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1.
本文做了4,4′-二乙炔二苯甲烷的本体热均聚和催化均聚,并用(Ph_3P)_2PdCl_2为催化剂做了4,4′-二乙炔二苯甲烷与苯乙炔的共聚,对均聚和共聚物中的不溶不熔组分测定了密度、溶胀度、Huggins参数以及交联点间的平均分子量(?)_c。实验表明,该交联聚合物的最良溶剂是四氢呋喃,溶度参数为9.9ca1~0.5。cm~(-1.5),当用四氢呋喃为溶剂时的Huggins参数为0.34,并且在单体摩尔比中4,4′-二乙炔二苯甲烷用量越多,溶胀度越小,交联度越大。红外光谱分析表明,所有均聚及共聚物都为反式结构。  相似文献   
2.
Reactions of naphthaleneeuropium and naphthaleneytterbium, C10H8Ln(DME) (Ln = Eu or Yb), with phenylacetylene are accompanied by the formation of the C-C bond and yield the complexes of composition Ph2C4H2Ln(DME)2. Hydrolysis of the Ph2C4H2Ln(DME)2 complexes affords a mixture of isomers of 1,4-diphenyl-1,3-butadiene. Reactions of C10H8[LnI(DME)2]2 with PhCCH yield mixed iodine-ethynyl complexes [ILn(-CCPh)(DME)2]2. According to the data of X-ray diffraction analysis, the ytterbium complex consists of two YbI(DME)2 units bonded through two bridging CCPh groups. The crystals of this complex belong to the space groupP21/c. The central cyclic Yb-C-Yb-C fragment is planar; the C(I)-Yb(I)-C(I) angle is 86.4(3)°. The Yb-C bond lengths are 2.584(8) and 2.603(9) Å.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 8, pp. 2101–2104, August, 1996.  相似文献   
3.
制备了聚苯乙炔(PPA)LB多层膜,将其作为电荷产生层首次应用于机能分离型光电导体领域.从π A曲线发现,PPA单分子膜具有表面压力的各向异性和松弛特性.TEM照片显示,PPA分子链在LB膜中有序排列.转移比和XPS的研究表明,复合膜沉积均匀.与PPA涂膜相比,以PPA LB多层膜作为电荷产生层的光电导体表面充电电位V0=1345V,光照1s后的光衰百分比ΔV1s=6505%,半衰时间t1/2=058s,具有更优异的光电导性能.  相似文献   
4.
A novel doublet chirality transfer (DCT) model was demonstrated in cis poly(3,5‐disubstituted phenylacetylene)s, i.e., S‐I , R‐I , and S‐I‐NMe . The chiral message from the stereocenter of alkylamide substituent at 3‐position induced the polyene backbone to take cis‐transoid helical conformation with a predominant screw sense. And in turn the helical backbone acted as a scaffold to orient the pyrene probes, which was linked to phenyl rings through 5‐position, to array in an asymmetric manner. A combinatory analyses of 1H NMR, Raman, FTIR, UV‐vis absorption, CD, and computer simulation suggested that the main‐chain stereostructure, solvent nature, and intramolecular hydrogen bonds played important and complex roles on DCT. High cis‐structure content and intramolecular hydrogen bonds were beneficial for the realization of DCT. Reversible helix‐helix transition was observed in S‐I by changing the nature of solvents. In DMF, S‐I adopted a relatively contracted helix, where the main chain exhibited strong optical activity, but that of pyrene was weak. In contrast, a relatively stretched helix formed in CHCl3, in which the optical activity of pyrene was much larger, whereas that of the polyene backbone was the weakest. This helix‐helix transition was attributed to the intramolecular hydrogen bonds, which was confirmed by solution‐state FTIR spectra and computer calculations.  相似文献   
5.
New conjugated oligomers were prepared by reacting phenylacetylene under high pressure of 0.11 to 0.92 GPa at 100–200°C for 0–5 h. The number-average molecular weight M?n, the weight-average molecular weight M?w, and the oligomer yield increased with pressure, tem-perature, and time. The average molecular weight of the oligomer showed the maximum value (M?n: 830, M?w: 2400) under 0.92 GPa, the maximum pressure, where phenylacetylene was oligomerized at a constant temperature. The structure of the oligomer was investigated from ESR, infrared, UV–VIS, field desorption mass (FDMS) spectra, and 13C NMR spec-trum. Analysis of the FDMS spectrum revealed that the molecular weight of the oligomer was multiple of the monomer. 13C NMR spectrum of the oligomer showed the absence of sp-carbon (? C?). We found that the oligomer had a cyclic structure. The cyclic oligomers of pentamer or more were new compounds. © 1995 John Wiley & Sons, Inc.  相似文献   
6.
Poly(phenylacetylene)s are a family of helical polymers constituted by conjugated double bonds. Raman spectra of these polymers show a structural fingerprint of the polyene backbone which, in combination with its helical orientation, makes them good candidates to be studied by Raman optical activity (ROA). Four different well‐known poly(phenylacetylene)s adopting different scaffolds and ten different helical senses have been prepared. Raman and ROA spectra were recorded and allowed to establish ROA‐spectrum/helical‐sense relationships: a left/right‐handed orientation of the polyene backbone (Mhelix/Phelix) produces a triplet of positive/negative ROA bands. Raman and ROA spectra of each polymer exhibited the same profile, and the sign of the ROA spectrum was opposite to the lowest‐energy electronic circular dichroism (ECD) band, indicating a resonance effect. Resonance ROA appears then as an indicator of the helical sense of poly(phenylacetylene)s, especially for those with an extra Cotton band in the ECD spectrum, where a wrong helical sense is assigned based on ECD, while ROA alerts of this misassignment.  相似文献   
7.
Two acetylene polymers containing cyanobiphenyl-based mesogens,poly { 10-[ ((4'- cyano-4-biphenylyl ) oxy ) carbonyl] - 1 -decyne } (PA8CN ), which has a relativelyfiexible polyalkyne backbone, and poly {[4-(((12-((4'-cyano-4-biphenylyl)oxy)dodecyl)oxy)carbonyl) phenyl]-acetylene} (PB12CN), which has a fairly rigid poly (phenylacetylene )backbone, were synthesized using respectively WCl_6 and [Rh(nbd)Cl]_2 as the catalysts.PA8CN exhibits enantiotropic interdigitated smectic A phase (S_(Ad)) over a temperaturerange as wide as ca. 100℃, whereas PB12CN is non-mesomorphic, demonstrating thatthe backbone rigidity plays an important role in determining the liquid crystallinity of thepolyacetylenes.  相似文献   
8.
The regioselective alkoxycarbonylation of phenylacetylene into various cinnamate esters was achieved with a catalyst system formed from palladium (II), 1,4‐bis(diphenylphosphino) butane (dppb) and salicylborate complex in acetonitrile as a solvent. The influence of various parameters on the overall conversion of phenylacetylene and the selectivity of the reaction were studied systematically by varying the type of palladium complex, acids promoter, CO pressure, temperature and the reaction time. This investigation allowed us to obtain the predominant formation of cinnamate esters with excellent selectivity (90–96%). Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   
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10.
Les données de diffraction X de la phase désordonnée du nickelocéne ont été enregistrées à 295K sur un diffractométre 4 cercles. La structure cristalline est isomorph de celle du ferrocéne: maille monoclinique, gruoups spatial statistiqe P21/a. Z=2. Utilisnt une méthod d'affinement en blocs moléculaires rigides et des calculs d’ énegie rétudiés. La Structure par 1’ existence de 4 états moléculaires possibles (anant un anlge interne de 20 ± 2[ddot] au lieu de 11.5° ± 1° pour le ferrocéne) symétriques deux à deux, sur chaque site cristallographique et formée de 2 types de clusters. L'emplilement moléculir de la phase ordonnée métastable du nickelocéne à 5 K a été déterminépar minimisation de son énergie éticulair. Les résultats obtenus (monoclinique, Z=2, à 101 K, indiquent quel l'évolution des phases désordonnées du nickelocéne et P21/a, configuration molécularie D 5 d), Une interpétation de cette évolution differente fondée sur des hypothéses relatives à la dynamique du déordre est proposée.  相似文献   
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