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1.
单分散三聚氰胺甲醛微球的制备   总被引:5,自引:0,他引:5  
采用分散聚合法制备了单分散三聚氰胺甲醛(MF)微球,考察了反应物摩尔比、pH值、分散剂、温度及反应时间等因素对生成MF微球粒径及其分布的影响,并对MF微球在盐酸中的溶解性进行了研究。实验结果表明:当MF交联度较低时,可以溶解于pH<1.7的盐酸,因此可用作逐层自组装制备空腔微球的模板。  相似文献   

2.
聚乙二醇接枝聚乳酸的自组装纳米微球的制备及性能   总被引:1,自引:0,他引:1  
王彬  潘君  刘颖  糜丽  张廷秀 《化学学报》2008,66(4):487-491
对制备的新型聚乙二醇(PEG)接枝聚乳酸(PLA)在水中的自组装性能进行研究, 探讨其作为纳米药物载体的可行性和稳定性. 目测法得到其溶解度为(2.16~4.32)×10-2 mg•mL-1; 荧光法得到聚合物的临界胶束浓度为1.12×10-3 mg•mL-1; 透射电子显微镜观察显示该聚合物在水中的自组装聚集体为纳米级球形; 动态激光光散射测试微球的粒径和Zeta电位发现, 在微球的制备过程中, 聚合物的亲/疏水性比例、水相介质及水溶液的pH值对它影响显著; 而制备后, 稀释和冷冻对它无显著影响, 改变微球的环境pH值至酸性, 出现聚集, 至碱性无影响. 研究结果显示, 该聚合物在水和磷酸钠盐缓冲液中可形成稳定的纳米微球, 通过微球的制备条件和存在环境可控制其粒径和Zeta电位, 因此根据应用需要, 通过控制其粒径和Zeta电位, 可能提高微球的在体血液循环时间并实现靶向缓释.  相似文献   

3.
壳聚糖修饰PLGA阳离子型纳米微球的制备与表征   总被引:7,自引:1,他引:6  
采用单乳化-溶剂(O/W)挥发技术制备表面带正电荷的壳聚糖(CHS)修饰聚乙/丙交酯(PLGA)纳米微球(PLGA/CHS), 通过正交试验优化了纳米微球的制备条件. 结果表明, 微球粒径可控制在150~200 nm内, 在pH=4时, 纳米微球表面电位最高为55 mV. 影响微球粒径的主要因素是聚合物的浓度, CHS的分子量和浓度以及介质的pH值对微球表面电位也有明显影响. 制备粒径较小而表面电位较高的PLGA/CHS纳米微球条件为: ρ(CHS)=3 mg/mL, ρ(PLGA)=10 mg/mL, Vo/Va=1/4. SEM图像显示经CHS修饰的PLGA的纳米微球形状规整, 荧光显微观察和XPS分析结果证实CHS包覆于微球表面.  相似文献   

4.
卫兰  蔡春华  林嘉平 《高分子学报》2011,(12):1461-1469
将表面带正电荷的壳聚糖(CS)微球和表面带负电荷的聚(L-谷氨酸)-b-聚氧化丙烯-b-聚(L-谷氨酸)(GPG)胶束共混,制备了CS/GPG聚集体水溶液体系.通过改变CS/GPG的共混比例,研究了CS微球和GPG胶柬形成稳定CS/GPG聚集体水溶液体系的配比范围,并对其粒径分布和表面电位进行了表征.在此基础上,将CS...  相似文献   

5.
陈韩婷  樊晔  方云 《物理化学学报》2001,30(7):1290-1296
从N-异丙基丙烯酰胺(NIPAM)和丙烯酸(AA)单体合成了一种全亲水无规共聚物P(NIPAM-co-AA),实验发现该聚合物在水相中可以产生pH或温度双重刺激响应性自组装. 采用透射电子显微镜(TEM)观察了自组装体的形貌,采用动态光散射(DLS)和静态光散射(SLS)观察了其粒径及粒径分布. 测定了该聚合物水溶液的最低临界溶解温度(LCST)及其zeta 电位随pH的变化,通过分析NIPAM和AA两种链节的质子化状态随温度和pH变化的趋势,阐释了其在水相中产生双重响应性自组装的推动力;并结合傅里叶红外(FT-IR)光谱测定自组装体表面富集基团的结果,进一步阐释了不同环境下自组装体的微结构. 这类全亲水无规共聚物的合成方法简单,具有pH和温度双重响应性,其全水相中的刺激响应性自组装行为在药物释放等方面具有潜在的应用价值.  相似文献   

6.
从N-异丙基丙烯酰胺(NIPAM)和丙烯酸(AA)单体合成了一种全亲水无规共聚物P(NIPAM-co-AA),实验发现该聚合物在水相中可以产生pH或温度双重刺激响应性自组装.采用透射电子显微镜(TEM)观察了自组装体的形貌,采用动态光散射(DLS)和静态光散射(SLS)观察了其粒径及粒径分布.测定了该聚合物水溶液的最低临界溶解温度(LCST)及其zeta电位随pH的变化,通过分析NIPAM和AA两种链节的质子化状态随温度和pH变化的趋势,阐释了其在水相中产生双重响应性自组装的推动力;并结合傅里叶红外(FT-IR)光谱测定自组装体表面富集基团的结果,进一步阐释了不同环境下自组装体的微结构.这类全亲水无规共聚物的合成方法简单,具有pH和温度双重响应性,其全水相中的刺激响应性自组装行为在药物释放等方面具有潜在的应用价值.  相似文献   

7.
采用反相悬浮聚合法制备了甲基丙烯酸羟乙酯(HEMA)与N-乙烯基吡咯烷酮(NVP)的交联共聚微球HEMA/NVP,然后采用"接出"法,实施了甲基丙烯酸(MAA)在交联微球表面的接枝聚合,制得了接枝微球PMAA-HEMA/NVP.以溶菌酶(LYZ)为模型碱性蛋白,深入研究了接枝微球PMAA-HEMA/NVP对碱性蛋白的吸附性能与吸附机理.测定了微球PMAA-HEMA/NVP的zeta电位,考察了PMAA接枝度、介质pH值及离子强度等因素对体系吸附性能的影响.结果表明,在较大的pH范围内,接枝微球PMAA-HEMA/NVP的zeta电位为绝对值较大的负值,即其表面携带有高密度的负电荷.在强静电相互作用的驱动下,接枝微球PMAA-HEMA/NVP对溶菌酶表现出很强的吸附能力.随介质pH值的增高,接枝微球对溶菌酶的吸附容量呈现先增大后减小的变化趋势,在与溶菌酶等电点接近的pH值处(pH=9),具有最大的吸附容量(90mg.g-1);离子强度对接枝微球的吸附能力也有较大的影响,当pH9时,溶菌酶吸附容量随NaCl浓度的增高而减小;当pH9时,吸附容量随NaCl浓度的增高而增大.  相似文献   

8.
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   

9.
在20~70℃范围内,用垂直沉积的方法可使表面富含羧基的单分散交联聚合物微球在不同的基底上快速自组装成三维有序的胶体晶.不同粒径的微球形成的胶体晶其光禁带峰位不同,因此可调控不同波长的光在胶体晶中的传播.利用紫外-可见光谱研究了胶体晶的光禁带峰位与组成其微球粒径之间的关系.结果表明,随着构成胶体晶微球粒径的增大,胶体晶光禁带峰位发生了红移,而随着入射光角度的增大,胶体晶的光禁带峰位发生了蓝移.利用原子力显微镜和扫描电子显微镜研究了其它条件对聚合物微球有序排列的影响,发现聚合物微球在pH值为3.0~13.0范围内可以形成三维有序自组装胶体晶.这是由于在不同的pH值下,聚合物微球表面发生羧基化及去羧基化反应,导致在自组装过程中微球之间和微球与介质之间作用力的变化  相似文献   

10.
CS/TPP纳米微胶囊的制备及其载药性能   总被引:5,自引:0,他引:5  
利用离子凝胶法, 以三聚磷酸钠(TPP)为交联剂, 由壳聚糖(CS)制备了CS/TPP纳米微胶囊. 用红外光谱仪、扫描电镜和粒径分析仪进行了表征, 并以牛血清蛋白(BSA)作为模型药物, 考察了所制备的CS/TPP纳米微胶囊的包载和缓释性能. 结果表明, CS/TPP纳米微胶囊的红外光谱相对于CS和TPP的红外光谱发生了很大变化, 说明CS和TPP通过正负电荷吸引聚合成囊; 粒径分析表明, 离子凝胶法可以得到粒径约430 nm的均匀分散的壳聚糖纳米微胶囊, 经冷冻干燥后粒径变为300 nm左右; 微胶囊包封率最高可达79.74%, 模型药物的持续释放时间可达7 d以上.  相似文献   

11.
Using the surface charged and acid dissolvable melamine formaldehyde (MF) microspheres as sacrificial hard templates, silica coated MF core?Cshell composite microspheres, denoted as MF@SiO2, were synthesized via a surfactant-assisted sol?Cgel process by using tetraethyl orthosilicate (TEOS) as silica source. Hollow SiO2 spheres with mesoporous shells were then obtained after selective removal of the MF cores and the pore directing surfactant by hydrochloric acid etching or calcinations in air. Interesting shrinkage phenomena were observed in both the hollow products derived from hydrochloric acid etching and calcinations. The influence of the ratio of MF sphere to TEOS and the removal method of the MF core on the size of the hollow spheres, the shell thickness and the shell surface roughness have been studied. The composition, the thermal stability, the morphology, the surface area and pore size distribution, the wall thickness and adsorption properties of the hollow spheres derived from hydrochloric acid etching and calcinations were also investigated and compared based on the FTIR, SEM, TEM, TGA, Nitrogen adsorption?Cdesorption and spectrophotometer techniques or measurements.  相似文献   

12.
以三聚氰胺甲醛(MF)微粒为模板,采用逐层静电自组装技术交替吸附聚苯乙烯磺酸钠(PSS)和聚烯丙基胺盐酸盐(PAH),得到具有核壳结构的复合式微球,然后通过pH=1的盐酸溶液除去中心模板,得到直径约为3~4μm的空腔胶囊.使用藻红蛋白作为探针分子,通过比较空腔胶囊装载前后荧光强度的变化,发现pH在4~5之间时,胶囊呈现最大的蛋白装载量.pH在6~10的范围内,藻红蛋白在胶囊上的装载量几乎不变.pH3时,装载能力很差.此外,通过荧光共聚焦显微镜对不同pH条件下的蛋白装载规律进行了成像分析.一部分藻红蛋白在pH=4的条件下通过扩散进入了胶囊的内部,而pH=7的条件下,藻红蛋白不进入胶囊内部,而是吸附在表面.  相似文献   

13.
A submicrometer-scaled polystyrene/melamine-formaldehyde hollow microsphere composite was prepared by self-assembling of sulfonated polystyrene (SPS) latex particles at the interface of emulsion droplets and then being fixed in place using a hard melamine-formaldehyde (MF) composite layer. For control-released purposes, the influential factors that control the size and uniformity of the packed-droplets and the permeability of the composite shell, including the initial particle location, the hydrophilicity and the size of colloidal templates, the oil phase solvent and reserving time of emulsions after the addition of MF prepolymer, were further studied. Relatively uniform sized particle packed-droplets with an average diameter of 10 microm were obtained. The assembled SPS particles kept ordering and minimal conglutination after the preparation of composite microspheres, which allows of controlling the permeability from the interstices between the particles. Porous-mesh-structured MF composite layer was formed to further control the permeability. The morphology of emulsions and composite microspheres were characterized by optical microscopy, scanning and transmission electron microscopy.  相似文献   

14.
Polyelectrolyte multilayer microcapsules were used as templates to prepare monodisperse poly(ethylene glycol) (PEG) hydrogel microspheres, which can react with amine-bearing molecules.  相似文献   

15.
以弱阳离子交换聚合物微球(WCX)为模板、N-三甲氧基硅基丙基-N,N,N-三甲基氯化铵(TMSPTMA)为结构导向剂、四乙氧基硅烷(TEOS)为硅胶前驱体,在三乙醇胺弱碱催化作用下,水解缩合形成有机聚合物与二氧化硅复合微球,将此复合微球煅烧后得到大孔二氧化硅微球。探索了不同反应条件对二氧化硅微球的形貌、表面结构和分散性的影响;当TMSPTMA、TEOS与三乙醇胺的体积比为1∶2∶2时可以得到孔径在50~150 nm之间、粒径在2μm左右的硅胶微球。对所制备的大孔硅胶微球表面进行C18(十八烷基二甲基氯硅烷)键合修饰,然后将键合的填料装填到50 mm×4.6 mm的色谱柱中,考察了其对常见的几种标准蛋白质和市售大豆分离蛋白质的分离效果,结果显示这种填料在高效液相色谱蛋白质分离中具有一定的潜力。  相似文献   

16.
Biodegradable chitosan hollow microspheres have been fabricated by employing uniform sulfonated polystyrene (PS) particles as templates. The chitosan was adsorbed onto the surface of the sulfonated polystyrene templates through the electrostatic interaction between the sulfonic acid groups on the templates and the amino groups on the chitosan. Subsequently, the adsorbed chitosan was crosslinked by adding glutaraldehyde. After the removal of the sulfonated polystyrene core, chitosan hollow microspheres were obtained. The longer the sulfonation time used, the smaller the size of the hollow particles and the thicker the chitosan wall obtained. Fourier transform infrared spectrometry was used to characterize the component of the microspheres. The morphologies of the PS templates and the chitosan microspheres were observed by transmission electron microscopy and scanning electron microscopy. The controlled release behavior of the chitosan hollow microspheres was also primarily investigated.  相似文献   

17.
Facile strategy was developed for the fabrication of the monodisperse superparamagnetic pH‐sensitive single‐layer chitosan (CS) hollow microspheres with controllable structure. The carboxyl group‐functionalized polystyrene microspheres prepared by soap‐free emulsion polymerization were used as the templates. After the Fe3O4 nanoparticles were in situ formed onto the surface of the templates, the single‐layer CS was self‐assembled and cross‐linked with glutaraldehyde subsequently. Then, the magnetic single‐layer CS hollow microspheres were obtained after the templates were removed. It was found that the feeding ratio of the monomer acrylic acid in the soap‐free emulsion polymerization had played an important role on the particle size and surface carboxyl group content of the templates, which determined the particle size and shell thickness of the magnetic single‐layer CS hollow microspheres in the proposed strategy. © 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem, 2010  相似文献   

18.
以苯乙烯-马来酸酐共聚物(PSMA)为原料,利用膜乳化-溶剂挥发法,成功制备了表面光滑、尺寸均一的表面羧基功能化聚合物微球.研究表明:将膜乳化法和溶剂挥发法相结合,可以有效提高微球粒径的均一性,乳化剂种类及浓度、连续相流速、分散相中聚合物浓度等参数对微球粒径及粒径分布有显著影响.此外,利用盐酸使微球酸酐基团水解,可以得...  相似文献   

19.
Dextran sulfate (DS)/poly-l-lysine (PLL) microcapsules are fabricated by an in situ coacervation method using DS-doped CaCO3 microparticles as templates. Twinned superstructures or spherical CaCO3 microparticles are produced depending on DS concentration in the starting solution. DS/PLL microcapsules with ellipsoidal or spherical outline are obtained after removal of templates in disodium ethylene diamine tetraacetate dehydrate (EDTA) without PLL. Their shell thickness and negative surface charges increase with the DS weight percentage in the templates. The surface potential of DS/PLL microcapsules, fabricated by core removal in an EDTA/PLL solution, can be easily tuned by altering PLL concentration in template removal solution. DS/PLL microcapsules fabricated by template removal in solution with or without PLL are both degraded by α-chymotrypsin, and different degradation profiles are observed because of shell thickness differences. DS/PLL may be used as transport vehicles for various compounds regardless of their charge sign in biomedical fields.  相似文献   

20.
Carbon microcapsules containing silicon (Si) nanoparticles (NPs) were prepared from silicon-embedded polymer microspheres. The precursors, polymeric microspheres containing silicon nanoparticles were fabricated by a facile emulsion polymerization with surfactants, sodium dodecyl sulfate and dodecyltrimethylammonium bromide. The effects of monomer, surfactant concentration, and ionic character of surfactant on the formation of microspheres were demonstrated. The successful fabrication of polystyrene/polydivinylbenzene microspheres with Si NPs was confirmed by scanning electron microscopy. Subsequent thermal treatment produced carbon microcapsules having Si NPs. Volume shrinkage of polymer spheres during carbonization step resulting in the formation of internal free spaces in carbon microcapsules is the critical process in this experiment, which can accommodate volume changes of Si NPs during Li ion charge/discharge processes. The successful encapsulation of Si NPs with exterior carbon shell was clearly shown by transmission electron microscopy and X-ray diffraction. The change in size distribution and structure of polymer and carbon microspheres was also revealed. The cyclic performances of these Si@C microcapsules were measured with lithium battery half cell tests.  相似文献   

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