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1.
本实验中合成了两个末端以萘标记的聚醚化合物.利用低密度聚乙烯的非晶微区作为微反应器,将这些化合物置于微反应器中,所用的浓度为每一个微反应器中最多放置一个底物分子,从而阻止了分子间的反应,促进分子内的反应.光照这种聚乙烯薄膜,高产率地合成了大环化合物.将这种薄膜单向拉伸5倍,反应速度增加了1.4倍  相似文献   

2.
控制反应条件,热分解三苯氧基膦臭氧加成物(Ⅱ)产生单线态分子氧,其产率由70%提高到98%,同单线态氧的探针化合物α-蒎烯反应,得到单一的“ene”型产物,松香芹醇(pinocarveol)。同6-羟基-1,4-顺,顺-环辛二烯(Ⅰ)反应占优势的过程也是“ene”反应,分离出还原产物5,8-二羟基-1,3-顺,顺-环辛二烯(Ⅲ),以及(Ⅲ)的热重排产物6-羟基-4-顺-环辛烯酮(Ⅳ),这同用光敏氧化的方法氧化(Ⅰ)得到的结果相一致。通过构型分析,说明了化合物(Ⅰ)同单线态氧作用,通过协同的“ene”反应进行,使分子轨道相互作用不利的[π4s+π2s]加成过程被抑制。  相似文献   

3.
本文研究了反式,反式-1,4-二苯基-1,3-丁二烯(DPB)在沸石NaZSM-5中的光敏氧化反应。在溶液中9,10-二氰基蒽(DCA)敏化光氧化反应有两种机制:单重态氧机制和电子转移产生超氧负离子机制。我们把DPB吸附在沸石ZSM-5孔道中,DCA溶解于沸石外部溶剂季戊四醇三甲醚中,溶剂和敏化剂都不能进入沸石孔道。光照反应后,在沸石孔道中只得到DPB的单重态氧的反应产物,没有电子转移的产物产生。反应产物产率为100%。大大提高了反应的选择性。  相似文献   

4.
手性助剂控制的不对称反应是不对称合成的重要方法之一.以Evans手性助剂控制的Michael受体1为底物,在FeCl3催化下,通过不同格式试剂对其进行Michael加成,一步反应得到了一系列含两个手性中心的Michael加成产物2a~2h.获得了较高的立体选择性,其中化合物2d和2e得到了de值高达98%的非对映选择性.研究结果表明,亲核试剂的空间位阻是影响产物立体选择性的主要因素.  相似文献   

5.
彭菊  何晓倩  廖黎丽  白若鹏  蓝宇 《有机化学》2023,(10):3608-3613
有机反应区域选择性的调控是有机化学的重要研究内容之一,而电性效应则是其重要调控因素.运用密度泛函理论计算,以钯催化2-碘联苯化合物与硅杂环丁烷的环化反应为模板,研究了取代基电性效应在还原消除过程中对区域选择性的影响,并给出了该反应的详细反应机理.计算结果表明,该反应经历了Pd—I键氧化加成、协同金属去质子、Pd—Si键氧化加成、还原消除过程得到硅杂八元环产物,且C—Si键还原消除是反应的速率决定步骤.对Pd(IV)还原消除过渡态中电子效应的研究证明,当使用不对称2-碘联苯作为反应底物时,芳环电子密度是区域选择性的主要控制因素,电子密度更高的基团更容易发生还原消除,与该基元反应电子流向一致.  相似文献   

6.
在Cu(OAc)2/TMEDA体系催化下,芳硼酸与亚磷酸二乙酯可在室温下以空气为直接氧化剂通过氧化偶联反应生成芳基膦酸酯化合物.该反应使用较为廉价低毒的铜盐为催化剂,不怕水、不怕氧,底物适用范围较广,目标产物选择性高、收率良好.因此,与已知金属催化卤代芳烃的碳-磷偶联反应相比是一种相对温和高效的合成芳基膦酸酯的方法.  相似文献   

7.
VMgO催化剂上丙烷和异丁烷临氧催化转化机理   总被引:1,自引:0,他引:1  
用程序升温反应 -红外光谱技术研究 2 0VMgO和 6 0VMgO催化剂上丙烷和异丁烷临氧催化转化的机理 .结果表明 ,临氧条件下的反应性是异丁烷 >丙烷 ,与其分子中最弱C -H键键能从弱到强顺序相同 ,这意味着临氧活化的第一步可能是断裂分子中强度最弱的C -H键、且为速率控制步骤 ;丙烷临氧反应的深度氧化产物COx 与氧化脱氢产物丙烯的生成是平行和 (或 )连续反应关系 ,而裂解产物乙烯和甲烷的生成则是平行反应 ;异丁烷氧化脱氢反应中C -C键的断裂比丙烷的容易 .  相似文献   

8.
郑小琦 《分子催化》2012,26(1):19-25
Ni(OAc)2结合吡啶和叔丁基过氧化氢(TBHP)实现了苄基C-H与苄基醇类化合物在温和条件下(80~90℃,O21 atm)的选择性催化分子氧氧化反应.研究了过氧化物添加剂,配体,溶剂和温度的影响,得到了优化的反应条件.在苄基C-H的氧化中显示了很高的酮/醇选择性.用ESR法进行了Ni(III)的检测,证实了反应机理.竞争实验说明羰基化合物的生成不是因为醇继续氧化.酮可被解释为过氧化氢中间体受金属催化分解的产物.  相似文献   

9.
sp3杂化的碳氢键氧化成酮是有机合成中一个重要方法.相应的酮产物被广泛应用在医药和天然产物合成中.目前已经开发出多种衍生于含 N杂环酮的药物化合物和具有生物活性的天然产物,例如阿普米定、苯吡胺、氯苯吡胺、曲普利啶、多西拉敏等.传统的含 N杂环侧链氧化生成酮的方法使用化学计量的强氧化剂(如高锰酸钾),不可避免地产生众多的副产物.近年来,均相的过渡金属催化剂被广泛应用于含 N杂环侧链氧化生成酮的反应中.但是 N杂环和过渡金属配位导致催化剂失活,选择性降低.金属的残留也使后处理过程变得繁琐.均相催化剂还存在难以回收利用的缺点.使用多相催化剂可以解决上述问题,因而具有重大的研究意义.目前为止,还很少有文献报道多相催化剂催化含 N杂环侧链氧化生成酮的方法.本文使用硝酸锰和菲啰啉的络合物在氮气氛围中高温焙烧,制备了一系列新型 MnOx-N@C材料.首次应用于 C–H氧化成酮的领域中.以2-苄基吡啶为模板底物,使用叔丁基过氧化氢为氧化剂,我们研究了 MnOx-N@C材料的催化活性.研究发现,在600oC焙烧得到的 MnOx-N@C材料具有最高的催化活性.实验得到最佳的反应条件:0.5 mmol底物,3当量的叔丁基过氧化氢,1 mg MnOx-N@C (600oC)材料. ICP结果表明,1 mg MnOx-N@C (600oC)材料中含有的锰相对于0.5 mmol底物的摩尔分数为0.79 mol%,说明该材料具有很高的催化活性.我们进一步研究了 MnOx-N@C (600oC)材料适用的底物范围,发现它可以催化2,3-环戊烯并吡啶类化合物、苄基吡啶类化合物发生氧化反应生成相应的酮;当反应底物中存在其他可以被氧化的碳氢键时,该材料表现出很高的选择性,可见其具有广泛的底物范围和优异的选择性.对于克级以上规模的底物量, MnOx-N@C仍能表现出很高的催化活性,表明其在有机合成中具有很好的实用性;连续使用6次后,该催化剂依然表现出很高的催化活性.表征结果表明, MnOx-N@C (600oC)材料中 MnOx粒子大小为1.71–6.56 nm;样品中存在 C–N, C=N和吡咯型的 N; Mn的化学态有+2,+3和+4.  相似文献   

10.
烯丙基胺结构单元广泛存在于天然产物、药物和功能材料分子中,另外烯丙基胺衍生物也是一类重要的有机合成子.实现了钯催化的肉桂基碳酸酯化合物和酰腙化合物的烯丙基胺化反应,高选择性地生成了线型烯丙基胺类化合物,产率高达99%.该方法具有不需要加碱、条件温和、操作简单、底物适应范围广等优点.  相似文献   

11.
This paper studied the results of evaluation on resistance to radiation, moisture permeability, bacteria permeability, tensile strength, elongation at break and sealing ability for several plastic films available on the market. The result shows that nylon, sarin, and polyethylene complex films, high and low density polyethylene films are applicable for packing of radiation sterilized products.  相似文献   

12.
Nafion?–polyaniline (PAn) composite films deposited by a two-step process on a stainless steel (SS) substrate were characterized in this study using Fourier transform infrared (FTIR) spectroscopy under various conditions employed to evaluate their anticorrosion properties. The SS|Nafion? electrode was first prepared by placing a certain amount of Nafion? on the SS substrate, and then polymerization of aniline was carried out potentiodynamically on the SS|Nafion? electrode. The SS|Nafion?–PAn electrodes subjected to both potentiodynamic polarization and open-circuit conditions in sulfuric acid solutions without and with chlorides appeared to have distinct differences in their FTIR spectra. It is proposed that under the electrochemical conditions used in this study, the PAn is mostly formed inside the Nafion? membrane with a high proportion of oligomers influencing the ionic transport through the membrane. The inhibition of pitting corrosion arises primarily from the enhanced permselectivity of the composite film due to the Nafion? membrane that prevents chloride transport. An essential beneficial effect comes also from the PAn redox properties on the growth of the passive oxide film. Even under severe corrosion conditions, Nafion???/em>PAn films retain their redox activity and chemical stability, whereas the membrane crystallinity seems to be enhanced.  相似文献   

13.
木工作用透射电子显微术及电子衍射技术研究3种PE(HDPE,LLDPE或LDPE)均聚物高取向薄膜的微结构。定量测定了它们的结晶尺寸。通过倾斜样品电子显微学研究确定了不同种PE纤维结构的对称性。  相似文献   

14.
本文采用壳聚糖-磷钨酸层对Nafion膜表面分别进行单面和双面修饰改性,研究了修饰模式对Nafion膜钒离子渗透率、电导率及离子选择性的影响. 结果表明,单面、双面修饰改性均会使Nafion膜的钒离子渗透率显著降低,最高降幅分别达到89.9% (单面修饰) 和92.7% (双面修饰);单面、双面修饰改性均会使Nafion膜的电导率下降,但存在明显差异,在相同修饰厚度条件下,双面修饰改性对Nafion膜电导率的影响比单面修饰改性更小。因此,双面修饰复合膜展示出了比单面修饰复合膜更高的离子选择性,并且在修饰层厚度为17 μm时达到最大值(1.12×105 S•min•cm-3). 基于优化的双面修饰Nafion膜的全钒液流电池,在充放电流密度30 mA•cm-2 时,库伦效率和能量效率分别达到93.5%和 80.7%, 并且在测试时间内展示出良好的循环稳定性.  相似文献   

15.
质子交换膜燃料电池(PEMFC)商业化应用的瓶颈仍然是贵金属催化剂导致的成本问题。然而,目前对于催化层中纳米尺度全氟磺酸离聚物(以Nafion为代表)薄膜中质子传导的问题研究不足,无法完善三相界面的成型规律,进而指导催化层设计。在催化层浆料制备过程中,分散溶剂对Nafion的分散形态有直接影响,可能对催化层成型后附着在催化剂颗粒表面Nafion薄膜的微观结构有潜在影响,进而影响Nafion薄膜的质子传导能力。因此,在本文中利用分子自组装技术模拟催化层离聚物薄膜的聚集过程,于模型基底上制备厚度精确可控的纳米尺度Nafion薄膜,并通过微观测试表征技术探索并建立纳米尺度Nafion离聚物的微观结构模型,阐明分散溶剂对Nafion薄膜微观结构及质子传导的影响。研究发现Nafion薄膜在纳米尺度下的质子电导率比体相膜的质子电导率低一个数量级,使用介电常数较小的醇类溶剂可以使Nafion薄膜形成更有利于质子传导的微观结构,使Nafion薄膜的质子电导率得到提高。相关研究结果为优化PEMFC催化层结构,改善PEMFC催化层中质子传导问题提供给了依据。  相似文献   

16.
Photo-oxidative degradation of quenched samples of linear low density (LLD), medium density (MD) and two kinds of high density (HD) polyethylene (PE) films was studied using a medium-pressure mercury lamp. Greater amounts of crosslinking and build up of oxidation products were noticed in LLDPE than the other samples. The primary products of interaction between dienes and oxygen are considered to participate in the initiation of the photo-oxidation reactions. Using the FT-IR difference spectrum technique, the amount of branch concentration in the photo-irradiated PE samples was determined. Oxidation damage at the boundary region between crystalline and amorphous phases is considered to be important in determining the embrittlement time.  相似文献   

17.
《先进技术聚合物》2018,29(2):1002-1006
Candida antarctica lipase B was immobilized for the first time (at the author's knowledge) onto linear low density polyethylene (LLDPE) films. Polymer films were previously bonded to a commercial aluminum sheet using a simple support preparation method. Biocatalyst performance was evaluated in penthyl oleate synthesis at room temperature. Two different catalyst geometries were tested and compared: one aluminum‐polyethylene 50 mm × 50 mm foil (50CAT) or near 5 mm × 5 mm aluminum‐polyethylene foils (5CAT). The obtained results demonstrate that the biocatalyst obtained with 50 mm × 50 mm aluminum‐polyethylene foil or 50CAT is reusable in up to 7 cycles, easy to separate from reaction products, and economical in comparison with commercial Novozym 435. Novel and economical CALB/LLDPE/Al biocatalyst is an attractive alternative for possible applications in a continuous monolithic reactor and future industrial scaling up.  相似文献   

18.
Thermal lens spectrometry was used to study Langmuir–Blodgett films of a weakly absorbing Nafion polyelectrolyte membrane on the surface of inert polyethylene terephthalate (PET) and glass substrates and to estimate the amount of Nafion (number of layers) using a change in the thermal characteristics of the sample. The sensitivity of thermal lens measurements at the wavelength of the exciting radiation 532.0 nm is comparable to that of solid-state spectrophotometry in the region of the maximum absorbance of Nafion (275 nm). However, the high locality of thermal lens spectrometry (the area of the signal generation zone is 100 μm2) ensures the estimation of the uniformity of the deposition of the polyelectrolyte layer. To increase the absorbance of the layer of the applied polyelectrolyte, the latter is saturated with a colored compound (ferroin). The adsorption of ferroin into the Nafion layer on the PET surface was confirmed; the absorbance of ferroin in the Nafion layer is in the range of 1 × 10–5–5 × 10–4 units of absorbance, which corresponds to the surface concentration of ferroin 1 × 10–11–4 × 10–10 mol/cm2.  相似文献   

19.
The biodegradability of high density polyethylene films (HDPE), low density polyethylene films (LDPE) and linear low density polyethylene films (LLDPE) with a balanced content of antioxidants and pro-oxidants (manganese + iron or manganese + iron + cobalt) was studied. Abiotic pre-treatment consisting of photooxidation and thermal oxidation corresponding to about three years of outdoor weathering (including 3-4 months of exposure to daylight) was monitored by FTIR and SEC measurements. The oxidized samples were then inoculated with the strain Rhodococcus rhodochrous in mineral medium, and incubated up to 180 days. The metabolic activity of the bacteria was assessed by measuring adenosine triphosphate content (ATP) and the viability of the cells. Complementary experiments were performed by 1H NMR spectroscopy to monitor the biodegradation of soluble molecules excreted from the polymer in the incubation medium. Finally SEM was used to visualize the formation of a biofilm at the surface of the polymer. Three samples among the 12 tested were investigated in compost and soil environments. The results show that the main factor controlling the biodegradability of the polyethylene films is the nature of the pro-oxidant additive and to a lesser extent that of the matrix. Except for the samples containing very high content of cobalt additive, the various polymer films were used as substrates by the bacteria.  相似文献   

20.
Supported lipid films are becoming increasingly important tools for the study of membrane protein function because of the availability of high-sensitivity surface analytical and patterning techniques. In this study, we have characterized the physical chemical properties of lipid films assembled on hydrophobic surfaces through the spontaneous adsorption of large unilamellar lipid vesicles composed of dioleoylphosphatidylglycerol (DOPG) and dioleoylphosphatidylcholine (DOPC). The density of the lipid films was measured with surface plasmon resonance spectroscopy as the lipid composition of the vesicles and ionic concentration were varied. As expected, monolayer films were formed, but the density of the monolayers was found to be weakly dependent on the lipid composition of the vesicles and strongly dependent on the ionic concentration of the solution in contact with the monolayer. Atomic force microscopy (AFM) images of the lipid films indicate that they are composed of a homogeneous monolayer. Surface force measurements were used to determine the surface charge and DOPG density of the monolayers. The DOPG content of the films was found to be weakly dependent on the DOPG composition of the vesicles and strongly dependent on the salt concentration of the environment. A model has been developed to describe the behavior of the lipid composition of the films in terms of the hydrophobic, electrostatic, and steric forces acting on the lipid monolayer on the hydrophobic surface.  相似文献   

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