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1.
钯纳米微粒的微波高压液相合成及共振散射光谱研究   总被引:6,自引:1,他引:5  
以柠檬酸钠作为制备钯纳米微粒晶种的还原剂,聚丙烯酰胺作为晶种生长的还原剂和稳定剂,采用微波高压液相合成法制备液相钯纳米粒子。TEM表明,钯纳米粒子呈球形,通过改变柠檬酸钠浓度可获得粒径为6-76nm的钯纳米粒子。柠檬酸在216nm处有一个吸收峰。聚丙烯酰胺在205nm处有一个吸收峰。钯纳米粒子体系在紫外可见光波长范围内无吸收峰,随着波长的降低其吸收增大。粒径为6-76nm的低浓度钯纳米粒子均在470nm、510nm、400nm、800nm和940nm产生五个共振散射峰。  相似文献   

2.
结构化液体是近年来基于二元流体体系,利用固体粒子液/液界面自组装和堵塞相变构筑的一类非平衡态软物质材料,兼具固体的结构稳定性和液体的流动性.然而,受限于组装基元和成型方法,制备具有精准结构的智能结构化液体及衍生功能材料仍面临挑战.我们课题组在该领域开展了大量研究工作,在发展界面调控新机制,制备液体/固体新材料,以及实现材料器件新突破等方面取得了系列创新成果.本专论从固体粒子界面自组装机制出发,重点阐述了一种利用纳米粒子和聚合物液/液界面共组装制备纳米粒子表面活性剂,进而构筑结构化液体的普适策略;总结归纳了结构化液体在响应性调控、高效精准构筑以及功能材料制备等方面的研究进展;并对该领域面临的机遇和挑战做出展望.  相似文献   

3.
SnO2水溶胶气-液界面纳米胶粒成膜过程   总被引:2,自引:1,他引:1  
采用胶体化学法制得稳定的SnO2纳米粒子溶胶。在LB膜槽内,用膜天平考察了溶胶在陈化和均速压缩过程中,气-液界面表面压力的变化。,并用布儒斯特色显微镜,直接观察了陈化过程中界面胶体粒子的片面成膜过程,和均速压缩过程中界面胶体粒子的压缩成膜过程。  相似文献   

4.
功能化磁性纳米粒子因其独特的理化性质,在乳状液制备与破乳领域的应用受到广泛关注。本文归纳了功能化磁性纳米粒子的制备方法、合成结构与特征性质,阐述了其在乳状液制备及破乳中的应用过程,重点分析了磁性纳米粒子在溶液中良好分散、稳定吸附于油水界面排布为膜结构的作用行为,尤其是磁性纳米粒子的磁响应特征对乳状液中界面性质、液滴形貌及运动状态的影响,并进一步总结出其表面性质及作用行为对稳定乳状液或使乳状液破乳的规律。针对磁性纳米粒子对乳状液稳定性影响规律的探究可为其在应用领域提供理论支持。最后本文就功能化磁性纳米粒子研究中亟待解决的新问题作出展望。  相似文献   

5.
杨平辉  孙巍  胡思  陈忠仁 《化学进展》2014,26(7):1107-1119
近年来,随着纳米技术的发展及Pickering乳液在食品、化妆品、医药等领域中的应用,纳米粒子的界面自组装现象引起了人们的广泛关注。界面能的降低是纳米粒子液液界面自组装的主要驱动力。通过改变纳米粒子的尺寸和表面配体的化学性质,可控制纳米粒子的界面自组装行为。本文综述了不同类型纳米粒子实现界面自组装的研究工作,包括均质纳米粒子、Janus纳米粒子、棒状纳米粒子以及生物纳米粒子。最后,对纳米粒子的界面组装这一领域的可能发展做了展望。  相似文献   

6.
曹进军 《化学通报》2018,81(7):641-645
基于三维动力学蒙特卡罗模型,再现了纳米液膜干燥后形成的双尺度沉积结构,探究了液体化学势、纳米粒子移动速率、液体临界蒸发率以及化学势锐度等参数对纳米液膜沉积结构的影响。结果表明,纳米液膜干燥时,液膜中的纳米粒子随着三相线移动自组装形成各种各样的沉积结构沉积在基板上。纳米液膜蒸发过程中,当液体蒸发达到临界蒸发率时液体化学势将发生突变,使其形成两种沉积结构。随液体初始化学势的增大,沉积结构逐渐变为均匀分布的密集网状结构。液体临界蒸发率越小,液体化学势突变后形成的沉积结构越明显。纳米粒子的移动速率越快,沉积结构中的枝状结构越少。化学势锐度对双尺度沉积结构的差异有很大的影响,锐度越大,两种沉积结构的差异越大。  相似文献   

7.
仿生支撑液膜法制备硫化锌自组装纳米球链   总被引:4,自引:0,他引:4  
孙冬梅  吴庆生  朱勇  丁亚平 《化学学报》2005,63(16):1479-1482
采用了一种全新的化学仿生方法——载体支撑液膜法制备ZnS纳米球链. 常温常压条件下, 利用含邻菲罗啉载体的支撑液膜(SLM)反应体系选择性传输Zn2+至膜另一侧, 在SLM模板作用下, 控制结晶位点, 定向结合阴离子, 加上局部过饱和及界面成核的影响, 成功制备出由8~30 nm纳米粒子自组装的直径范围为250~300 nm ZnS球链. 由XRD和TEM的结果显示, 其结构为立方闪锌矿, 晶格常数为α=0.5390 nm. 本文还对其荧光性质及产物形成机理进行了初步探讨.  相似文献   

8.
本研究通过自组装法在气-液界面得到Au纳米粒子网状结构,并通过进一步生长得到连续的Au纳米粒子网状结构薄膜.该方法无需加入任何诱导剂,在室温条件下即可得到稳定性良好的纳米金薄膜.通过改变HAuCl_4和AgNO_3相对用量、陈化时间等条件对网状结构薄膜的形成机理进行了研究.结果发现,AgNO_3用量对Au纳米粒子薄膜的形成至关重要,通过调控AgNO_3用量可以促进纳米金粒子间的融合并形成纳米链、进一步演化为纳米链网状结构.在初步形成的Au纳米粒子网状结构表面通过抗坏血酸还原进一步生长纳米金粒子,有利于形成较大面积、较好稳定性的纳米Au粒子网状结构薄膜.以对氨基苯硫酚(4-ATP)作为探针分子,研究表明,与未发生组装的金纳米粒子相比,自组装形成的Au纳米粒子网状结构薄膜对4-ATP具有较强的表面增强拉曼效应.  相似文献   

9.
林铭章  朱清时 《化学进展》1998,10(3):237-245
液相中金属纳米粒子或团簇粒子的研究是现代化学和物理学的一个重要方面, 是对气相和真空中纳米粒子研究的补充。由于受到介质的强烈影响, 体系更为复杂, 然而却有了人工控制纳米粒子的大小和结构的可能性。本文介绍利用电离辐射或光化学方法还原金属离子在液相中制备金属纳米粒子, 通过调节介质的组成及介质的性质(如pH 值等) ,可以有效地控制其颗粒度大小, 并有可能最终控制纳米粒子的结构。该方法还具有颗粒度分布均匀、无须添加化学还原剂以及可以制备纳米合金粒子等优点。利用脉冲式辐照(脉冲辐解技术) 可以对液相中金属纳米粒子形成的化学反应机理进行深入的基础研究。  相似文献   

10.
采用自乳化法制备出阴离子聚氨酯纳米水分散液,以其作为乳化剂使苯乙烯单体在其中进行聚合,制备出不同聚苯乙烯与聚氨酯质量比的阴离子型PS/PU纳米复合物水分散液;对苯乙烯单体的聚合过程进行了研究;采用光子相关谱仪和透射电镜对其微观结构、粒径及其分布进行了测试,结果表明,该方法能够制备出稳定的具有核壳结构的PS/PU纳米复合物水分散液,但当苯乙烯单体浓度增大到一定程度(PS/PU质量比为50∶100)时,粒子不稳定而发生聚集.  相似文献   

11.
0IntroductionSelenium(Se)iswellknownforitsphotoelectri鄄calandsemiconductorpropertiesandhasbeensuc鄄cessfullyusedinsolarcells,rectifiers,photographicexposuremetersandxerography[1].Itcouldbeexpect鄄edthattheuniquestructureandthequalityofone鄄di鄄mensional(  相似文献   

12.
Water-dispersible selenium nanoparticles (SeNPs) were created by using natural hyperbranched polysaccharide (HBP) as the stabilizer and capping agent under extremely safe conditions. The structure, morphology, size, and stability of the nanocomposites were investigated by transmission electron microscopy (TEM), atomic force microscopy (AFM), and static and dynamic light scattering (DLS) measurements. The results revealed that the spherical selenium nanoparticles (mean particle size of about 24 nm) were ligated with HBP to form nanocomposites (Se-HBP) in aqueous solution and were stable for over one month. In our findings, supported by the results of FTIR, TEM, AFM, and DLS, SeNPs were capped with the HBP macromolecules, as a result of strong physical adsorption of OH groups on Se surfaces, leading to a highly stable structure of Se nanoparticles in water. This work provided reaction sites for the complexation between HBP and Se to fabricate well-dispersed Se nanoparticles in aqueous system with potential bioapplications.  相似文献   

13.
Nickel nanoparticles supported on metal oxides were prepared by a modified electroless nickel-plating method. The process and mechanism of electroless plating were studied by changing the active metal (Ag) loading, acidity, and surface area of metal oxides and were characterized by UV–vis spectroscopy, transmission electron microscopy, scanning electron microscopy, and H2 chemisorption. The results showed that the dispersion of nickel nanoparticles was dependent on the interface reaction between the metal oxide and the plating solution or the active metal and the plating solution. The Ag loading and acidity of the metal oxide mainly affected the interface reaction to change the dispersion of nickel nanoparticles. The use of ultrasonic waves and microwaves and the change of solvents from water to ethylene glycol in the electroless plating could affect the dispersion and size of nickel nanoparticles.  相似文献   

14.
A simple and practical carbothermal chemical vapor deposition route has been developed for the growth of trigonal phase selenium nanowires and nanoribbons. In detail, the mixture of active carbon and selenium was heated for the chemical reaction to occur, followed by thermal evaporation and decomposition into elemental selenium. The as-prepared sample was characterized by X-ray diffraction, transmission electron microscopy, high-resolution electron microscopy, UV-vis absorption, and photoluminescence. The results show that trigonal Se nanowires have uniform diameters ranging from 20 to 60 nm and grow along the [001] direction, with the same growth direction found for nanoribbons. Spectral measurements suggest a large blue shift and two types of electron transition activity. The influences of experimental conditions on morphologies and growth processes are also discussed. This synthetic method should be able to be extended to grow other one-dimensional chalcogens and chalcogenides nanostructures.  相似文献   

15.
采用原位液体池透射电镜技术,在扫描透射电子显微镜(STEM)中,实时观察溶液中金属钯(Pd)在金(Au)纳米颗粒及团簇周围的异质沉积过程。通过对该动态过程的定量分析,结合高分辨透射电子显微镜(HRTEM)对样品进行形貌与结构表征,研究异质沉积的机理。结果表明,电子束辐照下Au-Pd异质结构纳米颗粒的形成存在两种主要机制:第一种机制中,Pd在Au纳米颗粒表面的生长是以岛状沉积开始,随着时间推移,出现Pd岛的结构弛豫和沿着Au颗粒表面的迁移扩展。伴随Pd的不断沉积和弛豫,Au-Pd复合颗粒的外接圆直径表现为震荡生长,而Au表面的Pd覆盖率显示出随时间单调增加的趋势。第二种机制中,由于Pd单体在Au纳米颗粒上的沉积位点有限,使部分被还原的Pd在Au颗粒以外区域进行同质形核与生长形成Pd团簇,之后再与Au颗粒上的Pd岛合并。进一步的结果分析显示,Au颗粒外围的Pd沉积体为多晶结构,由随机取向的Pd纳米晶粒构成。  相似文献   

16.
Superlattices of gold nanoparticles have been produced at an air/solution interface under a highly acidic condition. The nanoparticle surface is protected by N-acetylglutathione (NAG). During the course of the superlattice formation, size growth of nanoparticles was observed: The superlattices were composed of nanoparticles of 6.6 nm in core diameter, whereas the as-prepared nanoparticles had the core diameter of 1.4 nm. The growth kinetics was pursued by the time evolution of the UV-vis absorption spectra for the sample solution. The change in the absorption spectral profiles was so small that we conducted principal-component analysis (PCA), which is known as a chemometric technique to resolve (or extract) spectra of minute chemical species submerged in the original spectra. Scanning transmission electron microscopy (STEM) corroborated the PCA results, yielding a successful explanation of the growth scheme of the NAG-protected gold nanoparticles.  相似文献   

17.
Zinc sulfide (ZnS) nanoparticles were prepared by homogeneous hydrolysis of zinc sulfate and thioacetamide (TAA) at 80 degrees C. After annealing at a temperature above 400 degrees C in oxygen atmosphere, zinc oxide (ZnO) nanoparticles were obtained. The ZnS and ZnO nanoparticles were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), high-resolution transmission electron microscopy (HRTEM), selected area electron diffraction (SAED), and Brunauer-Emmett-Teller (BET)/Barrett-Joyner-Halenda (BJH) methods were used for surface area and porosity determination. The photocatalytic activity of as-prepared zinc oxide samples was determined by decomposition of Orange II dye in aqueous solution under UV irradiation of 365 nm wavelength. Synthesized ZnO were evaluated for their non-photochemical degradation ability of chemical warfare agents to nontoxic products.  相似文献   

18.
A novel laser–solid–liquid ablation technique has been developed to synthesize Ag2Se nanoparticles from silver nitrate and selenium powder in a mixed solvent of 2-propanol and ethylenediamine. The products were characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and transmission electron microscopy (TEM). The XRD indicated that the products were the single phase of silver selenide. The TEM images revealed that the as-prepared Ag2Se grains were homogeneous and spherical, and their average size was about 30 nm. This novel technique can be extended to prepare other nanoparticles of various compositions.  相似文献   

19.
A mild chemical reduction method was developed to synthesize selenium nanoparticles. The observation of the particle growth within a five‐minute time frame at an elevated temperature is achieved, and it was evidenced by analyzing the particle sizes from electron micrographs. The samples at individual growth stages were taken after the reaction was quenched by cooling to stop further particle growth. The nucleation and growth processes dominate different reaction time regimes under the experimental condition. We demonstrate the size evolution of the selenium nanoparticles from 30 nm to about 200 nm.  相似文献   

20.
Highly dispersed palladium was obtained by vacuum deposition onto polyvinyl alcohol films, followed by removal of the support via dissolution in hot water, and was characterized by transmission electron microscopy. The dispersed palladium consisted of aggregated nanoparticles with a size of ~10 nm and was used to catalyze the Suzuki-Miyaura reaction of p-iodonitrobenzene with phenylboronic acid in N,N-dimethylacetamide and propan-1-ol at 50–80°C in the presence of potassium phosphate as base. Taking into account that the reaction required atmospheric oxygen (no reaction occurred under argon), it was presumed that the process is homogeneous and that palladium is transferred into solution as a result of leaching by the action of oxygen in the presence of iodide ions. The properties of the examined catalytic system were compared with those reported for other catalytic systems containing palladium nanoparticles.  相似文献   

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