首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 203 毫秒
1.
纳米复合材料是近年来化学、物理及材料科学研究最活跃的领域之一 .有机 -无机复合纳米微球的制备和性能研究是这一研究领域的一个重要分支 .有机 -无机复合纳米微球兼有有机材料、无机材料和纳米材料的特性 ,特别是“球形”结构使其具有微观的“滚动”特性而倍受摩擦学工作者的青睐 .目前聚合物纳米微球的摩擦学性能研究已取得了重要进展 [1~ 4 ] .段标等 [3,5]认为聚合物微球的润滑机理是在摩擦过程中 ,微球进入摩擦表面 ,因其弹性和球形 ,而起到一定的滚动作用 ;高载荷下 ,微球变形并在摩擦表面形成聚合物润滑膜 .然而有关聚合物 /无机…  相似文献   

2.
Pickering乳滴模板法制备有机/无机杂化的核壳微球越来越引起人们的关注,主要因为该方法制备出的微球具有以无机粒子为壳层的超粒子结构(supracolloidal structure),能够赋予微球独特的功能.胶体粒子在乳滴表面自组装形成有序的球面胶体壳,得到稳定Pickering乳液,固定乳滴表面的胶体粒子来制备核壳结构的微球或者以胶体粒子为壳层的微胶囊(colloidosome).本文综述了我们课题组以Pickering乳滴模板法制备超粒子结构有机/无机杂化微胶囊包括实心微球方面的工作.我们选择具有不同性能、种类的胶体粒子以及具有不同性质和功能的核材料,采用Pickering乳滴模板法,对吸附在乳滴表面的胶体粒子用不同的固定方法制备具有不同结构和性能的微球和微胶囊,利用基于多重Pickering乳液的聚合技术制备双纳米复合的超粒子结构多核聚合物微球.  相似文献   

3.
单分散SiO2/PS复合粒子的制备   总被引:5,自引:0,他引:5  
聚合物包覆无机物的核一壳结构复合粒子研究长期以来受到关注,源于其应用广泛.根据表面性质要求对无机相或者有机相表面进行功能化,可使得到的复合粒子与不同的应用体系相匹配.这类聚合物包覆无机物的有机/无机复合粒子,已在光学器件、分离、药品、农业、涂料等很多领域有广泛和潜在应用.本文制备这类复合粒子用于石油工业模型催化剂和助剂.  相似文献   

4.
在聚合物微球表面引入不同的基团 (如亲水性的羟基或羧基 ) ,可以改善聚合物微球的稳定性甚至生物相容性[1~ 4] ;利用表面基团可以把无机半导体微粒和功能有机分子以及生物分子引入聚合物微球[5~ 8] ,赋予聚合物微球特殊的性能 ,使其广泛应用于涂料、光电功能材料和生物医用材料等领域[9~ 15] .其中 ,表面带有阳离子的聚合物微球在絮凝剂、胶粘剂、水性涂料等方面已经得到广泛研究[16~ 2 0 ] .通常阳离子聚合物微球可以根据不同的需要利用常规乳液聚合、核壳乳液聚合等方法来合成 .亲水性和疏水性单体进行的无皂乳液聚合[2 1] ,因其能在…  相似文献   

5.
无机-聚合物纳米复合材料是将聚合物与一种或多种无机纳米粒子复合而成的一种材料,它同时具有无机纳米粒子和聚合物的优良特性,在许多重要技术领域具有广泛的应用前景.近20年来,无机-聚合物纳米复合材料的制备及应用备受关注[1~6].包括杂化微凝胶在内的纳米复合微球是无机-聚合  相似文献   

6.
中孔聚合物微球, 由于具有大的比表面积、小的孔径和孔容, 并有与外界环境介质相通的多孔孔道等特点而被应用于化妆品活性物和药物的缓释载体, 以提高药物及化妆品活性物的安全性和使用效率. 在早期的工作中, 我们报道了聚苯乙烯-二乙烯苯[P(St- DVB)]多孔聚合物微球的制备及其在化妆品活性物缓释中的应用[4]. [P(St-DVB)]多孔聚合物微球用于化妆品活性物的负载取得了较好的缓释效果, 但是此种多孔聚合物微球在负载如Pasorl-1789类易光解的活性组分时, 由于聚合物本身的透明性, 当在紫外线等强光照射下, 易光解的活性物就会发生分解, 最终导致失去活性作用, 因此纯的聚合物微球对易光解的活性物起不到良好的保护和缓释. 纳米二氧化钛由于具有良好的紫外吸收和折射能力及无毒等优点而广泛地应用于化妆品的物理防晒剂. 因此, 将纳米二氧化钛均匀地覆盖在多孔聚合物微球的表面可以在聚合物微球表面形成一道阻挡紫外线的屏障, 有效防止负载于多孔聚合微球内部的活性物的分解. 本文通过开环反应方法制备了二氧化钛接枝聚(苯乙烯-二乙烯苯)/马来酸酐中孔复合微球. 首先用氨基基团对纳米二氧化钛粒子表面进行修饰, 一方面防止其团聚, 另一方面使纳米粒子具有与聚合物微球产生共价键合的基团. 然后对多孔聚合物粒子表面进行马来酸酐修饰, 使其在保持原有的多孔形貌的基础上产生可与纳米粒子表面氨基开环反应的马来酸酐基团. 制得的多孔纳米复合微球经红外光谱、扫描电镜、透射电镜、X光衍射能谱及紫外分光光度计等表征, 结果表明, 纳米复合微球表面均匀地覆盖了纳米二氧化钛粒子, 复合粒子比纯聚合物粒子和未经修饰的二氧化钛粒子具有更好的紫外吸收效果. 将制得的复合微球用于对活性物Parsol 1789 (一种化妆品活性组分, 见光易氧化)的负载和缓释结果表明, 纳米复合多孔微球对负载于多孔网络中的活性物具有屏蔽紫外防止氧化和缓释作用.  相似文献   

7.
中孔聚合物微球,由于具有大的比表面积、小的孔径和孔容,并有与外界环境介质相通的多孔孔道等特点而被应用于化妆品活性物和药物的缓释载体,以提高药物及化妆品活性物的安全性和使用效率.在早期的工作中,我们报道了聚苯乙烯-二乙烯苯[P(St-DVB)]多孔聚合物微球的制备及其在化妆品活性物缓释中的应用[4].[P(St-DVB)]多孔聚合物微球用于化妆品活性物的负载取得了较好的缓释效果,但是此种多孔聚合物微球在负载如Pasorl-1789类易光解的活性组分时,由于聚合物本身的透明性,当在紫外线等强光照射下,易光解的活性物就会发生分解,最终导致失去活性作用,因此纯的聚合物微球对易光解的活性物起不到良好的保护和缓释.纳米二氧化钛由于具有良好的紫外吸收和折射能力及无毒等优点而广泛地应用于化妆品的物理防晒剂.因此,将纳米二氧化钛均匀地覆盖在多孔聚合物微球的表面可以在聚合物微球表面形成一道阻挡紫外线的屏障,有效防止负载于多孔聚合微球内部的活性物的分解.本文通过开环反应方法制备了二氧化钛接枝聚(苯乙烯-二乙烯苯)/马来酸酐中孔复合微球.首先用氨基基团对纳米二氧化钛粒子表面进行修饰,一方面防止其团聚,另一方面使纳米粒子具有与聚合物微球产生共价键合的基团.然后对多孔聚合物粒子表面进行马来酸酐修饰,使其在保持原有的多孔形貌的基础上产生可与纳米粒子表面氨基开环反应的马来酸酐基团.制得的多孔纳米复合微球经红外光谱、扫描电镜、透射电镜、X光衍射能谱及紫外分光光度计等表征,结果表明,纳米复合微球表面均匀地覆盖了纳米二氧化钛粒子,复合粒子比纯聚合物粒子和未经修饰的二氧化钛粒子具有更好的紫外吸收效果.将制得的复合微球用于对活性物Parsol1789(一种化妆品活性组分,见光易氧化)的负载和缓释结果表明,纳米复合多孔微球对负载于多孔网络中的活性物具有屏蔽紫外防止氧化和缓释作用.  相似文献   

8.
提出了一种在室温、大气环境等温和条件下通过酯化反应将端羧基聚合物链接枝到纳米SiO2微球表面从而制备有机/无机复合纳米微粒的新方法.该方法通过以下两个步骤得以实现,即第一,用3-环氧丙基三甲氧基硅烷对纳米SiO2微球表面进行改性处理,接着将引入到纳米SiO2表面的环氧基团转化为烷羟基基团;第二,通过引入到纳米SiO2微球表面的烷羟基与聚合物中的端羧基在室温下发生酯化反应,从而将聚合物接枝到纳米SiO2表面制得复合微球.利用XPS、FTIR、TEM和TGA等测试手段对纳米SiO2的改性过程以及聚合物接枝后得到的复合微球进行了表征.研究结果表明,该室温酯化接枝方法具有较高的接枝率,接枝到无机纳米微粒表面的聚合物占复合微球质量的55wt%~70wt%;接枝聚合物后,纳米SiO2微球的粒径从40nm增加到64~75nm,从而得到了以SiO2为核、以聚合物为壳的有机-无机复合微球.  相似文献   

9.
有机-无机纳米复合微球是指两种或两种以上的粒子经表面包覆或复合处理后形成的纳米尺度颗粒。近年来,有机-无机纳米复合微球在各领域具有广泛应用前景而备受关注。本文归纳了目前比较成熟的合成技术和先进工艺,将制备有机-无机纳米复合微球的方法分为溶胶-凝胶法、原位聚合法及其他实验方法,详细介绍了原位聚合法,分别从各类方法的特点和应用等方面进行详尽地分析和阐述,并对有机-无机纳米复合微球的实际应用做了比较系统的总结。最后,展望了有机-无机纳米复合微球的发展和前景。  相似文献   

10.
磁性纳米包覆微球的制备和磁性表征   总被引:3,自引:0,他引:3  
以胶体球形粒子为基体发展起来的纳米包覆(nano鄄coating)技术近来引起人们的极大兴趣,这种纳米包覆技术得到的产物常常被称为核壳粒子(core鄄shellparticles)。这种包覆一般是将纳米颗粒直接吸附在核微球上,或者包覆材料控制沉淀在核微球上[1,2]。这些复合微球常常展现出独特的光、电、力学、化学、催化等性质,因而具有广泛的研究和应用前景[3~7]。近十几年来,用做磁感应成像的超顺磁材料得到了深入的研究[4]。一方面,磁性颗粒的尺寸、电荷和表面成分对其应用有很大影响[8,9],另一方面,材料的磁学性质又主要取决于磁颗粒的大小[10]。Xu和Lindlar制备了含超顺磁颗粒的聚合物胶体颗粒,被用于构建超顺磁性的光子晶体[11,12]。在聚合物微粒上包覆氧化铁颗粒通常采用表面沉淀或表面改性官能团诱导反应包覆的方法。但这些方法不能很好控制复合微粒的均一性和表面平整性;Caruso的层鄄层包覆法(Layer鄄byLayer)虽然实现了磁性颗粒包覆[13],然而这种方法非常繁琐而不利于广泛应用。本文报道了一种新的合成磁性包覆颗粒的方法,即以聚合物微球为基核,通过非均相种子生长法包覆磁性纳米颗粒,并研究了...  相似文献   

11.
利用双层表面活性剂改性的Fe3O4磁流体为种子,通过乳液聚合法考察了苯乙烯或苯乙烯-丙烯酸对Fe3O4磁流体的包覆情况,并考察了丙烯酸浓度及加入时间对磁性微球表面羧基含量的影响.结果表明,丙烯酸的加入可以明显改善包覆效果,在反应进行2h后加入0.4mL的丙烯酸可以得到包覆效果好且表面羧基含量大的磁性微球.  相似文献   

12.
An ultrafast, facile, and efficient microwave hydrothermal approach was designed to fabricate magnetic Fe(3)O(4)/phenol-formaldehyde (PF) core-shell microspheres for the first time. The structure of the Fe(3)O(4)/PF core-shell microspheres could be well controlled by the in situ polycondensation of phenol and formaldehyde with magnetic Fe(3)O(4) clusters as the seeds in an aqueous solution without any surfactants. The effect of synthetic parameters, such as the feeding amounts of phenol, the dosages of formaldehyde, the reaction temperatures, and the microwave heating time, on the morphologies and sizes of the Fe(3)O(4)/PF microspheres were investigated in details. The phenol-formaldehyde shell is found to be evenly coated on Fe(3)O(4) clusters within 10 min of the irradiation. The as-prepared microspheres were highly uniform in morphology, and the method was found to allow the shell thickness to be finely controlled in the range of 10-200 nm. The properties of the composite microspheres were characterized by transmission electron microscopy (TEM), scanning electron microscopy (SEM), thermogravimetic analysis (TGA), Fourier transform infrared (FT-IR) spectra, X-ray diffraction (XRD), and vibrating sample magnetometer (VSM). The as-prepared Fe(3)O(4)/PF microspheres were monodisperse and highly dispersible in water, ethanol, N,N-dimethyformamide, and acetone, a beneficial quality for the further functionalization and applications of the Fe(3)O(4)/PF microspheres.  相似文献   

13.
首先将(马来酸酐-醋酸乙烯酯共聚物)核/(马来酸酐-二乙烯基苯共聚物)壳微球的壳层外表面酐基烷基溴化,然后将核溶蚀、壳层内表面酐基水解,制得内表面含亲水羧基、外表面含烷基溴、具有微孔(Barrett-Joyner-Halenda平均孔径14.9nm)的空心聚合物微球.以此空心微球为微反应器,使Fe2+和Fe3+通过球壁...  相似文献   

14.
In this paper, we report the preparation of γ-Fe(2)O(3) and Fe(3)O(4) magnetic hierarchically nanostructured hollow microspheres by a solvothermal combined with precursor thermal conversion method. These γ-Fe(2)O(3) and Fe(3)O(4) magnetic hierarchically nanostructured hollow microspheres were constructed by three-dimensional self-assembly of nanosheets, forming porous nanostructures. The effects of experimental parameters including molar ratio of reactants and reaction temperature on the precursors were studied. The time-dependent experiments indicated that the Ostwald ripening was responsible for the formation of the hierarchically nanostructured hollow microspheres of the precursors. γ-Fe(2)O(3) and Fe(3)O(4) magnetic hierarchically nanostructured hollow microspheres were obtained by the thermal transformation of the precursor hollow microspheres. Both γ-Fe(2)O(3) and Fe(3)O(4) hierarchically nanostructured hollow microspheres exhibited a superparamagnetic property at room temperature and had the saturation magnetization of 44.2 and 55.4emu/g, respectively, in the applied magnetic field of 20 KOe. Several kinds of organic pollutants including salicylic acid (SA), methylene blue (MB), and basic fuchsin (BF) were chosen as the model water pollutants to evaluate the removal abilities of γ-Fe(2)O(3) and Fe(3)O(4) magnetic hierarchically nanostructured hollow microspheres. It was found that γ-Fe(2)O(3) hierarchically nanostructured hollow microspheres showed a better adsorption ability over SA than MB and BF. However, Fe(3)O(4) hierarchically nanostructured hollow microspheres had the best performance for adsorbing MB.  相似文献   

15.
Selective detection of phosphopeptides from complex biological samples is a challenging and highly relevant task in many proteomics applications. In this study, a novel phosphopeptide enrichment approach based on the strong interaction of Fe(3)O(4)@Al(2)O(3) magnetic core-shell microspheres with phosphopeptides has been developed. With a well-defined core-shell structure, the Fe(3)O(4)@Al(2)O(3) magnetic core-shell microspheres not only have a shell of aluminum oxide, giving them a high-trapping capacity for the phosphopeptides, but also have magnetic property that enables easy isolation by positioning an external magnetic field. The prepared Fe(3)O(4)@Al(2)O(3) magnetic core-shell microspheres have been successfully applied to the enrichment of phosphopeptides from the tryptic digest of standard phosphoproteins beta-casein and ovalbumin. The excellent selectivity of this approach was demonstrated by analyzing phosphopeptides in the digest mixture of beta-casein and bovine serum albumin with molar ratio of 1:50 as well as tryptic digest product of casein and five protein mixtures. The results also proved a stronger selective ability of Fe(3)O(4)@Al(2)O(3) magnetic core-shell microspheres over Fe(3+)-immobilized magnetic silica microspheres, commercial Fe(3+)-IMAC (immobilized metal affinity chromatography) resin, and TiO(2) beads. Finally, the Al(2)O(3) coated Fe(3)O(4) microspheres were successfully utilized for enrichment of phosphopeptides from digestion products of rat liver extract. These results show that Fe(3)O(4)@Al(2)O(3) magnetic core-shell microspheres are very good materials for rapid and selective separation and enrichment of phosphopeptides.  相似文献   

16.
青霉素G酰化酶(PGA)是一种重要的工业生物催化剂,常用于以青霉素G为底物生产7-氨基去乙酰氧基头孢烷酸(7-ADCA)和6-氨基青霉烷酸(6-APA)等半合成β-内酰胺类抗生素.然而,PGA较差的稳定性和可重复使用性能限制了其在工业上的广泛应用.因此,将PGA固定在固体载体上是很有必要的,可以形成一种可重复使用的高性能的多相催化剂.用于生物酶固定化的良好载体应具备以下条件:(1)载体表面具有可用于与生物酶多点结合的高密度的官能团;(2)载体具有较大的比表面积以固定更多的生物酶.通常情况下,可以通过减小载体的粒径来增加其比表面积,然而,小粒径的载体很难从反应混合液中分离出来,造成固定化酶回收使用困难.为了将聚合物微球的优异固定化性能与磁性纳米粒子的独特顺磁性结合起来,我们制备了一种含环氧基团的顺磁性聚合物微球作为PGA的固定化载体.但由于Fe_3O_4纳米颗粒具有较高的表面能,在反相悬浮聚合反应过程中容易团聚成大颗粒,从而导致制备的顺磁性聚合物微球的磁体含量、表面形貌和粒径分布存在差异.此外,Fe_3O_4纳米颗粒与聚合反应单体之间的相容性不好,使得部分磁性颗粒不能很好地包埋于聚合物微球内部,影响固定化酶的活性和操作稳定性.本文以N,N′–亚甲基双丙烯酰胺为交联剂,以甲基丙烯酸缩水甘油酯和烯丙基缩水甘油醚为功能性单体,用反相悬浮聚合方法在SiO_2包覆的Fe_3O_4纳米颗粒表面成功制备出含环氧基团的顺磁性聚合物微球.用SEM,FT-IR,XRD,VSM和低温氮气吸附等手段对含环氧基团的顺磁性聚合物微球进行了表征.研究了SiO_2对Fe_3O_4纳米颗粒的包覆和Fe_3O_4/SiO_2纳米颗粒的数量对于固定化酶的初始活性和操作稳定性的影响.SiO_2在反相悬浮聚合过程中发挥重要作用,用SiO_2对Fe_3O_4纳米颗粒进行亲水性改性,有效改善了Fe_3O_4纳米颗粒与聚合反应单体的相容性,将其引入反相悬浮聚合体系中,可以制备得到球形度好、粒径分布均匀和超顺磁性的含环氧基团的顺磁性聚合物微球,其中当Fe_3O_4/SiO_2纳米颗粒的质量比为7.5%时制备的含环氧基团的顺磁性聚合物微球具有最好的PGA固定化性能.PGA通过其活性非必需侧链基团–氨基与顺磁性聚合物微球表面的环氧基团的共价结合来制备顺磁性固定化酶,该固定化PGA的初始活性为430 U/g(wet),在外加磁场的作用下容易回收使用,重复使用10次后可保留99%的初始活性,具有良好的热稳定性和酸碱稳定性,具有较好的工业应用前景.  相似文献   

17.
Li Z  Huang D  Fu C  Wei B  Yu W  Deng C  Zhang X 《Journal of chromatography. A》2011,1218(37):6232-6239
In this study, core-shell magnetic mesoporous microspheres with C18-functionalized interior pore-walls were synthesized through coating Fe(3)O(4) microspheres with a mesoporous inorganic-organic hybrid layer with a n-octadecyltriethoxysilane (C18TES) and tetraethyl orthosilicate (TEOS) as the silica source and cetyltrimethylammonia bromide (CTAB) as a template. The obtained C18-functionalized Fe(3)O(4)@mSiO(2) microspheres possess numerous C18 groups anchored in the interior pore-walls, large surface area (274.7 m(2)/g, high magnetization (40.8 emu/g) and superparamagnetism, uniform mesopores (4.1 nm), which makes them ideal absorbents for simple, fast, and efficient extraction and enrichment of hydrophobic organic compounds in water samples. Several kinds of phthalates were used as the model hydrophobic organic compounds to systematically evaluate the performance of the C18-functionalized Fe(3)O(4)@mSiO(2) microspheres in extracting hydrophobic molecules by using a gas chromatography-mass spectrometry. Various parameters, including eluting solvent, the amounts of absorbents, extraction time and elution time were optimized. Hydrophobic extraction was performed in the interior pore of magnetic mesoporous microspheres, and the materials had the anti-interference ability to macromolecular proteins, which was also investigated in the work. Under the optimized conditions, C18-functionalized Fe(3)O(4)@mSiO(2) microspheres were successfully used to analyze the real water samples. The results indicated that this novel method was fast, convenient and efficient for the target compounds and could avoid being interfered by macromolecules.  相似文献   

18.
A new method for the preparation of Fe(2)O(3) nanoparticle/SiO(2) microsphere composites is described, in which fine alpha-Fe(2)O(3) nanocrystals were prepared by forced hydrolysis of FeCl(3) aqueous solution. The structure and optical spectra of these alpha-Fe(2)O(3) nanocrystals have been studied. Their visible optical absorption can be enhanced by their adsorptions on the surface of SiO(2) microspheres and thereafter simple packing of these microspheres to the aggregated structures. The size-dependent photogenerated surface photovoltage spectra (SPS) of these composites were studied, and quantum confinement effects of the SPS properties were observed. The transport of photoinduced charges between nanocrystals with intrinsic electronic nature of confined states accounts for this phenomenon. These results are helpful in understanding the relationship among d-d transition and charge-transfer transition in transition metal oxides and find applications in photovoltaic devices.  相似文献   

19.
Magnetic poly(styrene-co-acrylic acid-co-acrylamide) microspheres were prepared by water-in-oil-in-water (W/O/W) miniemulsion polymerization of monomers in the presence of Fe3O4 nanoparticles. The copolymerizable monomers of acrylic acid and acrylamide were used not only to modify the surfaces of the microspheres with functional groups, but also to act as viscosity regulators to control the morphology and size of these microspheres. It was experimentally observed that the surfaces of these microspheres were functionalized with NH2 groups produced by copolymerization, the morphologies (sphere, ringlike, and one-hole) of the microspheres were controlled by the concentration of copolymerizable monomers, and all samples prepared were superparamagnetic. The possible mechanism of formation of these magnetic microspheres is also discussed.  相似文献   

20.
表面图案化磁性复合微球的原位制备与表征   总被引:2,自引:0,他引:2  
王公正  夏慧芸  张颖  彭世杰 《化学学报》2007,65(18):2051-2056
采用反相悬浮聚合法合成了丙烯酸(AA)含量不同的N-异丙基丙烯酰胺-丙烯酸共聚物P(NIPAM-co-AA)微凝胶, 并以其作为微反应器, 通过原位外源沉积法制备了一系列微米级、表面具有图案化结构的SiO2-Fe3O4-P(NIPAM-co-AA)磁性复合微球. 实验结果表明, 复合微球的表面结构与微凝胶的组成、Fe3O4和SiO2的沉积量有关. 在微球表面进行修饰, 可得到表面带有氨基等官能基团的磁性复合材料. 将这种功能化磁性微球用于识别生物大分子并进一步用于生物医学领域具有重要的意义.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号