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1.
以聚乙烯吡咯烷酮(PVP)兼作保护剂和还原剂在碱性水溶液中直接还原HAuCl4制备出了60-80 nm的三维(3D)金纳米花. 产物的透射电子显微镜(TEM)和扫描电子显微镜(SEM)图像显示, 金纳米花表面布满10-15 nm左右的纳米触角, X射线衍射(XRD)表征揭示产物为金的面心立方晶体, 选区电子衍射(SAED)花样说明金纳米花为多晶结构. 金纳米花的生长经历了三个关键步骤, 即初级纳米晶聚集成多脚状纳米粒子, 随后在合适的PVP/HAuCl4浓度比及NaOH浓度下, 多脚状纳米粒子进一步聚集形成疏松的花状粒子, 最终经过Ostwald熟化形成致密的花状产物. 一定HAuCl4浓度下PVP/HAuCl4浓度比和NaOH浓度对产物的形貌影响显著, 因此通过同时调控合适的PVP/HAuCl4浓度比和NaOH浓度, 就能得到适应各种应用需求的尺度可控和纳米触角形貌可控的金纳米花.  相似文献   

2.
以不同聚合度的聚乙烯吡咯烷酮(PVP)作为金纳米团簇的稳定剂和形状控制剂,应用电化学还原方法制备尺寸可控的金纳米晶体.借助PVP聚合物的动态伸缩和卷曲特性将电化学还原得到的金纳米粒子前驱体组装成线状和环状的纳米粒子聚集体,再由不稳定前驱体粒子的定向聚集制备厚度为几十纳米的金纳米棱柱.并用分步电化学还原法合成核壳结构的金银纳米复合粒子.本文为制备不同形状和结构的贵金属纳米结构材料提供了一种可行的电化学合成新方法.  相似文献   

3.
SDS-PVP水溶液中超细镍粉的制备   总被引:4,自引:0,他引:4  
阮小云  方云  樊晔 《物理化学学报》2008,24(8):1513-1518
在十二烷基硫酸钠(SDS)-聚乙烯吡咯烷酮(PVP)混合水溶液中, 采用水合肼还原氯化镍制备超细镍粉. SEM结果表明, 该超细镍粉为球形, 表面呈现针状叠合的特殊形貌. XRD结果表明,该超细镍粉由平均粒径约为10 nm的面心立方结构(fcc)的原生纳米镍晶粒组成, 且主要沿(111)晶面生长. TEM清晰观察到原生纳米镍晶粒在PVP的空间桥联作用下自组装成超细镍粉的中间过程. SDS-PVP的组成对超细镍粉的粒径和表面形貌有显著影响, 在一定浓度范围内, 随着SDS或PVP浓度增大, 原生纳米镍晶粒和超细镍粉的平均粒径均呈减小趋势, 表明通过改变SDS-PVP组成可以调控超细镍粉的粒径和形貌.  相似文献   

4.
以聚乙烯吡咯烷酮(PVP)与十二烷基硫酸钠(SDS)通过阳离子架桥形成的拟聚阴离子为软模板,通过改变PVP、SDS和纳米材料前驱体氯金酸(HAu Cl4)浓度以及反应时间等因素,调控还原产物金纳米花形貌及粒径。表面张力、电导率、毛细管电泳及Zeta电位等实验结果表明PVP-SDS-HAu Cl4形成新的拟聚阴离子,透射电子显微镜和X射线衍射结果表明SDS、PVP和HAu Cl4的较低浓度组合更易获得表面凸起丰富的金纳米花。PVP-SDS拟聚阴离子发挥了二级软模板作用,在PVP (50 g·L-1)-SDS (2 mmol·L-1)-HAu Cl4 (0.25 mmol·L-1)溶液中调控合成的金纳米花为{111}晶面为主的面心立方结构,其平均等效粒径为108 nm,且表面上密集分布约16.5 nm的凸起。该金纳米花有较强的表面增强拉曼散射(SERS)活性,探针分子罗丹明6G的SERS信号强度依赖于金纳米花的表面凸起形貌。该研究中金纳米...  相似文献   

5.
采用二苯胺磺酸钠还原四氯合金酸的方法,在室温条件下,用SDS(十二烷基硫酸钠)、SDBS(十二烷基苯磺酸钠)作表面活性剂,成功地合成了金纳米粒子.分别讨论了还原剂二苯胺磺酸钠、表面活性剂(SDS、SDBS)及四氯台金酸的浓度等对金纳米粒子的粒径和形貌的影响.通过控制反应条件,可以合成出平均粒径大约为10、14、30、36nm的金纳米粒子.利用透射电镜(TEN)、紫外-可见(UV-Vis)吸收光谱对金纳米粒子进行了表征.研究结果表明不同的SDS或SDBS/HAuCl4的摩尔比,对金纳米粒子的尺寸大小有影响.  相似文献   

6.
庄志华  陈卫 《电化学》2021,27(2):125-143
金属纳米团簇(MNCs)是由几个到数百个金属原子组成,其尺寸一般小于2nm.金属纳米团簇在许多催化反应中表现出高的催化活性和选择性,这与金属纳米团簇具有高的比表面积、较多暴露的活性原子,以及与金属纳米粒子(MNPs)不同的电子结构有关.金属纳米团簇确定的组成和结构使其成为一种新型模型催化剂,对纳米团簇的催化性能研究有利...  相似文献   

7.
以SDS-PEG团簇为软模板在温和条件下合成金纳米环   总被引:1,自引:0,他引:1  
王纯荣  方云  冯杰文 《化学学报》2007,65(12):1177-1180
介绍一种由十二烷基硫酸钠(SDS)与聚乙二醇(PEG 20000)组成的团簇为软模板, 在室温、常压、无硬模板及无外加还原剂条件下自还原HAuCl4合成金纳米环的新方法. TEM显示合成的金纳米环的直径为(500±50) nm; UV-vis光谱显示在800 nm以上区域有强吸收带, 证明有大的各向异性的纳米结构生成. 电子衍射(ED)显示合成的金纳米环为金单晶结构; XRD显示金纳米环的(200)与(111)衍射峰的强度比(I(200)/I(111))为0.11, 比反应初始阶段的0.31降低0.2左右, 表明金纳米结构主要为(111)晶面取向. TEM和SEM跟踪显示, 金纳米环的生长经历了从金纳米球到纳米片再到纳米环的变化过程, 控制反应时间可以得到预期的金纳米结构.  相似文献   

8.
纳米金粒子与R-藻红蛋白的相互作用   总被引:1,自引:1,他引:1  
以NaBH4为还原剂, 采用化学还原法制备了纳米金溶胶, 发现以pH=7的金前驱液还原得到的纳米金粒子具有最强的紫外吸收(525 nm), 当以聚乙烯吡咯烷酮(PVP)为稳定剂时, 此吸收紫移到510 nm. TEM观察金粒子大小为5~8 nm. PVP、聚乙烯醇(PVA)和吐温-80等能较好地稳定纳米金粒子, 而十二烷基苯磺酸钠、PEG-1000和OP乳化剂等则没有稳定作用. 以紫外-可见光谱(UV-Vis)、X光荧光光谱(XRF)、透射电子显微镜(TEM)等研究了纳米金粒子与R-藻红蛋白的相互作用, 发现R-藻红蛋白本身对纳米金粒子具有良好的稳定作用. 当R-藻红蛋白与纳米金粒子共存时, R-藻红蛋白所具有的538 nm吸收带强度有所增强, 并发生紫移, 同时578 nm的荧光强度也明显减弱, 这表明R-藻红蛋白与纳米金粒子的相互作用对R-藻红蛋白的空间结构产生了影响, 导致位于R-藻红蛋白外缘藻红素发色团(PEB)的微环境发生了改变. 凝胶柱层析及分光光度分析结果进一步证实了金纳米粒子与藻红蛋白存在明显的相互作用, 这种相互作用可能与藻红蛋白分子中所包含的氨基基团有关.  相似文献   

9.
在微量聚乙烯吡咯烷酮(PVP)存在下, 利用超声还原氯化钯水溶液, 制备出超细纳米Pd颗粒, 用高分辨透射电镜、红外光谱、紫外-可见光谱和X射线光电子能谱等技术对其表面形貌及结构进行了表征. 结果表明, 纳米Pd粒子的粒径均一, 大约为3 nm. 纳米Pd/PVP复合粉末的羰基红外吸收峰比PVP的羰基吸收峰红移9 cm-1; 且当超声反应50 min时, PVP紫外吸收波峰蓝移16 nm, 表明了纳米Pd与PVP之间存在一定的相互作用力. XPS结果证明, 纳米Pd与PVP的羰基基团通过配位作用使超细纳米Pd粒子得以稳定分散存在.  相似文献   

10.
以 (AgBr) m 团簇作晶种 ,在柠檬酸钠存在条件下 ,(AgBr) m 团簇表面结合的Ag+被光化学还原而获得土红色的液相 (AgBr) 核·(Ag) 壳 纳米粒子 .研究了 (AgBr) 核·(Ag) 壳 纳米粒子的光谱特性 ,在 51 2nm处有最强共振散射峰 ,在41 0nm处产生一个吸收峰 .结果表明 ,(AgBr) 核·(Ag) 壳 纳米粒子的形成是导致51 2nm共振光散射的根本原因 .  相似文献   

11.
Short-range order sodium dodecyl sulfate (SDS)-bound micelles and long-range order poly(vinylpyrrolidone) (PVP)?CSDS supramolecular assemblies in PVP?CSDS aqueous solution illustrate the potential template application in directing hierarchical assembly of inorganic nanostructure. In this paper, ginger-like Au nanobranches with equivalent circle diameter around 50?nm were prepared in PVP?CSDS aqueous solution under microwave irradiation through a one-pot, facile, rapid, and morphology-controlled synthesis route. Based on the experimental results, the possible growth mechanism of the ginger-like gold nanobranches is inferred to be a template-mediated and microwave-assisted hierarchical assembly via the unique co-effect of PVP?CSDS soft template and microwave irradiation. At first, the precursors AuCl 4 ? surrounding the SDS-bound micelles were rapidly reduced to Au0 by sodium citrate assisted by microwave irradiation and simultaneously assembled into abundant Au nanocrystals with diameters around 10?nm according to the bound micelle templates. And then several tiny Au nanocrystals linked by PVP chains within a limited space were instantly mediated by the long-range order PVP?CSDS supramolecular assemblies to fabricate into polycrystal ginger-like Au nanobranches. X-ray diffraction (XRD) pattern indicates that the Au nanobranches are face-centered cubic phase, which is verified by high-resolution transmission electron microscopy (HRTEM) images and selected area electron diffraction (SAED) pattern.  相似文献   

12.
在SDS-PVP水溶液中采用N2H4•H2O还原CuSO4, 在pH (10±0.5), (40±1.0) ℃条件下反应55 min得到橙色Cu2O溶胶, 离心分离产物经XRD鉴定为Cu2O立方晶系晶体; SEM和TEM表明该法获得的晶体为形状规整、粒径分布窄的Cu2O中空亚微球, 并证实系由大量10 nm量级的原级Cu2O纳米晶粒组装而成. 根据实验事实推断, SDS-PVP项链状软团簇提供了“双重软模板”功能, 借助独特的“模板诱导两级组装”作用一锅法合成了Cu2O中空亚微球. Cu2O中空亚微球生长的可能途径为: 首先, 项链状软团簇中的SDS束缚胶束作为第一重软模板, 诱导一级组装10 nm量级的原级Cu2O纳米晶粒; 然后, 软团簇中立体桥联SDS束缚胶束的PVP链节作为第二重软模板, 诱导一定空间范围内的原级Cu2O纳米晶粒长大并进一步聚集/二级组装, 经一锅法合成得到次级Cu2O中空亚微球. 实验结果证明该一锅法温和、简便、快捷, Cu2O中空亚微球的粒径分布窄.  相似文献   

13.
Poorly water-soluble drugs N-5159, griseofulvin (GFV), glibenclamide (GBM) and nifedipine (NFP) were ground in a dry process with polyvinylpyrrolidone (PVP) and sodium dodecyl sulfate (SDS). Different crystallinity behavior of each drug during grinding was shown in the ternary Drug/PVP/SDS system. However, when each ternary Drug/PVP/SDS ground mixture was added to distilled water, crystalline nanoparticles which were 200 nm or less in size were formed and had excellent stability. Zeta potential measurement suggested that the nanoparticles had a structure where SDS was adsorbed onto the particles that were formed by the adsorption of PVP on the surface of drug crystals. Stable existence of crystalline nanoparticles was attributable to the inhibition of aggregation caused by the adsorption of PVP and SDS on the surface of drug crystals. Furthermore, the electrostatic repulsion due to the negative charge of SDS on a shell of nanoparticles could be assumed to contribute to the stable dispersion.  相似文献   

14.
Gold nanoparticles with an average diameter of approximately 8 nm (Au approximately 15,000) were irradiated with a tightly focused pulse laser at 355 nm in an aqueous solution of sodium dodecyl sulfate (SDS). Transient absorption spectra of the solution were measured at 25-100 ns after the laser irradiation. The observed transient absorption around 720 nm is assignable to the 2p <-- 1s transition of solvated electrons produced via multiple ionization of the gold nanoparticles. The nascent charge state of the gold nanoparticles was estimated from the transient absorbance. The dependence of the charge state on the SDS concentration shows a gradual increase from approximately +60 to approximately +70 in the 2 x 10(-4) to 3 x 10(-4) M range and an abrupt increase up to approximately +710 at the critical micelle concentration (CMC) of SDS, 8 x 10(-3) M. TEM measurements after laser irradiation reveal that the gold nanoparticles fragment into Au(approximately 1000) at a SDS concentration of 3 x 10(-4) M, whereas they are significantly dissociated into Au(approximately 100) above the CMC. The observed correlation between the nascent charge states and the extent of size reduction of the gold nanoparticles after the laser treatment indicates that the size reduction is caused by the Coulomb explosion of the highly charged gold nanoparticles. The mechanism of laser-induced size reduction is quantitatively discussed based on the liquid drop model.  相似文献   

15.
纳米金掺杂中空微胶囊的制备与表征   总被引:1,自引:1,他引:0  
将表面含有双键的二氧化硅微粒分散在纳米金和聚乙烯吡咯烷酮溶液中.在此溶液中以聚乙烯吡咯烷酮为模板聚合物进行丙烯酸的模板聚合,得到二氧化硅为核、聚丙烯酸/聚乙烯吡咯烷酮/纳米金为壳层的核壳结构微粒.用氢氟酸将二氧化硅微粒去除后,得到了纳米金粒子掺杂的微胶囊.分别用扫描电子显微镜和激光共聚焦显微镜表征了微胶囊在干态和湿态下的形貌.通过电子衍射和透射电子显微镜确证了纳米金粒子在微囊壁上的存在和分布.  相似文献   

16.
Hollow calcium carbonate(CaCO3) microspheres with different morphologies were synthesized via the precipitation reaction of calcium chloride with sodium carbonate in the presence of different surfactant-polymer complexes. The selected anionic surfactants were sodium dodecyl sulfonate(SDS) and sodium dodecyl benzenesulfonate(SDBS), respectively. The selected water-soluble polymers were polyacrylic acid(PAA) and polyvinyl pyrrolidone(PVP). In this work, SDS-PVP “pearl-necklace model” micellar complex was formed via hydrophobic effectiveness between SDS and PVP and it served as the spherical template to generate spherical CaCO3 aggregates with hollow microspheres composed of about 500 nm irregular shaped particles. SDS-PAA complexes and SDBS-PAA complexes formed “core-shell model” aggregates with calcium ions serving as the medium to link the anionic surfactant and the polymer. SDS-PAA “core-shell model” aggregates would act as templates for hollow CaCO3 microspheres consisting of 30-50 nm irregular shaped crystallites. SDBS-PAA “core-shell model” aggregates served as the spherical aggregate templates to generate spherical CaCO3 aggregates consisted of many small spherical particles which had grown together. All the obtained CaCO3 hollow microspheres are calcite particles. This research may provide new insight into the control of morphologies of hollow CaCO3 microspheres in the presence of surfactant- polymer complexes.  相似文献   

17.
Polyhedral gold nanoparticles below 100 nm in size were fabricated by continuously delivered HAuCl(4) and PVP starting solutions into l-ascorbic acid aqueous solution in the presence of gold seeds, and under addition of sodium hydroxide (NaOH). By continuously delivered PVP and HAuCl(4) starting solutions in the presence of gold seed, the size and shape of polyhedral gold were achieved in relatively good uniformity (particle size distribution=65-95 nm). Morphological evolution was also attempted using different growth rates of crystal facets with increasing reaction temperature, and selective adsorption of PVP.  相似文献   

18.
Morphology and surface states of colloidal probucol nanoparticles after dispersion of probucol/polyvinylpyrrolidone (PVP)/sodium dodecyl sulphate (SDS) ternary ground mixture into water were investigated by atomic force microscopy (AFM). The observed particles had core-shell structure, i.e. drug nanocrystals were covered with PVP and SDS complex. The AFM phase image and the force curve analyses indicated that probucol nanoparticles with PVP K17 showed layer structure, compared to those with PVPK12. The structural difference was explainable in terms of the molecular states of PVP-SDS complex on the particle surface. These findings support not only the mechanism of drug nanoparticle formation but also the in vivo absorption results with the almost same particle size of ca. 40 nm.  相似文献   

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