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21.
Poly(4‐methyl‐1‐pentene) (PMP) membranes were modified through isothermal annealing to investigate the change of their crystalline structure and rigid and mobile amorphous fractions (RAF and MAF), assuming a three‐phase model, affected the gas transport behavior. The crystalline structure was characterized by wide‐angle X‐ray diffraction (WAXD) and small‐angle X‐ray scattering (SAXS) techniques, and the free volume properties were analyzed by positron annihilation lifetime spectroscopy. Compared with the pristine membrane, the annealed membranes show higher crystallinity; the crystals undergo partial structural change from form III to form I. The lamellar crystal thickness, rigid amorphous fraction thickness, and long period in the lamellar stacks increase with crystallinity. The annealed PMP membranes exhibit higher permeability due to the increase in larger size free volumes in MAF and higher selectivity due to the increase in smaller size free volumes in RAF, respectively. © 2016 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2016 , 54, 2368–2376  相似文献   
22.
对基团转移聚合在引发剂、单体、催化剂、立体化学、嵌段和星型共聚物、终止反应、链转移反应以及应用方面的最近进展,进行了介绍和评述。  相似文献   
23.
Nagata H  Tabuchi M  Hirano K  Baba Y 《Electrophoresis》2005,26(14):2687-2691
In this paper, we describe a method for size-based electrophoretic separation of sodium dodecyl sulfate (SDS)-protein complexes on a polymethyl methacrylate (PMMA) microchip, using a separation buffer solution containing SDS and linear polyacrylamide as a sieving matrix. We developed optimum conditions under which protein separations can be performed, using polyethylene glycol (PEG)-coated polymer microchips and electrokinetic sample injection. We studied the performance of protein separations on the PEG-coated PMMA microchip. The electrophoretic separation of proteins (21.5-116.0 kDa) was completed with separation lengths of 3 mm, achieved within 8 s on the PEG-coated microchip. This high-speed method may be applied to protein separations over a large range of molecular weight, making the PEG-coated microchip approach applicable to high-speed proteome analysis systems.  相似文献   
24.
<正> 基团转移聚合(Group Transfer Polymerization,GTP)作为一种新的加聚方式,由于具有室温下使极性单体快速聚合;得到预期分子量和窄分子量分布的聚合物;可进行活性聚合,制备嵌段共聚物,对合成丙烯酸酯类橡胶或热塑性弹性体极为有利;可合成带有功能性端基和遥爪的聚合物等优点,近几年来发展迅速。到目前为止,最有效和最常用的GTP引发剂是二甲基乙烯酮甲基三甲基硅基缩醛  相似文献   
25.
This article describes the structure and electrical performance of positive‐temperature‐coefficient/negative‐temperature‐coefficient (PTC/NTC) effects of the following three‐component blends: poly(4‐methyl pentene‐1)/ultra‐high molecular weight polyethylene/carbon black (TPX/UHMWPE/CB), poly(4‐methyl pentene‐1)/crosslinked‐ultra‐high molecular weight polyethylene/carbon black (TPX/XL‐UHMWPE/CB), and γ‐irradiated, compression‐molded plaques of these blends. CB particles are preferentially attracted to the UHMWPE and XL‐UHMWPE particles, which constitute the dispersed phase within the TPX matrix, but practically cannot or can only very slightly penetrate them because of their extremely high viscosity. Thus, CB particles initially form conductive networks on the UHMWPE phase; this is followed by distribution in the TPX matrix, electrically connecting the CB‐covered UHMWPE particles. This unusual CB distribution results in a reduced percolation threshold of all blends. A double‐PTC effect is exhibited by the XL‐UHMWPE‐containing samples. Irradiation of compression‐molded plaques improves their thermoelectric behavior by amplifying the PTC effect and reducing the NTC effect. A schematic model of the double‐PTC effect is suggested, describing the morphological changes of 70TPX/30XL‐UHMWPE/CB blends at different stages of heating with respect to their thermoelectric behavior. Irradiation of TPX/UHMWPE/CB plaques converts these systems into high‐intensity PTC materials free of the NTC effect. © 2001 John Wiley & Sons, Inc. J Polym Sci B Part B: Polym Phys 39: 1415–1428, 2001  相似文献   
26.
The short chain branching distribution (SCBD) and thermal properties of ethylene/1‐pentene copolymers were studied using SEC‐FTIR and SEC‐HPer DSC. The copolymers, synthesized with Cp2ZrCl2/MAO, were fractionated using size exclusion chromatography (SEC). The infrared analysis of the fractions showed that the copolymers had—on average—higher 1‐pentene concentration in the low molecular weight range. Furthermore, the thermal properties of the SEC deposits of these copolymers on a Germanium disc were studied using high performance differential scanning calorimetry (HPer DSC). Single SEC separations were used to accumulate fractions in the microgram range that were directly analyzed with regard to their thermal properties, thus allowing us to study SCBD as well as thermal behavior simultaneously. When these fractions (with masses ranging from 10–80 μg) were analyzed using HPer DSC, good melting and crystallization temperature distributions were obtained, proving that HPer DSC can be used as a complementary method to SEC‐FTIR. © 2007 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 45: 2956–2965, 2007  相似文献   
27.
<正> 作为一种新的极性单体加聚方式的基团转移聚合(Group Transfer Polymerization,GTP),近年来发展很快。对不同引发体系和单体的基团转移聚合进行动力学研究,由此得到规律性的认识,明确聚合过程的影响因素,有利于聚合机理的完善。文献已报道了用  相似文献   
28.
<正> 基团转移聚合(GTP)是Webster等首先发现的一种新型的聚合方法。最常用的引发剂为甲基三甲基硅烷基二甲乙烯酮缩醛(MTS)。催化剂有负离子型(如HF_2~-,CN~-等)和Lewis酸型。Bandermann和Mai研究了甲基丙烯酸甲酯(MMA)的负离子催化剂的GTP动学。Hertler和Sogah报道了Lewis酸催化剂的聚合反  相似文献   
29.
庚醛与顺丁烯二酸二乙酯进行游离基加成反应得到庚酰丁二酸二乙酯(3),3脱羧得到γ-酮酸乙酯(4),4在碱性条件下环化为2-戊基-1,3-环戊二酮(5),5与重氮甲烷反应得到2-戊基-3-甲氧基环戊-2-烯酮(6),6与丙二酸二甲酯反应得到(7),7水解、脱羧和酯化得到[2-戊基-3-酮-1-环戊烯]基乙酸甲酯(8),8氢化得到二氢茉莉酮酸甲酯。  相似文献   
30.
Micro-lens (ML) and Micro-lens array (MLA) are important optical components widely used in many fields;Soft-lithography, a vital little process technology, has its unique performance to produce ML and MLA;The cylinder and spherical MLA of polymethyl methacrylate (PMMA) were successfully obtained by micromolding inSoft-lithography. Some suitable experimental parameters in the process were discussed, and the imaging property of the MLA was also studied simply.  相似文献   
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