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1.
表面光接枝聚合反应新进展   总被引:1,自引:0,他引:1  
表面性能对高分子材料应用至关重要,但多数聚烯烃材料表面惰性,需对表面进行改性或功能化.紫外光引发表面光接枝聚合反应具有诸多优势,因而获得广泛应用.作者以本实验室近年的研究为基础,结合这一领域国际上的部分重要研究成果,概述了实施表面光接枝聚合反应的一些新方法:控制,活性表面光接枝聚合、自引发光接枝聚合、暗区表面光接枝聚合、表面光接枝-交联聚合以及表面小分子光化学反应等.  相似文献   

2.
表面接枝聚合改性已经成为提升生物医用材料性能的最重要方法之一.参比其他活性接枝聚合方法,光引发活性接枝聚合因其独特的优势已被越来越广泛地应用于生物医用材料表面改性.根据光引发剂的类型,目前应用最多的光引发活性接枝聚合的引发体系主要有3种:光引发-转移-终止剂介导的聚合引发体系、二苯甲酮及其衍生物引发体系、硫杂蒽酮类引发体系.本文首先简要介绍了上述3种光引发活性接枝聚合体系的发展历程、接枝机理以及特点.同时结合本课题组相关研究工作,重点论述了光引发接枝聚合技术在3个不同生物医用领域的主要应用:(1)抗菌表面,利用光活性接枝的特点构建层状功能高分子刷,实现表面抗菌功能的阶段性需求.(2)免疫检测表面,使用光活性接枝方法构建层状功能高分子刷,解决检测灵敏度低以及蛋白干扰问题.(3)生物活性分子表面固定,利用可见光活性接枝聚合体系,实现酶在表面的固定化使用以及细胞表面修饰以提高细胞稳定性.最后展望了生物医用材料表面光引发活性接枝聚合研究的发展趋势.  相似文献   

3.
炭黑接枝是常用的炭黑表面改性方法。讨论了最新的炭黑接枝方法,主要包括二次接枝法、γ-射线辐射接枝、三氯乙酰基团与六羰基钼引发乙烯基单体聚合接枝,偶联接枝与聚合物交联及其它方法;并对接枝炭黑在新材料领域的臆用作了介绍。  相似文献   

4.
聚乙烯的表面光接枝改性研究进展   总被引:11,自引:0,他引:11  
综述了紫外光引发接枝改性聚乙烯表面的研究进展,包括光接枝聚合机理,改性方法,接枝链的结构和形态,影响因素等。  相似文献   

5.
纳米SiO2锚固光敏基团引发MMA光接枝聚合研究   总被引:1,自引:0,他引:1  
对纳米SiO2进行了锚固光引发剂的表面修饰,进而引发甲基丙烯酸甲脂(MMA)光接枝聚合制备有机/无机复合粒子.纳米SiO2粒子首先用氯化亚砜进行表面氯化,再与光引发剂2-羟基-4-(2-羟基乙氧基)-2-甲基苯丙酮(Irgacure2959)反应从而锚固上光引发剂.通过紫外光引发MMA在经过修饰过的纳米SiO2表面上进行表面光接枝聚合.采用IR、TGA和TEM等方法表征了接枝前后纳米粒子的变化,证明了表面接枝物的存在,并研究了不同反应条件对单体转化率、接枝率和接枝效率的影响.研究结果表明,搅拌对接枝过程的影响比较显著.TGA结果显示未搅拌聚合时接枝率只能达到比较小的程度,而在搅拌条件下180min内MMA的接枝率可达到110%.  相似文献   

6.
介绍了近年来碳酸钙表面接枝改性的研究进展,讨论了自由基接枝聚合、辐照接枝聚合和力化学表面接枝聚合及偶联剂预处理与辐照并用接枝聚合改性方法。其中重点讨论了最新研究的偶联剂预处理与辐照并用接枝改性纳米碳酸钙的方法。用此方法制备的聚合物/纳米碳酸钙纳米复合材料在其他力学性能基本不变的情况下,大幅度提高了其缺口冲击强度和断裂伸长率。指出了碳酸钙表面接枝改性应向着提高接枝单体量和采用弹性体单体方面发展。  相似文献   

7.
丙烯酰胺在炭黑表面接枝聚合研究   总被引:4,自引:0,他引:4  
利用Ce^4+和羟甲基化炭黑组成的氧化还原引发体系,探讨了丙烯酰胺在炭黑表面的自由基水溶液接枝聚合机理。研究表明:单体浓度、硝酸浓度和铈盐用量直接影响丙烯酰胺在炭黑表面的接枝聚合,FTI和TEM分析证明:改性炭黑表面存在着聚丙烯酰胺。改性炭黑粒子的Zeta电位值与未改性炭黑粒子相同,但它与水组成的分散体具有极好的分散稳定性。  相似文献   

8.
将γ-氨丙基三乙氧基硅烷(APTES)接枝到凹凸棒土(AT)表面,制得表面键合伯氨基的改性粒子AT-APTES;通过AT-APTES表面的伯氨基和过硫酸铵(APS)构成氧化-还原引发体系,采用无皂乳液法实现甲基丙烯酸甲酯(MMA)在AT表面接枝聚合,制得最高接枝率为29.4%的杂化粒子AT-g-PMMA;采用红外光谱(FTIR)、拉曼光谱(Raman)、透射电镜(TEM)以及热失重分析(TGA)等方法对杂化粒子AT-g-PMMA进行了表征;研究了主要配方及工艺条件对表面引发接枝聚合接枝率的影响.结果表明,伯氨基-过硫酸铵引发体系可以有效引发MMA在AT表面接枝聚合,由于引发点位于AT表面,故接枝率较高.本研究体系适宜的温度为65℃,单体MMA用量为水质量的6%,APS用量为单体质量的1%,此工艺条件下可有效减小均聚反应对接枝聚合反应的影响.先接枝到AT表面的聚合物对后续的接枝聚合反应产生抑制作用,接枝率越高,抑制作用越大.  相似文献   

9.
表面活性(可控)接枝聚合研究进展   总被引:3,自引:0,他引:3  
表面是材料与外界接触的窗口,材料的众多性质,如耐磨性、耐腐蚀性、生物相容性等均在很大程度上取决于表面的构成.可通过在材料表面接枝不同的聚合物链使之满足不同的需要.表面引发的活性(可控)聚合可得到分布均匀、厚度可控的接枝层,因而成为表面改性中的重要方法.本文介绍了一系列表面引发的活性(可控)聚合技术及其应用举例,对这一领域所取得的研究进展及现状作一综述.  相似文献   

10.
使用偶联剂γ-巯丙基三甲氧基硅烷(MPMS,KH-590),对微米级硅胶微粒进行了表面化学改性,制得了表面带有巯基的改性微粒MPMS-SiO2.使改性微粒MPMS-SiO2表面的巯基与溶液中的BPO构成氧化-还原引发体系,实现了油溶性单体甲基丙烯酸缩水甘油酯(GMA)在硅胶微粒表面的引发接枝聚合,制得了接枝度为26g/100g的接枝微粒PGMA/SiO2.采用红外光谱(FTIR)、扫描电镜(SEM)及热重分析(TGA)等方法对接枝微粒PGMA/SiO2进行了表征。在此基础上,重点研究了主要因素对巯基-BPO体系引发GMA接枝聚合的影响.研究结果表明,巯基-BPO体系引发的接枝聚合,由于活性位点位于固体表面,因此也是一种表面引发接枝法。与在固体微粒表面引入可聚合双键的"穿过接枝"("grafting through")法相比,巯基-BPO引发体系可更有效地实现油溶性单体的接枝聚合.为制得高接枝度的接枝微粒PGMA/SiO2,适宜的温度为55℃,适宜的BPO用量为单体的1wt%左右,适宜的单体浓度为10 wt%。  相似文献   

11.
近年来,纳米科技在高分子材料上的应用给高分子科学和材料的发展注入了新的活力.高分子材料表面微纳米结构与材料的性能密切相关,其微纳米结构结合高分子材料本身丰富多彩的特性,在材料科学、微电子学以及细胞生物学等方面都有重要的科学意义和应用价值.目前关于高分子材料表面微纳米结构的构筑已有大量报道,涉及的实验方法和材料非常广泛,大体上可以分为模板法和非模版法.在运用中往往需要综合利用高分子的各种特性和多种实验方法.本文以构筑方法分类,综述了近十几年来在高分子表面构筑微纳米结构的研究进展,对其应用前景做了简要介绍.  相似文献   

12.
Cotton fiber is a biodegradable material that possesses properties such as high specific area, adjustable shape, and hygroscopicity. In this work, organic polymer was directly in situ grown on the surface of cotton thread and packed into a poly(ether ether ketone) tube for online in‐tube solid‐phase microextraction. The novel strategy solves the problems like high backpressure and tedious optimization process of normal monolithic polymer‐based in‐tube solid‐phase microextraction capillary. The quaternary ammonium typed ionic liquid of 1‐allyl‐methylimidazolium chloride, 4‐vinylbiphenyl, and ethylene dimethacrylate were co‐polymerized and in situ grown on the surface of cotton thread as extraction phase. The solid‐phase microextraction tube showed excellent performance for the extraction of three nonsteroidal anti‐inflammatory drugs including ketoprofen, naproxen, and flurbiprofen due to the strong ion exchange and hydrophobic interactions. After online coupling with a high‐performance liquid chromatography system by six‐port valve, the method was applied for the quantitative analysis of nonsteroidal anti‐inflammatory drugs in human plasma samples showing good enrichment performance (enrichment factor between 263 and 279), high sensitivity, good linearity, and good reproducibility.  相似文献   

13.
Interfacial interactions and interphases play a key role in all multicomponent materials irrespectively of the number and type of their components or their actual structure. They are equally important in particulate filled polymer, polymer blends, fiber reinforced advanced composites, nanocomposites or biomimetic materials. Recognition of the role of the main factors influencing interfacial adhesion and proper surface modification may lead to significant progress in many fields of research and development, as well as in related technologies. Although the role and importance of interfaces and interphases are the same for all multicomponent materials, surface modification must be always selected according to the objectives targeted, as well as to the characteristics of the particular system. Efficient surface treatment or coupling alone might not achieve the desired goal, we must always keep in mind that an interphase forms always in such materials and the control of interphase properties must be part of the modification philosophy. The use of multiphase, multicomponent materials is expected to grow with a larger than average rate also in the future. It is important to keep the interdisciplinary nature of the area, since principles and techniques developed by one field may find application also in other areas.  相似文献   

14.
生物降解高分子作为一种重要的生物材料已经发展到第3代[1],实际应用的复杂性不仅要求高分子材料本身具有合适的降解性能、热性能、力学性能和加工性能等,而且还要求高分子材料具有能够刺激细胞生长、识别特定细胞等生物活性特征.高分子材料的这些生物活性主要是通过高分子材料  相似文献   

15.
Summary The procedure of polymer coating of preferably inorganic porous particle support materials for LC has been applied to the preparation of a new type of weak cationexchange phases. A special copolymer of butadiene and maleic acid could be immobilized on silica by cross-linking effected with radical starters such as peroxides or γ-radiation. The chromatographic properties of such materials proved to be excellent regarding efficiency, ion-exchange capacity and selectivity, as well as chemical stability also in comparison to other, commercially available, materials. Test measurements were successfully performed with ionic or ionizable inorganic and organic solutes over the entire applicable pH-range of the mobile phase which also contained organic modifiers. A special feature of the new type of cation-exchange phase is the minor contribution of hydrophobic (lipophilic) interaction to the retention mechanism besides the actual ion-exchange process.  相似文献   

16.
 Silica hydride is a recent development in chromatographic support materials for high performance liquid chromatography (HPLC) where hydride groups replace 95% of the silanols on the surface. This conversion changes many of the fundamental properties of the material as well as the bonded stationary phases that are the result of further chemical modification of the hydride surface. Some unique chromatographic properties of hydride-based phases are described as well as some general application areas where these bonded materials may be used in preference to or have advantages not available from typical stationary phases. The fabrication, properties and applications of etched chemically modified capillaries for electrophoretic analysis are also reviewed. It is shown that the etching process creates a surface that is fundamentally different than a bare fused silica capillary. The new surface matrix produces unique electroosmotic flow properties and is more compatible with basic and biological compounds. After chemical modification of the surface, the bonded organic moiety (stationary phase) contributes to the control of migration of solutes in the capillary. Both electrophoretic and chromatographic processes take place in the etched chemically modified capillaries leading to a variety of experimental variables that can be used to optimize separations. A number of examples of separations on these capillaries are described.  相似文献   

17.
Organic surfaces play a major role in materials science. Most surfaces that we touch in our daily lives are made from organic materials, e.g., vegetables, fruit, skin, wood, and textiles made from natural fibers. In the context of biology, organic surfaces play a prominent role too, proteins docking onto cell surfaces are a good example. To better understand the characteristics of organic surfaces, including physico-chemical properties like wettability or chemical reactivities and physical properties like friction and lubrication, a structurally well-defined model system that can be investigated with numerous analytical techniques is desirable. In the last two decades, one particular system, self-assembled monolayers or SAMs, have demonstrated their suitability for this purpose. In particular, organothiols consisting of an organic molecule with an attached SH-group are well suited to fabricating structurally well-defined adlayers of monolayer thickness on gold substrates using a simple preparation procedure. These ultrathin monolayers expose an organic surface with properties that can be tailored by varying the type of organothiol employed. After a short introduction into the preparation of SAMs, this article provides an overview of the possibilities and limitations of organic surfaces exposed by Au-thiolate SAMs. Applications are as diverse as the metallization of organic surfaces, a fundamental problem in materials science, and the fabrication of surfaces that resist the adsorption of proteins. In addition to a number of different case studies, we will also discuss the most powerful analytical techniques needed to characterize these important model systems.  相似文献   

18.
This review summarizes recent developments made in the incorporation of functional materials into organic polymer monoliths, together with new monolithic forms and formats, which enhance their application as supports and stationary phase materials for sample preparation and chromatographic separations. While polymer monoliths are well‐known supports for the separation of large molecules, recent developments have been made to improve their features for the separation of small molecules. The selectivity and performance of organic polymer monoliths has been improved by the incorporation of different materials, such as metal‐organic frameworks, covalent organic frameworks, or other types of nanostructured materials (carbon nanohorns, nanodiamonds, polyoxometalates, layered double hydroxides, or attapulgite). The surface area of polymer monoliths has been significantly increased by polymer hypercrosslinking, resulting in increased efficiency when applied to the separation of small molecules. In addition, recent exploration of less conventional supports for casting polymer monoliths, including photonic fibres and 3D printed materials, has opened new avenues for the applications of polymer monoliths in the field of separation science. Recent developments made in these topics are covered, focusing on the strategies followed by the authors to prepare the polymer monoliths and the effect of these modifications on the developed analytical applications.  相似文献   

19.
金属有机框架材料是由金属离子节点和有机配体通过配位键连接形成的具有序多孔骨架的材料, 因其具有比表面积大、 孔隙可调及表面性质可控等优点而备受关注. 通过对有机配体和金属离子进行选择及对金属有机框架材料进行后修饰处理, 可实现对金属有机框架材料表面性质的调控, 以提升其选择性吸附及特异性识别等性能, 进而拓展其在分离分析等领域的应用. 本文从金属有机框架材料的表面性质调控出发, 介绍了其表面性质与分离分析性能的关系, 总结了近年来该领域的代表性工作, 并展望了金属有机框架材料在分离分析领域的应用前景.  相似文献   

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