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1.
李锋  宋华  汪淑影 《化学通报》2011,74(3):244-251
采用微乳液法制备纳米粒子具有粒径可控、粒度分布均匀、粒子不易团聚等优点,在一些反应中表现出优良的催化性能.本文介绍了微乳液的概念,阐述了反相微乳体系(W/O)作为纳米反应器的原理以及用于制备固体催化剂的方法.综述了反相微乳液法制备固体催化剂在多相催化领域中的应用,并指出该技术存在的问题和发展趋势.  相似文献   

2.
反相微乳液法制备纳米SiO2的研究   总被引:10,自引:0,他引:10  
在壬基酚聚氧乙烯5醚(NP-5)/环己烷/氨水的反相微乳液体系中,进行正硅酸乙酯(TEOS)的水解、缩合反应,得到粒径在30~50 nm的单分散纳米SiO2胶体。红外光谱法(FTIR)及透射电子显微镜(TEM)观察证明了纳米SiO2粒子的生成。反相微乳液体系相图的研究表明,水相为氨水比纯水有较窄的W/O型微乳区。氨水微乳液是碱催化TEOS水解、缩合制备纳米SiO2粒子的适宜体系。当体系中TEOS的浓度增大时,粒子的粒径随之增大。降低NP-5  相似文献   

3.
反相微乳液介质中纳米Sm2O3的制备   总被引:1,自引:0,他引:1  
用十六烷基三甲基溴化铵(CTAB)/正丁醇/正辛烷/钐盐水溶液(氨水)所形成的反相微乳液体系,控制合成Sm2O3球形纳米粒子.绘制出25℃下CTAB/正丁醇/正辛烷/钐盐水溶液(氨水)体系的拟三元相图,得到了反相微乳液区.在此反相微乳区内合成了Sm2O3的前驱体,对前驱体进行热分析(TG-DSC),确定了得到纳米Sm2O3产物的适宜焙烧温度为900℃,并考察了微乳液中反应物浓度、反应时间等因素对合成产物的影响.采用X射线衍射(XRD)、透射电镜(TEM)、激光粒度仪(NSA)、荧光光谱(FS)仪等分析方法对Sm2O3产物的形貌、晶形、粒径及荧光性质进行了表征.结果表明,25℃下利用反相微乳液法,成功地制备了粒径分布较窄、分散性良好的球形纳米Sm2O3粒子,粒径约20 nm左右,且表现出较强的荧光性质.  相似文献   

4.
用十六烷基三甲基溴化铵(CTAB)/正丁醇/正辛烷/钐盐水溶液(氨水)所形成的反相微乳液体系, 控制合成Sm2O3球形纳米粒子. 绘制出25 ℃下CTAB/正丁醇/正辛烷/钐盐水溶液(氨水)体系的拟三元相图, 得到了反相微乳液区.在此反相微乳区内合成了Sm2O3的前驱体, 对前驱体进行热分析(TG-DSC), 确定了得到纳米Sm2O3产物的适宜焙烧温度为900 ℃, 并考察了微乳液中反应物浓度、反应时间等因素对合成产物的影响. 采用X射线衍射(XRD)、透射电镜(TEM)、激光粒度仪(NSA)、荧光光谱(FS)仪等分析方法对Sm2O3产物的形貌、晶形、粒径及荧光性质进行了表征. 结果表明, 25 益下利用反相微乳液法, 成功地制备了粒径分布较窄、分散性良好的球形纳米Sm2O3粒子, 粒径约20 nm左右, 且表现出较强的荧光性质.  相似文献   

5.
应用微乳法制备二氧化硅包裹钯纳米粒子   总被引:3,自引:0,他引:3  
吕飞  张庆红  王野  万惠霖 《化学学报》2004,62(18):1713-1716
以氯钯酸为钯源,正硅酸乙酯(TEOS)为硅源,利用十六烷基三甲基溴化铵(CTAB)/正己醇/水构成的微乳体系制备了二氧化硅包裹纳米金属Pd粒子.其中Pd的粒径可在5~30 nm调变,外部SiO2层的厚度可在5~35 nm调变.详细考察了氯钯酸和正硅酸乙酯的浓度、微乳体系中水和正己醇的量等参数对制备的Pd/SiO2粒子的大小及形态的影响.  相似文献   

6.
CTAB反相微乳液的稳定条件与纳米WO3的制备   总被引:1,自引:0,他引:1  
以CTAB(十六烷基三甲基溴化铵)/正丁醇/正辛烷/钨酸钠水溶液构制反相微乳体系,通过测定体系电导率的方法确定相点并绘制反相微乳区拟三元相图。考察了该体系在不同条件下稳定存在的组成范围,选取实验最佳条件制备出纳米WO3。结果表明,表面活性剂与助表面活性剂的比、钨酸钠溶液的浓度对该反相微乳体系稳定区域的影响较大,当m(CTAB)∶m(正丁醇)=1∶2,钨酸钠浓度为0.05~0.08 g/mL时,体系有较大的反向微乳区,且当m(CTAB 正丁醇)∶m(正辛烷)=2∶3时,体系有最大溶水量;温度对该体系稳定区域的影响不大。在最适宜条件下,以0.08 g/mL的钨酸钠微乳液与盐酸微乳液,在40℃的水浴中反应7 h,制备出平均粒径约30 nm的WO3纳米粒子。  相似文献   

7.
非水反相微乳的加溶与电导性质研究   总被引:7,自引:0,他引:7  
研究了若干非水极性溶剂(甲酰胺、二甲基亚砜和乙腈)及其与水的混合物/AOT/正庚烷反相微乳体系的加溶性质及其电导行为.结果表明,在AOT反相微乳中,非水极性溶剂的最大加溶量均远小于水的加溶量.其最大加溶量顺序为二甲基亚砜< 甲酰胺< 乙腈< 水.甲酰胺和乙腈与水的加溶相互抵制,而水在一定范围内可促进二甲基亚砜的加溶.非水反相微乳的电导率随加溶量的变化规律与含水反相微乳体系类同,但到达电导率极大值和出现渗滤时的加溶量明显比含水反相微乳 体系的要小.  相似文献   

8.
采用微乳法制备纳米Ni(OH)2,用X射线衍射、扫描电子显微镜、透射电子显微镜、恒流充放电、循环伏安、交流阻抗等测试技术研究了纳米Ni(OH)2的微观结构、表面形貌和电化学性能. 结果表明,140 ℃水热和微乳/水热2种方式处理得到的纳米Ni(OH)2具有不同形貌特征. 水热和微乳/水热处理虽然不影响纳米Ni(OH)2的活化性能,但对纳米Ni(OH)2的放电比容量影响很大,采用140 ℃水热和微乳/水热处理比单纯的微乳法制备得到的纳米Ni(OH)2的放电比容量分别提高了24.6和74.8 mA·h/g. 处理后的纳米Ni(OH)2的循环伏安峰电流增大、电荷转移电阻由2.633 Ω分别降至2.464和1.679 Ω.  相似文献   

9.
CdS/TiO2复合纳米粒子的光学性质   总被引:5,自引:0,他引:5  
在Brij35/正己醇/环己烷/水构成的反相微乳体系中,分别合成了CdS、TiO2纳米粒子和TiO2包覆CdS(CdS/TiO2)的复合纳米粒子.测定了它们的紫外-可见吸收和荧光光谱.结果表明, CdS/TiO2复合纳米粒子在可见光区的吸收比相应的两组分的吸收之和更强.纳米CdS和纳米TiO2均有较强的荧光.而且在相同浓度时纳米TiO2的荧光比纳米CdS的荧光更强.但在CdS/TiO2复合纳米粒子中,TiO2的荧光被淬灭,而CdS的荧光稍有降低.  相似文献   

10.
微乳液法制备球形氧化锆粉体及其分散特性的研究   总被引:9,自引:0,他引:9  
以水/环己烷/曲拉通-100/正己醇四元油包水微乳体系中的微乳液滴为纳米微反应器,通过微反应器中增溶的锆盐和沉淀剂发生反应,可以制备出基本无团聚、球形度较好的纳米级氧化锆粉体,粉体粒径为30~40 nm且呈单峰分布。通过分析粉体中可溶性离子的含量及其在水中的电动行为以及悬浮体的流变特性,说明粉体具有良好的分散特性。  相似文献   

11.
In this study, Y(2)O(3):Eu luminescent nanoparticles were prepared by precipitation of aqueous yttrium nitrate/europium nitrate solution using ammonium hydroxide in the reverse microemulsions based on polyoxyethylene (5) nonylphenyl ether/polyoxyethylene (9) nonylphenyl ether, cyclohexane, and water. With Eu-doped Y(2)O(3) nanoparticles obtained, particle size, shape, chemical composition, crystalline formation rate, crystallinity, and photoluminescence were measured and compared with those of particles formed by a bulk precipitation method. The nanoparticles synthesized in microemulsion showed a narrow size distribution, spherical shape, fast crystalline formation rate, high crystallinity, and strong photoluminescence. This stronger photoluminescence of particles formed in a microemulsion might be attributed to more densely packed particles with very few voids and higher crystallinity at a relatively low temperature than those synthesized through a bulk precipitation method. Copyright 2000 Academic Press.  相似文献   

12.
在采用阳离子型双子(gemini)表面活性剂作为乳化剂,不使用任何助乳化剂的条件下,通过改进微乳液聚合工艺制备了窄分布粒径可控的阳离子型聚苯乙烯(PS)纳米乳液。 改进微乳液聚合的主要特点是:大部分苯乙烯以预乳液的形式恒速滴入引发聚合的微乳液中,使用具有高乳化性能的gemini表面活性剂作为乳化剂能明显降低乳胶粒粒径。 实验结果表明,少量阳离子单体三甲基烯丙基氯化铵作为共聚单体能够明显减小Z均粒径、降低粒度分布,乳化剂用量、引发剂用量和反应温度均能影响制备乳胶粒的粒径及其粒度分布。 乳化剂和引发剂用量分别为苯乙烯质量的5%~10%和1.0%~1.5%、反应温度为70~75 ℃时,能够制备粒径小分布窄的阳离子型聚苯乙烯纳米粒子。 Z均粒径与苯乙烯质量之间的线性关系表明,Z均粒径可以通过苯乙烯用量来控制。 不同聚合工艺下制备的聚合物粒度分布曲线表明,改进微乳液聚合工艺(半连续预乳化工艺)在制备窄分布的聚合物纳米粒子方面具有很强的优越性。  相似文献   

13.
Span/Tween混合表面活性剂微乳液制备纳米铁及脱硝研究   总被引:5,自引:0,他引:5  
研究了以Span 80和Tween 60为混合表面活性剂的微乳液的形成。以电导率及目测法为表征手段,利用正交试验,分析了多因素对W/O型微乳液最大增容水量的影响,探明了该乳液形成的适宜条件。  相似文献   

14.
This paper is focused on the use of branched poly(ethyleneimine) (PEI) as reducing as well as stabilizing agent for the formation of gold nanoparticles in different media. The process of nanoparticle formation was investigated, in the absence of any other reducing agents, in microemulsion template phase in comparison to the nucleation process in aqueous polymer solution.

On the one hand, it was shown that the polyelectrolyte can be used for the controlled single-step synthesis and stabilization of gold nanoparticles via a nucleation reaction and particles with an average diameter of 7.1 nm can be produced.

On the other hand, it was demonstrated that the polymer can also act as reducing and stabilizing agent in much more complex systems, i.e. in water-in-oil (w/o) microemulsion droplets. The reverse microemulsion droplets of the quaternary system sodium dodecylsulfate (SDS)/toluene–pentanol (1:1)/water were successfully used for the synthesis of gold nanoparticles. The polymer, incorporated in the droplets, exhibits reducing properties, adsorbs on the surface of the nanoparticles and prevents their aggregation. Consequently, nanoparticles of 8.6 nm can be redispersed after solvent evaporation without a change of their size.

Nevertheless, the polymer acts already as a “template” during the formation of the nanoparticles in water and in microemulsion, so that an additional template effect of the microemulsion is not observed.

The particle formation for both methods is checked by means of UV–vis spectroscopy and the particle size and size distribution are investigated via dynamic light scattering and transmission electron microscopy (TEM).  相似文献   


15.
In this work, a detailed experimental analysis of the nanoparticle formation dynamics and the formation mechanism in a reverse microemulsion system is given. The precipitation of barium sulfate nanoparticles inside microemulsion droplets is investigated at the molecular scale with respect to the evolution of the particle size distribution and the particle morphology by an extensive transmission electron microscope (TEM) analysis. Different mixing procedures (feeding strategies) of two reactants, barium chloride and potassium sulfate, are evaluated concerning their ability for a tailored particle design under consideration of the complete particle size distribution (modality and polydispersity). It is shown that improved knowledge about the particle formation mechanisms, the dynamics, and the influence of the colloidal microemulsion structure could be used for a tailored design of particles,for example, controlled synthesis of nanoparticles with a bimodal particle size distribution by the application of a sophisticated feeding strategy.  相似文献   

16.
The synthesis of polyacrylamide nanoparticles by semi-continuous inverse heterophase polymerization as a function of feeding rate of monomer aqueous solution is reported here. In this process, a concentrated acrylamide aqueous solution is dosed semi-continuously at various rates over an AOT-toluene solution containing the initiator. Our results indicate that particle size and the viscosimetric molar masses diminish as the dosing rate is slowed down and that smaller particles, as well as lower molar masses, are obtained compared to those produced by batch and semi-continuous microemulsion polymerizations, employing the same concentration of surfactant. Moreover, higher polymer/surfactant ratios are higher compared to those obtained in batch microemulsion polymerization and similar or slightly higher than that in semi-continuous microemulsion polymerization.  相似文献   

17.
Preparation of metal nanoparticles in water-in-oil (w/o) microemulsions   总被引:11,自引:0,他引:11  
The use of an inorganic phase in water-in-oil microemulsions has received considerable attention for preparing metal particles. This is a new technique, which allows preparation of ultrafine metal particles within the size range 5 nm相似文献   

18.
 The polymerization of styrene-in-water and methylmeth-acrylate-in-water microemulsions stabilized by nonionic surfactants was investigated using different initiation techniques. Thermally induced initiation was carried out using potassium persulfate (water soluble) and azobisiso-butyronitrile (AIBN) (oil soluble) at 60° and 50°C, respectively. When the monomer concentration was kept below a certain limit, the particle size of the nanolatex was similar to the droplet size of the microemulsion precursor. At higher monomer concentrations, the latex produced was significantly larger than the microemulsion droplets, as a result of the possible coalescence of the microemulsion droplets during polymerization. By using chemically induced polymerization (hydrogen peroxide+ascorbic acid) at temperatures below the cloud point temperature of the microemulsion or by photochemically induced initiation at room temperature, it was possible to obtain nanolatex particles with similar size to the droplets up to 10% monomer content. In all cases, the particle size was determined using photon correlation spectroscopy (PCS). Electron micrographs of the microlatex particles were taken and these confirmed the measurements obtained by PCS. The molecular weight of the polymers produced was determined by gel permeation chromatography. The average number of polymer molecules per particle was calculated. It was shown in some cases that the nanolatex contained one polymer chain per particle. A mechanism was suggested for polymerization and particle growth. Received: 29 May 1997 Accepted: 28 May 1998  相似文献   

19.
《Solid State Sciences》2012,14(5):622-625
Hematite nanoparticles have been synthesized via reverse microemulsion route at room temperature. The microemulsion system, contained water, chloroform, 1-butanol, and surfactant, was combined with iron nitrate solution to result iron oxide nanoparticles precipitation. Three technical surfactants, with different structures and HLB (hydrophile–lipophile balance) values were employed and the effects of the HLB values on the hematite particle size were investigated. The prepared particles were evaluated by BET, XRD and TEM techniques. These results showed that the iron oxide particle size and particle size distribution increased with increasing surfactant HLB values.  相似文献   

20.
Phase pure, stable nanocrystalline brushite particles with average diameter in the range of 23–87 nm were obtained by the reverse microemulsion technique employing a mixture of surfactants (Aliquat 336 & Tween 80) as template directing agents, and calcium nitrate tetrahydrate and biammonium hydrogen phosphate as precursors. Particle sizes and morphologies were tuned by adjusting the reaction parameters, precursor concentration and temperature. FTIR, TEM, and XRD were used to characterize morphological changes of as synthesized nanoparticles. FTIR and XRD analyses confirmed the formation of brushite nanoparticles. Variations in the reaction temperature resulted in changes in the particle morphology and distribution. At high temperatures (60°C), the sample exhibited high monodispersity and spherical morphology with the average grain size of 42 nm. At low temperatures (6°C), nanoflakes were formed. The results suggest that a reverse microemulsion system provides facile media for control of the phase and morphology of nanoscale calcium phosphate biominerals. A mechanism providing an insight into the formation of brushite particles has also been proposed.  相似文献   

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