, the molecular weight of degraded chitosan obtained by microwave irradiation assisted under the conditions of added salt was considerably lower than that obtained by microwave irradiation without added salt. Furthermore, the effect of ionic strength of the added salts was not linked with the change of molecular weight. FTIR spectral analyses demonstrated that a significantly shorter time was required to obtain a satisfactory molecular weight by the microwave irradiation-assisted inorganic salt method than by microwave irradiation without inorganic salts and conventional technology. (C) 2005 Elsevier Ltd. All rights reserved.

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The polymer-supported bimetallic catalyst FVP-PdCl2-2CuCl(2) (PVP, poly(N-vinyl-2-pyrrolidone), obtained in situ by the addition of CuCl2 to an alcoholic solution of PVP-PdCl2, exhibits high selectivity and activity for the oxidative carbonylation of aniline with carbon monoxide and oxygen to ethyl N-phenylcarbamate in the presence of a base (NaOAc) under atmospheric pressure. The strong synergic effect of Pd-Cu gives rise to a clear increase in the selectivity and activity. (C) 2000 Elsevier Science B.V. All rights reserved.

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The low temperature heat capacities of N-(2-cyanoethyl)aniline were measured with an automated adiabatic calorimeter over the temperature range from 83 to 353 K. The temperature corresponding to the maximum value of the apparent heat capacity in the fusion interval, molar enthalpy and entropy of fusion of this compound were determined to be 323.33 +/- 0.13 K, 19.4 +/- 0.1 kJ mol(-1) and 60.1 +/- 0.1 J K-1 mol(-1), respectively. Using the fractional melting technique, the purity of the sample was determined to be 99.0 mol% and the melting temperature for the tested sample and the absolutely pure compound were determined to be 323.50 and 323.99 K, respectively. A solid-to-solid phase transition occurred at 310.63 +/- 0.15 K. The molar enthalpy and molar entropy of the transition were determined to be 980 +/- 5 J mol(-1) and 3.16 +/- 0.02 J K-1 mol(-1), respectively. The thermodynamic functions of the compound [H-T - H-298.15] and [S-T - S-298.(15)] were calculated based on the heat capacity measurements in the temperature range of 83-353 K with an interval of 5 K. (c) 2004 Elsevier B.V. All rights reserved.

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通过对新合成的芴的一种具有对称性衍生物4-2-(7-(4-氨基苯乙烯基)-9,9-二(2-乙基己基)-9H-芴-2-)乙烯基)苯胺(BASF)的DMF溶液的研究,发现其具有很强三光子吸收频率上转换荧光发射特性,实验测出上转换荧光的波长范围是456-775nm,在510nm处的荧光强度与入射光强的三次方成正比.在0.03mol/L的浓度下就有明显的三光子吸收诱导的光限幅效应.非线性吸收系数和吸收截面分别为y=4.34×10^20 cm^3/W^2和σ3=2.4×10^-39 cm^6/W^2.

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随着高分子材料在生物医学领域研究的深入,电活性高分子以其特有的化学和物理性质,受到国内外学者的广泛重视。电活性高分子,尤其是聚苯胺,在空气中稳定,导电性较高,能可逆氧化还原且无细胞毒性,因而在生物医学领域得到了较为广泛的应用,包括生物传感器、组织工程支架、用于粘附蛋白质或DNA的基质及电化学控制释放药物的电极等。但是限制聚苯胺在体内应用的最大问题是它的不可降解和不可吸收性,长期存在体内会造成炎症反应,需要二次手术取出。为了解决这个问题,我们设计合成了一系列新颖的共聚物材料,采用可生物降解的小分子量脂肪族聚酯(包括聚乳酸和聚己内酯)和电活性的苯胺五聚体利用N,N'-二环己基碳二亚胺(DCC)缩合法形成嵌段共聚物,得到了具有电活性的可生物降解材料,并证明这些共聚物材料具有很好的生物相容性,在电刺激条件下能够促进细胞的生长和分化,有望作为支架材料在神经组织工程中得到应用。我们还利用聚乙二醇和苯胺五聚体合成具有电活性的三嵌段共聚物,这种三嵌段共聚物在稀溶液中能够自组装成电刺激和pH响应敏感的球形胶束,而在浓溶液中能够形成具有微米尺寸的“沙漏”型组装体。三嵌段共聚物的这些独特的性质使其在药物控制释放等领域有着广阔的应用潜能。

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和共轭聚合物相比,单分散共轭齐聚物具有结构确定、易提纯等优点,不仅是建立共轭体系结构与性能关系的最佳模型,而且是一类高纯度光电子材料,还是构造具有规整结构嵌段共聚物和超分子体系的理想构造单元。鉴于基于芴单元的共轭齐聚物与聚合物具有优异的光电性能,引入不同端基能够有效调节共轭齐聚物的性能,本论文以端基官能化齐聚芴为研究对象,设计与合成了具有不同端基结构的系列单分散齐聚芴,研究了它们基本的物理化学性质,主要成果与创新点如下: 1、利用Horner-Wadsworth-Emmons反应、Wittig反应和Heck偶联反应,交替引入极性、非极性反应端基,成功解决了发散法合成较长单分散共轭齐聚物过程中产物难以提纯的技术问题,合成了系列芴撑乙烯撑共轭齐聚物。其中,最长的齐聚物含11个芴单元,光谱外推得到的有效共轭长度可达19个重复单元。DSC和偏光显微镜研究表明,芴单元数大于5的齐聚物可形成向列型液晶相。含7个芴单元以上的齐聚物可用于制备有机发光二极管,含11个芴单元的齐聚物电致发光效率是相应聚合物的5倍。 2、通过Hagigara-Sonogashira偶联、Diels-Alder环加成等反应合成了一系列端基为刚性的苯乙炔基和五苯基苯的单分散齐聚芴。但典型Scholl反应条件不能实现完全氧化脱氢,获得六苯并晕苯封端的齐聚芴。光谱研究表明苯乙炔基的引入导致吸收光谱和荧光光谱有1-2 nm的红移。五苯基苯结构的引入能显著提高齐聚芴的Tg,从而提高齐聚物的形态稳定性。 3、利用Yamamoto反应,采用端基溴代的齐聚芴大分子单体聚合结合制备色谱分离,成功地制备了分子量超过20000 Da的单分散共轭聚合物,说明大分子单体聚合结合制备色谱分离制备单分散共轭聚合物是可行的。 4、通过Horner-Wadsworth-Emmons反应合成一系列端基为三苯胺乙烯撑的单分散齐聚芴,其中,最长的齐聚物含9个芴单元。光谱研究表明,随芴单元数的增加,两个三苯胺乙烯撑端基间共轭作用显著减弱,最大吸收波长蓝移;当芴的单元数≥3时,最大发射波长均位于450 nm,和聚芴和齐聚芴相比,这类共轭齐聚物的蓝光发光峰位更佳。电化学研究表明三苯胺乙烯撑单元的氧化还原过程不受齐聚芴单元长度的影响,该封端齐聚芴的HOMO能级主要是由三苯胺乙烯撑单元决定。 关键词:端基官能化,齐聚芴,单分散共轭聚合物

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芳香环状低聚物的合成是二十世纪八十年代末发展起来的研究领域,其特有的环状结构和可进行可控的开环聚合决定了芳香环状低聚物具有广阔的应用前景。本文从研究单体结构与成环反应的关系出发,开拓了一种合成芳香环状聚醚酮的新方法—改进的Friedel-Crafte反应法,采用该方法成功地合成了一系列新型结构的大环化合物,并首次利用流变仪对开环聚合过程中的流变行为进行了较为系统的观测。根据acoson-Stockmayer环化理论,应用基质辅助激光解吸离子化飞行时间质谱(MAIDL-TOF MS),对一系列芳香环状低聚物组分分布进行分析,研究了芳香环状低聚物的产率、组分分布与单体结构的关系。结果表明:芳香聚醋、聚麟酸醋及芳香聚醚环状低聚物系列中,InCn与1nn呈良好的线性关系,符合J-S理论分布。环状齐聚物的产率与组分分布受单体的中心键角影响,单体的中心键角在100°~120°范围内,其中心键角愈小,γ值愈大。γ值愈大,反应产物中小环化合物的含量越高,而小环化合物的含量的增加是高产率地合成环状齐聚物的前提之一。在此理论的指导下,通过对单体结构的模拟,高选择性地合成了一种新型结构的芳香环状聚硫醋二聚体,对其结构进行了精确的表征,在不同溶剂中得到了该环状二聚体的单晶,单晶X闪ray衍射表明该二聚体为环张力极小的大环化合物。基于上述理论,以有利于成环的邻苯二酞氯为酞基化试剂,对Friedel-Crafts酞基化反应在合成芳香环状齐聚物中的应用进行了系统研究,开拓了一种合成芳香环状预聚体的新方法—改进的Friedel-Crafts酞基化反应法。发现反应体系中Lewis碱的存在有利于选择性地形成环状产物。并进一步确定反应最佳条件为: Lewis碱和催化剂Alcl3与富电单体的摩尔比分别为1.2和3.4; 1,2-二氯乙烷为本反应的最佳溶剂;等当量的反应单体要求缓慢滴加到形成“假高稀”的溶剂体系中;Lewis碱NMP,DMF等都适用于本反应体系。在此优化条件下,以邻苯二酞氯和间苯二酞氯为酞基化试剂,室温下,合成了一系列芳香环状聚醚酮酮、聚醚酮、聚醚矾酮等新型结构的环状齐聚物,利用MALDI-TOF-MS,NMR,GPC,FTIR,DSC,元素分析等手段对环状结构进行了精确的表征;DSC分析表明含邻苯二拨基结构的环状齐聚物为无定型材料;部分产物的产率高达90%。在阴离子引发剂联苯双酚钾存在下,制备的环状齐聚物成功进行了熔融开环聚合,得到了相应结构的高分子量的线性开环聚合产物。其中,含邻苯二拨基结构的环状聚醚酮酮、环状聚醚酮矾的开环聚合产物的比浓粘度分别达到0.42dL/g,0.36 dL/g(0.5%的DMF溶液,25士0.1℃);四种含间苯二锁基结构的环状齐聚物的开环聚合产物的Tg与常规亲电沉淀反应合成的线性高聚物的Tg相同。含侧甲基的开环聚合产物的Tg比对应的开环聚合的产物的Tg高约5℃。研究结果表明用亲电缩聚方法制备芳香环状聚醚酮与亲核缩聚法相比较,具有成本低廉、反应条件温和丫产率高、易于大规模制备等优势,开拓了一种制备环状化合物的方法。自从美国G.E.公司利用环状聚碳酸酷的开环聚合制备线性聚碳酸醋以来,对芳香环状低聚物的开环聚合过程的研究仅局限在由GPC监测反应某一时刻的产物的分子量,而缺乏对与应用更为接近的开环聚合中的粘度的变化的研究。本文以界面缩聚反应高产率地合成芳香环状双酚A聚酷二聚体为对象,研究了流变仪在开环聚合中的应用。利用流变仪对环状二聚体开环聚合过程进行了较为系统的观测,研究了不同条件下的开环聚合中的流变行为,结果表明,开环聚合存在引发期,而且在引发期,熔融体的粘度低于10Pa·S,超过引发期,粘度呈指数级增长。引发期的长短可以通过引发剂的种类、浓度、开环聚合的温度等条件进行有效地控制。芳香环状聚酷二聚体与环状聚碳酸醋的开环共聚合的流变行为的研究结果表明:开环共聚合可以降低开环聚合的温度,调整引发期,是提高聚合产物的分子量的有效途径。用流变仪对以改进的Friedel-Crafts反应合成的芳香环酮齐聚物的开环聚合中的流变行为进行了监控。在330℃,剪切速率为0.05S-l下,熔融的环状齐聚物的粘度为2.0Pa·S。通过对开环聚合的反应条件的控制,同样实现了开环聚合的可控,通过改变其开环聚合的引发期的长短及粘度的变化规律,可、适应不。条一定为加工设计与成型加工提供理论指导和模型设计,必将进一步推进开环聚合工 艺向应用方向的发展。

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环境突发污染事故给人民生活、经济发展和生态环境造成重大影响,研究污染物泄漏造成河流突发污染事故的应急处理方法十分必要。本论文选取苯酚、苯胺和亚甲基蓝等典型污染物为实验对象,采用吸附容量大、密度与水接近的活性炭纤维(ACF)为吸附剂。在自制的河流模型中,研究了ACF以苯酚、苯胺和亚甲基蓝为典型污染物的吸附过程,考察了吸附剂投加量、污染物浓度、吸附剂比表面积、吸附剂投加方式、水流速度与水质等对吸附速率与吸附效果的影响。实验结果表明,ACF能以较快的速率吸附苯酚、苯胺和亚甲基蓝,吸附率都在95%以上; ACF投加量是影响吸附速率最重要的因素,当一次性投加ACF质量之比为 1:2:4时,吸附速率常数之比近似为1:2:4;污染物浓度对吸附速率的影响显著,浓度较低时吸附速率较高。苯酚初始浓度为7mg·L-1时,经过86分钟的吸附,处理后的浓度可以达到地表水Ⅴ类水中挥发酚的限值要求(0.1mg·L-1);在吸附11分钟左右追加适量的ACF,能够明显提高吸附速率;河水流速和河流中的天然有机物、浊度、河水硬度对ACF吸附都不产生显著影响,这说明ACF作为河流突发污染事故应急处理的吸附剂,有广泛的适应性。在实际河水中,ACF对苯酚的吸附过程与在模拟河水中相似,吸附效果显著。实验结果还表明,ACF对苯酚的吸附是放热反应,符合Freundlich模型和Langmuir模型。事故应急处理后,应该及时将吸附了污染物的ACF打捞上来,有利于进行后续处理。 Emergency environmental pollution accidents pose significant impacts on our living, economic development and ecological environment. The study on the approach of emergency control for the contingency caused by leakage of pollutants in rivers is very necessary. In the experiment, phenol, aniline and methylene blue were selected as representative pollutant and activated carbon fiber (ACF) was selected as adsorbent, which has strong adsorption capacity and similar density to water. In the self-made river model, the effects of ACF dosage, pollutant concentration, ACF surface area, ACF adding ways, water flow rate and water quality on adsorption courses were investigated. The experimental results showed that ACF could adsorb pollutant quickly and effectively. The ACF dosage was the most important factor that affected adsorption rate .When the ACF dosage rate was 1:2:4, the constants of adsorption rate was approximately 1:2:4. The effect of pollutant concentrations on the adsorption rate was notable. Faster adsorption rates were achieved at low pollutant concentrations. Phenol concentration reached the limits of volatile phenol in Category Ⅴ surface water (0.1 mg·L-1) after 86 minutes of adsorption with initial phenol concentration of 7 mg·L-1. After 11 minutes of adsorption, certain amount of ACF was added and the adsorption rate was improved significantly. River flow rate and water quality have little effect on the adsorption rate. The adsorption results obtained in actual river water were comparable with that in simulating river water. The results also showed that, ACF on the absorption of phenol is exothermic reaction, witch matched with the Freundlich model and the Langmuir model. After emergency treatment, the ACF absorbed pollutants should be promptly salvaged for follow-up treatment.

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近年来各种环境污染事故频发,据统计仅2001~2003年间,发生的各类环境污染事故就高达5606次,其中水污染事故3235次,占全部的57.7%。这些事故不仅给人民生命财产造成巨大损失,也给生态环境造成严重的破坏。因此开发安全高效的应急处理技术迫在眉睫。本研究以筛选高效苯胺降解菌为基础,通过对高效菌降解性能的研究指导将高效菌作为功能郡主投加到已有生物处理系统强化应急处理苯胺突发污染事故废液,取得了良好的效果。 苯胺高效降解菌AN-P1为红球菌(Rhodococcus sp.),其通过间位途径降解苯胺,AN-P1利用苯胺生长和降解的最佳pH为6,最适浓度为2000 mg/L,最适温度为30 ℃,最佳接种量为0.3‰。AN-P1降解含500 mg/L、1000 mg/L、2000 mg/L苯胺的培养物分别经过28 h、24 h、32 h降解,出水苯胺含量能达到《污水综合排放标准》(GB8978-1996)一级标准。但由于苯胺降解过程中释放了大量氨氮,出水氨氮仍较高未能达标排放。而常规SBR系统应急处理效果较差,苯胺和COD去除率均低于10%,出水未能达标排放。活性碳吸附后的回收和后续处理也会带来操作不变和二次污染问题,且处理后出水往往难于达标排放,尚需进行进一步处理。 生物处理系统应急处理后恢复运行处理效果监测和PCR-DGGE图谱分析显示,用AN-P1菌强化应急处理系统后不仅能快速高效的去除苯胺,而且可以有效保障处理系统对污染物的净化性能,有效的保护系统中的功能微生物免受苯胺毒害。 研究结果表明,从实际处理效果、对原有生物系统性能保护及实际应用操作等多方面考虑,用AN-P1菌强化应急处理苯胺突发污染事故在技术上都是可行的。本研究为应急处理苯胺突然污染事故废液提供了新的方法。 Recent years, environment pollution accidents happened frequently, the data showed that there are 5606 accidents between 2001 and 2003, including 3235 water environment accidents, which is 57.7% of all. These accedents not only caused money lost and life lost but also caused serious damage to the ecologicl environment. So exploring highly-effective and secure methods to solve these accidents is an urgent mission. We screened a highly-effective aniline-degrading bacterium and did some researches on its ability to degrade aniline, in order to guide the emergency treatment of aniline containing wastewater that caused by sudden accident pollution with bioaugmentation. A highly-effective aniline-degrading bacterium AN-P1 was isolate and characterized as Rhodococcus sp. It degrades aniline through meta-cleavage pathway. The optimal pH and temperature for cell growth and aniline degradation were 6 and 30 ℃, respectively, and the opitimal concentration of aniline was 2000 mg/L, the optimal inoculation amount was 0.3‰.It took bacterium AN-P1 only 18 h, 24 h and 32 h, respectively, for the treatment of MSB containing 500 mg/L, 1000 mg/L, 2000 mg/L aniline to meet the first grade of national some of the NH4+-N which caused by aniline degradation. It took bacterium AN-P1 only 10 h, 20 h and 32 h, respectively, for the treatment of wastewater containing 500 mg/L, 1000 mg/L, 2000 mg/L aniline to meet the first grade of national integrated wastewater discharge standard. The bacterium AN-P1 can also remove some of the NH4+-N which caused by aniline degradation. It took bacterium AN-P1 only 10 h, 20 h and 32 h, respectively, for the treatment of wastewater containing 500 mg/L, 1000 mg/L, 2000 mg/L aniline to meet the first grade of national integrated wastewater discharge standard. By combing AN-P1 with regular SBR system, it took only 36 h for the emergency treatment of wastewater containing 2000 mg/L aniline under simulating engineering conditions to meet the discharge standard. While the NH4+-N of effluent can not meet the standard because of the high amount NH4+-N caused by aniline degradation. The regular SBR system was not good at aniline and COD removal. The removal efficiency of which are less than 10%. It cost 67.8 g activated carbon to absorbed 1000 mg aniline. It is inconvenient to transport and use it for the emergency treatment of aniline when the sudden pollution accident happened. Meanwhile, it was complex ad hard to recycle the activated carbon and treat the aniline wastewater get from activated carbon recycling too. Hard to meet the effluent standard was also a problem of activated carbon absorption method. According to the PCR-DGGE profile and removal efficiency of pollutants and COD when the systerm recover from emergency treatment, AN-P1 can efficiently protect the microbial community of regular activated sludge system against the aniline. It proved that combing AN-P1 with regular biological system is a feasible strategy for emergency treatment of aniline sudden pollution accident. The research offered a new way for emergency treatment of aniline sudden pollution accident.

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The Cu-Zr amorphous alloy was studied as an electrocatalyst towards the electrochemical hydrogenation of nitrobenzene. The electrocatalyst was activated by chemical etching in HF solution. Resulted changes in the morphology, chemical composition and crystalline structure of the electrocatalyst surface were characterised by scanning electron microscopy, X-ray diffraction and Auger electron spectroscopy. The electrocatalytic properties of the Cu-Zr amorphous alloy were assessed by voltammetric measurements. Due to the formation and aggregation of Zr residue modified Cu nanocrystals on the surface caused by the selective dissolution of Zr components in the chemical etching, the activated amorphous alloy is an effective electrocatalyst for the electrochemical reduction reaction of nitrobenzene with aniline as the main product. The positive shift of the peak potential and accompanying increase in the value of peak current in voltammograms with increasing Cu content and decreasing Zr content of the alloy surface in the chemical etching are indicative of improved electrocatalytic activity. (C) 2002 Elsevier Science B.V. All rights reserved.