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1.
N-取代马来酰亚胺聚合物中的酰亚胺环为平面五元环结构,阻碍了酰亚胺单元绕聚合物主链的旋转,限制了聚合物主链的运动,使聚合物的热性能和化学稳定性得到了很大的提高.近些年来,有关N-取代马来酰亚胺均聚合研究的报道已经有很多,但大多采用自由基聚合方法和负离子聚合方法,采用配位催化聚合方法很少.  相似文献   

2.
研究了二硫代苯甲酸酯存在下偶氮二异丁腈引发苯乙烯(St)、St与N-对羟基苯基马来酰亚胺(HPM)、St与N-对(2-氯/溴丙酰氧基)苯基马来酰亚胺(CPPM/BPPM)的可逆加成-断裂链转移(RAFT)均/共聚,聚合物的结构由紫外-可见光(UV-Vis)与凝胶渗透色谱(GPC)表征.结果表明,St的RAFT均聚以及St与N-取代马来酰亚胺的RAFT共聚均呈现活性聚合特征,分子量随着转化率上升而增加,且分子量分布较窄.对于St的RAFT均聚,由于双基终止,聚苯乙烯(PSt)链中"戴帽效率"随着转化率上升逐渐下降.对于St与N-取代马来酰亚胺的RAFT共聚合,电荷转移复合物的形成显著地提高了共聚反应速度,并促进交替结构的形成.随后进行了以P(St-alt-BPPM)引发St的原子转移自由基聚合以制备梳型PSt,结果表明在强极性溶剂中进行的聚合过程失去可控性,所得产物分子量极宽,而在本体聚合中所得聚合物分子量相对较窄,有一定的可控性.  相似文献   

3.
氯乙烯/N-取代马来酰亚胺共聚竞聚率及共聚物组成   总被引:6,自引:0,他引:6  
研究了氯乙烯(VC)与多种N-取代马来酰亚胺的溶液共聚合,求得各对单体的竞聚率.结果表明,各种马来酰亚胺的竞聚率都远高于VC的竞聚率,即N-取代马来酰亚胺单体的活性均比VC单体活性高.计算得到N-取代马来酰亚胺Q和e值.由于苯环的共轭效应,N-苯基及N-取代苯基马来酰亚胺具有较大的Q值.各对单体的e值差别较大,表明有形成交替共聚物的倾向.此外,还考察了聚合过程中共聚物组成的变化,用递推法预测了这类体系共聚物瞬时和累积组成随转化率的变化.  相似文献   

4.
N-取代基马来酰亚胺均聚合研究进展   总被引:7,自引:0,他引:7  
N-取代基马来酰亚胺聚合物具有良好的热性能,近些年来随着材料性能的要求提高,对这类单体的研究也越来越多,本论文综述了N-取代基马来酰亚胺在自由基、阴离子聚合、配位聚合等方面的均聚合研究进展。  相似文献   

5.
N-烷基与N-芳基马来酰亚胺,是属于1,2-二取代乙烯结构的单体,文献[1—3]报道这类单体能进行自由基聚合与共聚合。但对于N-(对甲苯基)马来酰亚胺(PMPMI)的自由基聚合与共聚合中,溶剂对聚合物分子量的影响尚未有详细报道。至于N-烷基与N-芳基马来酰亚胺分别和丙烯酸甲酯(MA)、甲基丙烯酸甲酯(MMA)的共聚合也有一些报道,由竞聚率的测定,计算出N-芳基马来酰亚胶的e值是2.12—2.29和1.35—1.75。表明N-芳基马来酰亚胺是一缺电子的单体,即负性单体。我们研究室曾报道N,N-二甲基-对甲苯胺(DMT)和其它芳胺能光诱导引发负性单体丙烯腈聚合。PMP-  相似文献   

6.
N-取代的马来酰亚胺是缺电子的负性单体[1],它很容易进行自由基聚合或共聚合[2,3],特别是能够与负性单体如丙烯腈共聚合[4].如果在缺电子的N-取代马来酰亚胺单体中引入给电子生色基团,即给电子生色基团与受电子基团于一体,能够表现出较好的光化学性能[5].本文中报道了聚[N-(4-二甲氨联苯基)马来酰亚胺]及其单体的合成,聚合物的光化学性能将在另文报道.  相似文献   

7.
N-取代马来酰亚胺(RMI)是一类重要的新型树脂改性单体,由于其具有刚性五元环的结构,能显著提高聚合物的玻璃化温度和热分解温度,改善材料的工艺性和力学性能[1-9]。但文献对于在N-取代基团中引入杂环结构的单体合成报道很少。本文报道了由顺丁烯二酸酐、8-氨基喹啉、对甲苯胺为主要原料合成N-[4-(N′-8-喹林基)苯甲酰胺基]马来酰亚胺(QPM)和N-[4-(N′-4-甲基苯基)苯甲酰胺基]马来酰亚胺(TPM)的方法,并对产物进行了元素分析和1H-NMR、FT-IR表征。同时,由于8-氨基喹啉具有与8-羟基喹啉类似的结构,能表现出较好的光学性能[10,11],以N…  相似文献   

8.
N-[4-(N''''-取代酰胺基)苯基]马来酰亚胺的合成与表征   总被引:3,自引:0,他引:3  
N-取代马来酰亚胺(RMI)是一类重要的新型树脂改性单体,由于其具有刚性五元环的结构,能显著提高聚合物的玻璃化温度和热分解温度,改善材料的工艺性和力学性能。但文献对于在N-取代基团中引入杂环结构的单体合成报道很少。本文报道了由顺丁烯二酸酐、8-氨基喹啉、对甲苯胺为主要原料合成N-[4-(N’-8-喹林基)苯甲酰胺基]马来酰亚胺(QPM)和N-[4-(N’-4-甲基苯基)苯甲酰胺基]马来酰亚胺(TPM)的方法,  相似文献   

9.
乙烯基单体/N-取代马来酰亚胺共聚合动力学   总被引:4,自引:0,他引:4  
详细研究了聚合温度、引发剂用量、单体配比对苯乙烯(St)/N-苯基马来酰亚胺(PMI)共聚合动力学的影响.对St、甲基丙烯酸甲酯(MMA)和丙烯腈(AN)等单一或混合单体与PMI、N-环己基马来酰亚胺(ChMI)和N-邻氯苯基马来酰亚胺(o-CPMI)的共聚合进行了研究,并讨论了单体结构的影响.  相似文献   

10.
合成了含有不同烷基链取代的N-丙烯酰氧癸基咔唑(MACZ10)和N-丙烯酰氧十二烷基咔唑(MACZ12), 通过自由基聚合得到聚N-丙烯酰氧烷基咔唑(PMACZ). 分子量分析表明, 随着烷基链长度的增加, 聚合物分子量减小, 分布变宽. 荧光光谱表明, 随着烷基链长度的增加, 聚合物在353 nm处的发射峰逐渐减弱. 在四氢呋喃和体积分数为10%三氟化硼乙醚与四氟化硼四丁基胺的混合电解质溶液中, 直接阳极氧化PMACZ获得自支撑交联网状的聚(聚N-丙烯酰氧烷基咔唑)(PPMACZ)薄膜. PPMACZ薄膜具有良好的氧化还原活性、热稳定性和蓝色发光性能, 聚合物氧化还原可逆性随着烷基链长的增加而增加, 且发射峰变宽.  相似文献   

11.
When poly(isopropylidene diallylmalonate) rich in threo-disyndiotactic sequences (st(rich)-2) was utilized as a cross-linkable ink for microcontact printing, the resultant submicrometer-scale patterns featuring 700 and 300 nm wide stripes were successfully insolubilized while maintaining their high dimensional integrity by heat-induced cross-linking with elimination of CO(2) and acetone. In sharp contrast, although the thermal properties and reactivities of a polymer rich in threo-diisotactic sequences (it(rich)-2) and a polymer having low stereoregularity (2(low)) are little different from those of st(rich)-2, the patterns printed with these reference polymers collapsed considerably upon heating as a result of a volume shrinkage effect. The striking difference between st(rich)-2 and the other two polymers most likely arises from the nanofiber-forming character of st(rich)-2, where the printed stripes are porous and much less affected by the volume shrinkage of individual nanofibers.  相似文献   

12.
The optimized molecular structures, harmonic vibrational wavenumbers, and the corresponding vibrational assignments of (1S,2S)-tramadol and (1R,2R)-tramadol are computationally examined using the B3LYP density functional theory method together with the standard 6–311++G(d,p) and def2-TVZP basis sets. The optimized structures show that phenolic rings of both 1R,2R and 1S,2S tramadol adopt planar geometry, which are slightly distorted due to the substitution at the meta-position; and the six-membered cyclohexane adopts a slightly distorted chair conformation. The 1S,2S enantiomer is energetically more favorable than 1R,2R with the energy differences of 1.32 and 1.03 kcal/mol obtained at B3LYP/6–311++G(d,p) and B3LYP/Def2-TVZP levels, respectively. The analysis of the binding pocket in the silico molecular docking with the m-opioid receptor shows that it originated two clusters with the 1S,2S enantiomer and one cluster with the 1R,2R enantiomer of tramadol. The results point to a more stable complex of the m-opioid receptor with the 1R,2R enantiomer of tramadol.  相似文献   

13.
Reversible and stereoselective coordination of 1-(R)-phenyl-2-(S)-methylaziridine to (S,S)L-Co(III) and (R,R)L-Co(III) (where L represents a salen ligand obtained from diamino cyclohexane and 2,4-di-tert-butyl salicylaldehyde) has been investigated. 1H NMR data indicate that the aziridine binds about three times more tightly to (S,S)L-Co(III) than to (R,R)L-Co(III). Crystal structures of two molecules of the aziridine coordinated to the Co(III) complexes have been determined. These structures together with molecular mechanics computation provide insight into the origin of stereoselective recognition of the aziridine to the Co(III) complexes.  相似文献   

14.
From leaves of Turpenia ternata (Staphylaceae), one megastigmane and seven of its glucosides (1-8) were isolated. Megastigmane and two of the glucosides were found to be known compounds, namely, 3S,5R,6R,9S-tetrahydroxymegastigmane (1), corchoionoside C (2), and icariside B4 (3). The structures of compounds 4-8 (turpinionosides A-E, respectively) were elucidated by means of spectroscopic analyses, and then their absolute structures were determined by the modified Mosher's method to be (3S,5R,6S,9S)-3,6,9-trihydroxymegastigman-7-ene 3-O- and 9-O-beta-D-glucopyranosides (4, 5, respectively), (1S,3S,5R,6S,9R)-3,9,12-trihydroxymegastigmane 3-O-beta-D-glucopyranoside (6), (3S,4R,9R)-3,4,6-trihydroxymegastigman-5-ene 3-O-beta-D-glucopyranoside (7), and (2S,9R)-2,9-dihydroxymegastigman-5-en-4-one 2-O-beta-D-glucopyranoside (8).  相似文献   

15.
The self-assembled monolayer structure of the products of elaidic acid iodination (the racemic mixture of 9,10-(9S,10R)-diiodooctadecanoic acid and 9,10-(9R,10S)-diiodooctadecanoic acid) and the products of oleic acid iodination (the racemic mixture of 9,10-(9R,10R)-diiodooctadecanoic acid and 9,10-(9S,10S)-diiodooctadecanoic acid) are studied by high-resolution scanning tunneling microscopy. For the iodination products of elaidic acid, the separation of enantiomers into distinct chiral domains during the formation of the 2-D crystal on the highly ordered pyrolytic graphite (HOPG) surface is not observed. Instead, within the diiodooctadecanoic acid SAM, each row of molecules is composed of opposite racemates. The two opposite racemates pack alternately inside a row, using different faces to adsorb on the surface. The unit cell is composed of a pair of opposite racemates, forming a heterochiral structure. For the iodination products of oleic acid, the racemic mixture is observed to exhibit quasi-phase separation during the formation of the 2-D crystal on the HOPG surface. Each row is composed of homochiral acid molecules, either the 9,10-(9R,10R)-diiodooctadecanoic acid (R) or the 9,10-(9S,10S)-diiodooctadecanoic acid (S). The R row and the S row pack alternately, with a unit cell composed of four molecules. Two of the molecules in the unit cell are the 9,10-(9R,10R)-diiodooctadecanoic acid (R) molecules; two are the 9,10-(9S,10S)-diiodooctadecanoic acid (S) molecules. In the unit cell, the two molecules that have the same chirality pack antiparallel inside the homochiral row, using different faces to adsorb on the surface. These results suggest that several different types of chiral assembly are possible. Enantiomers with opposite chirality exhibit many chiral assembly patterns, forming heterochiral structures on the surface in addition to separation to form macroscopic chiral domains. By using different conformations, similar enantiomers with opposite chirality will display many chiral assembly patterns to form heterochiral structures on the surface.  相似文献   

16.
[structures: see text] Both (2S,5R,6R)- and (2S,5R,6S)-6-hydroxy-8-(1-decynyl)benzolactam-V8 were designed and synthesized as PKC modulators. Biological assays reveal the (6R)-ligand to be 20-fold more potent than its (6S)-counterpart in binding to PKC alpha.  相似文献   

17.
Two new bisabolane-type sesquiterpenoids, (3R,4R,6S)-3,4-epoxybisabola-7(14),10-dien-2-one and (1R,3R,4R,5S,6S)-1-acetoxy-8-angeloyloxy-3,4-epoxy-5-hydroxybisabola-7(14),10-dien-2-one, and a new oplopane-type sesquiterpenoid, 14(R)-hydroxy-7beta-isovaleroyloxyoplop-8(10)-en-2-one, were isolated from Farfarae Flos along with three known compounds. The structures of these compounds were elucidated on the basis of spectroscopic evidence.  相似文献   

18.
(+)-(1S,2S,5R)-8-联苯薄荷醇的合成   总被引:4,自引:0,他引:4  
以(R)-( )-pu legone为起始原料,经1,4-加成,还原两步反应合成了手性辅助试剂( )-(1S,2S,5R)-8-联苯薄荷醇及其差向异构体(-)-(1R,2S,5R)-8-联苯薄荷醇,总产率95%。其结构经1H NMR,13C NMR,IR,MS和X-射线衍射仪表征。  相似文献   

19.
Glycosides of Atractylodes lancea   总被引:5,自引:0,他引:5  
Five sesquiterpenoid glycosides (two guaiane-type glycosides and three eudesmane-type glucosides) and a glucoside of an acetylene derivative were newly isolated from the water-soluble portion of the methanolic extract of Atractylodes lancea rhizome together with 26 known compounds. Their structures were characterized as atractyloside A 14-O-beta-D-fructofuranoside, (1S,4S,5S,7R,10S)-10,11,14-trihydroxyguai-3-one 11-O-beta-D-glucopyranoside, (5R,7R,10S)-isopterocarpolone beta-D-glucopyranoside, cis-atractyloside I, (2R,3R,5R,7R,10S)-atractyloside G 2-O-beta-D-glucopyranoside, and (2E,8E)-2,8-decadiene-4,6-diyne-1,10-diol 1-O-beta-D-glucopyranoside on the basis of chemical and spectroscopic investigation. The presence of six characteristic guaiane-type glucosides in both rhizomes of A. lancea and Atractylodes japonica suggested a close chemotaxonomic relationship between them.  相似文献   

20.
Automated exploration of adsorption structures of a molecule (CH3COCH2COOCH3) on an organometallic complex of (R)-RuH2-BINAP (BINAP=2,2'-bis(diphenylphosphino)-1,1'-binaphthyl) has been performed by a combination of the ONIOM method and the scaled hypersphere search (SHS) method. As many as 135 potential minima have been obtained as candidates of adsorption structures. The most stable structure among the 135 is a precursor of the (R)-type product, which is about 30 kJ/mol more stable than the most stable structure among precursors of the (S)-type product. This unbiased search is theoretically showing the power of BINAP to distinguish (R)-type and (S)-type at the adsorption state. This result is in line with very high optical yield of the (R)-type product in the corresponding experiment.  相似文献   

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