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1.
综述了近年来聚(β-羟基丁酸酯)和β-羟基丁酸酯-β-羟基戊酸酯共聚物经共混改性所得到的共混物的相容性、结晶性、热性能、加工性能、力学性能和生物降解性能。  相似文献   

2.
总结了近年来聚(β-羟基丁酸酯)、β-羟基丁酸酶—β-羟基戊酸酯共聚物与可生物降解高分子共混物的相容性、结晶性、热性能、加工性能、力学性能和生物降解性能。通过共混。聚(β-羟基丁酸酯)与—β-羟基丁酸酶卢羟基戊酸酯共聚物的性能得到显著改善。  相似文献   

3.
将聚乳酸(PLA)、聚碳酸酯(PPC)及β-羟基丁酸酯与β-羟基戊酸酯共聚物(PHBV)以溶液浇注法制备了各种不同比例的共混膜(60/20/20,40/20/40,40/40/20,20/60/20,20/40/40,20/20/60)。采用示差扫描量热分析(DSC)和热重分析(TG)研究了共混物的热性能,采用万能材料试验机研究了共混物的力学性能,通过土壤悬浊拟环境降解实验和扫描电子显微镜(SEM)研究了共混材料的环境生物降解性能。结果显示,该三元共混体系是部分相容的体系,PLA增加了材料的强度,PPC增加了材料的断裂伸长,PHBV则提高了材料的环境生物降解速率,三者优势互补,是一种有应用前景的生物降解共混体系。  相似文献   

4.
通常,高抗冲聚苯乙烯(HIPS)为多相体系,由连续聚苯乙烯(PS)相和分散的聚丁二烯(PB)颗粒组成。PB含量一般为5~15%,粒径范围为0.5~10μm,PB颗粒是交联的,同时含有接枝的PS,其内部结构由制备工艺决定。HIPS力学性能与其制备工艺、PB含量、PB分子结构、相区尺寸及内部结构密切相关。PS和PB嵌段共聚物(SBS)通常为热塑弹性体,由于PS段和PB段的不相容性而呈现微相分离的结构特征。SBS常用于与其它聚合物共混以增加后者的韧性。本工作研究了HIPS/SBS共混物的形态结构和力学性能。  相似文献   

5.
PVC/EVA(-14)及 PVC/EVA(-14)-g-VC的等速升温Brabender塑化曲线上有两个扭矩峰,分别标志着EVA和PVC的塑化,对应着共混形态经历的三个变化:(1)EVA塑化——PVC粉粒破碎;(2)EVA呈连续相——PVC集结粒子解体;(3)EVA呈分散相——PVC初级粒子熔化。聚合投料比(VC/EVA)越小,EVA-g-VC的塑化温度和熔体粘性越高,两个扭矩峰靠得越近。实验结果表明,EVA-g-VC与EVA相比,不仅与PVC有更好的相容性,而且有较好的均匀可混性。冲击强度的测定结果表明:EVA连续网——PVC初级粒子结构具有较高的冲击强度。VC/EVA较小时所得EVA-g-VC改性的PVC可在较宽的加工温度范围保持EVA连续网结构和较高的冲击强度。  相似文献   

6.
聚(3-羟基丁酸酯)(poly(3-hydroxybutyrate),PHB)和聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(poly(3-hydroxybutyrate-co-3-hydroxyvalerate),PHBV)的结晶速率慢,二次结晶现象严重导致其在室温存放过程中性能劣化。通过拉伸诱导形成β晶可以有效抑制二次结晶现象,使机械性能提高并在室温下稳定。本文综述了PHB与PHBV的β晶结构及形成与转化机制的研究现状。重点概述了β晶结构对力学性能的影响及其增韧机制的研究进展,简要概述了β晶结构与降解性能之间的关系,最后对β晶结构研究现状中存在的空白进行了分析。  相似文献   

7.
DSC和FTIR测试表明,结晶/非晶共混体系聚(β-羟基丁酸酯)(PHB)/聚双酚A羧基醚是部分相容的。熔融结晶退火可以大大提高共混物的结晶度,增加其相容性。75/25组分PHB相结晶度最大,50/50组分晶面微晶尺寸最大。  相似文献   

8.
 用透射电子显微镜方法研究了聚丙烯(iPP)和氯化聚乙烯(CPE)共混物溶液浇铸膜的形态结构.共混物中CPE含量≤70%时不妨碍iPP球晶两种结构(交叉结构和条状结构)区域的生成.在CPE含量≥80%时,分散相iPP形成近乎直角(80°)交叉的稀疏的片晶网络.在共混物的全组成范围内,CPE结晶在iPP片晶上附生生长,二者结晶C轴的交角为50°  相似文献   

9.
用FTIR和DSC研究了PHBV及其与聚碳酸亚丙酯(PPC)熔融共混样的熔融结晶行为和等温结晶动力学.结果表明,PHBV与PPC熔融共混过程中发生了酯交换反应,两组分间存在一定的相互作用.PPC虽然能降低PHBV结晶折迭链的表面自由能,但同时也能够降低PHBV的结晶度、球晶径向生长速率、平衡熔点和结晶能力.  相似文献   

10.
DSC和FTIR测试表明,结晶/非晶共混体系聚(β-羟基丁酸酯)(PHB)/聚双酚A羟基醚(PBHE)是部分相容的.熔融结晶退火可以大大提高共混物的结晶度,增加其相容性,75/25组分PHB相结晶度最大,50/50组分(020)、(130)晶面微晶尺寸最大.SAXS研究表明,纯PHB的中间层约为1.5nm,片层厚约4.0nm;共混物的中间层在2.0nm左右,片层厚在5.0—7.2nm之间,50/50组分片层最厚.75/25组分晶相和非晶相的密度差最大.  相似文献   

11.
Some properties of poly(vinyl chloride)- g-polyisobutylene graft copolymers are reviewed.

The heat stability of polyvinyl chloride)-g-polyisobutylene (PVC-g-PIB) is shown in Fig. 1. There is improvement in heat stability after grafting. We think that the removal of the variety of defect sites reduces the thermal sensitivity of this material.

Another interesting observation was one which is difficult to express quantitatively. This was that the equipment after the experiment was extremely clean, with little, if any, cleaning necessary after completion of the extrusion experiment.  相似文献   


12.
Abstract

The microstructure of ethylene/vinyl chloride (E/VC) copolymers, prepared by partial reduction of PVC with a variety of reagents, was analyzed using carbon-13 NMR spectroscopy. The effect of the reduction mechanism on the microstructure and stereochemistry of the copolymers was studied. The reduction with tri-n-butyltin hydride (TBTH) produced copolymers with higher degrees of alternating monomer units than copolymers obtained by reduction with lithium aluminum hydride (LAH). Reduction with lithium triethylborohydride (SH) produced blockier copolymers. The correlation of monomer sequence and distribution with thermal stability and dehydrochlorination rate in these copolymers was investigated. Partial reduction of PVC by all reagents was shown to produce E/VC copolymers with improved thermal stability compared to PVC. In the series of copolymers produced by TBTH reduction, improvement in thermal stability increased with an increase in E content and reached a maximum at 40% E content but dropped steadily thereafter. All copolymers from SH reduction showed a considerable drop in their dehydrochlorination rate compared to PVC. The stabilization effect reached a maximum at ~7 mol% E content and stayed constant throughout.  相似文献   

13.
多孔球状淀粉接枝共聚物的合成及其性质研究   总被引:13,自引:0,他引:13  
报道了一种多孔球状淀粉接枝共聚物的合成。此球有很强的机械性能,良好的稳定性和较高的致孔率,平均孔径约为19.5nm,以其为载体固定化糖化酶活力为1462IU/g干胶,比活为29.31IU/mg蛋白。  相似文献   

14.
Sorption of metal ions with a cation exchanger based on a graft polycaproamide copolymer was studied, and the sorption power of the material was evaluated.  相似文献   

15.
PEEK-PEDEK嵌段共聚物的合成与热性能研究   总被引:3,自引:0,他引:3  
在亲核取代基础上通过分步加料法合成了一系列联苯含量不同的PEEK-PEDEK嵌段共聚物,并对其热性能与结晶行为进行了初步研究.结果表明,联苯的引入明显提高了聚合物的玻璃化转变温度;聚合物的熔点随联苯含量的增加呈先下降后上升的变化规律,体系在联苯含量为20%处出现最低共熔点.  相似文献   

16.
Summary: The cationic ring opening polymerization of 2-ethyl-2-oxazoline (EtOx) was applied for the synthesis of methacrylate end-functionalized well-defined macromonomers that could be polymerized in a controlled manner using reversible addition-fragmentation chain transfer polymerization. The obtained comb polymers revealed lower critical solution temperature behavior in aqueous solution. The cloud points of these solutions could be tuned in a range from 35 °C to 85 °C by the incorporation of hydrophobic methyl methacrylate comonomer in varying amounts into the graft copolymers whereas copolymerization with methacrylic acid rendered temperature and pH sensitive copolymers. Thermo-gravimetric analysis showed a two-step decomposition of the graft copolymers and differential scanning calorimetry revealed glass transition temperatures that are significantly lowered in comparison to linear PEtOx.  相似文献   

17.
张勇杰  李化毅  曲敏杰  冯钠  杨威  张翀 《化学进展》2016,28(11):1634-1647
实现聚烯烃功能化是制备高性能聚烯烃材料、拓展聚烯烃应用的重要手段,几十年来得到了学术界及工业界的广泛关注。聚烯烃接枝共聚物作为一类重要的功能化聚烯烃,包含聚烯烃链段(PE、PP等)及功能化聚合物链段(PS、PMMA、PEG等),因而在提高功能单元含量的同时能保持聚烯烃单元优异的结晶、加工性能。结构明确的聚烯烃接枝共聚物,具有结构参数可控、综合性能可调的特点,对于认识聚合物材料结构-性能关系、拓展聚烯烃应用范围具有重要的学术和实际意义。聚烯烃接枝共聚物的合成方法可以分为三种类型:“共聚接枝(graft-through)”、“引出接枝(graft-from)”、“偶联接枝(graft-onto)”。前两种合成方法往往涉及烯烃配位聚合与其他聚合方式的机理转化过程;其中,反应性聚合物中间体作为大分子引发剂、大分子RAFT试剂、大分子单体参与接枝反应,实现接枝共聚物的可控制备。第三种方法思路简单明确,即利用聚烯烃侧基反应性基团与其他聚合物反应性端基之间的高效偶联反应实现接枝共聚物制备。本文从合成、结构及性能三方面较为全面地综述了结构明确聚烯烃接枝共聚物的研究进展,着重讨论了新兴合成方法及相应接枝共聚物的潜在应用。  相似文献   

18.
丁苯橡胶/聚丙撑碳酸酯弹性体的结构与性能   总被引:4,自引:0,他引:4  
聚丙撑碳酸酯(PPC)是由CO2和环氧丙烷在聚合物负载的双金属催化剂作用下共聚而成的一类新型高分子材料[1],其结构式如下:OHCH2CHCH3OCOOnCH2CHCH3O]mCNOoOH它的广泛应用对于环境保护和新资源开发具有实际意义.在...  相似文献   

19.
Abstract

Graft copolymers with uniform polyoxyethylene (PEO) side chains were synthesized by transesterification of poly(methyl, ferf-butyl fumarate) (PMtBF) or poly(methyl, tert-butyl fumarate-co-styrene) poly-(MtBF-co-St) with potassium alkoxide of PEO monoether. The grafting efficiency increased with enhanced alkoxide reactivity, but the main factor in the ester exchange proved to be the structure of the backbone. This effect was ascribed to the thermodynamic incompatibility between fumaric polymers and PEO. The polymers were characterized by spectral methods, GPC, and DSC. In THF the graft copolymers comprising a polyfumarate backbone with PEO side chains eluted at higher elution volumes than did the backbone homopolymers. In benzene their intrinsic viscosities were lower than those of the backbones. In aqueous eluents, micelles were detected, and their aggregation number depended on the composition of the copolymer and the eluent.  相似文献   

20.
A series of biodegradable cellulose/chitin blend membranes were successfully prepared from blend solution of cellulose and chitin in 9.5 wt% NaOH/4.5 wt% thiourea aqueous solution coagulating with 5.0 wt% (NH4)2SO4. The influence of chitin content on the morphology and structure of the membranes was studied by scanning electron microscopy, environmental scanning electron microscopy and wide-angle X-ray diffractometry, as well as Fourier transform infrared spectroscopy. Using double-cell method and solution depletion method, the permeability and partition coefficients of three model drugs (ceftazidine, cefazolin sodium, and thiourea) were determined in phosphate buffer solution to clarify the diffusion mechanism governing transport of solutes in these membranes. Diffusion coefficients were calculated from the permeability and partition coefficients in terms of Fick's law. The effects of the chitin content, pH, ionic strength, molecular size and temperature on the drug diffusion were also studied. Our results revealed that all of the membranes had a porous-like structure. The introduction of chitin exhibited great influence on the morphology and crystal structure of the blend membranes, resulting in a significant different permeability. For the first time, a dual diffusion mechanism with some hindrance of molecular diffusion via polymer obstruction was employed to explain the transport of drugs in the membranes.  相似文献   

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