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1.
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   

2.
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   

3.
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   

4.
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   

5.
张卫国  刘洋  李贺  姚素薇 《催化学报》2006,27(11):967-970
 采用电沉积方法制备了Ni-W-P合金镀层,并在不同温度下进行热处理,通过极化曲线和交流阻抗谱研究了热处理温度对Ni-W-P合金催化析氢性能的影响. 结果表明,经200 ℃热处理的Ni-W-P合金电极析氢过电位最低,在电流密度为8.0 mA/cm2时,其析氢过电位较未经热处理的Ni-W-P合金电极减小约110 mV. 该样品的析氢电化学反应电阻为17.1 Ω·cm2, 交换电流密度约为未经热处理的Ni-W-P合金的5.0倍,析氢反应表观活化能降低. 差示扫描量热法、 X射线衍射和扫描电镜测试结果表明, Ni-W-P合金镀层经200 ℃热处理后发生低温结构弛豫,平均晶粒尺寸由1.1增大到2.8 nm, 合金由非晶结构转变为纳米晶结构,镀层表面形成宽度约为0.2 μm的微裂纹.  相似文献   

6.
三种添加剂对纳米晶锌镀层电沉积行为及结构的影响   总被引:1,自引:0,他引:1  
运用极化曲线、XRD和SEM研究了三种有机添加剂对酸性硫酸盐溶液中锌电沉积行为以及纳米晶锌镀层结构的影响.结果表明,十六烷基三甲基溴化铵(CTAB)、4-苯基-3-丁烯-2-酮(BA)和聚乙二醇(PEG)三种添加剂之间具有较强的协同作用,采用三者组成的混合添加剂可制备出光亮致密的纳米晶锌镀层.镀层晶粒细化的主要原因在于混合添加剂可有效提高锌的沉积过电位,使锌沉积过程中的晶核形成速率增大.  相似文献   

7.
不同形状TiO2纳米材料在耐NaCl溶液及微生物腐蚀中的应用   总被引:2,自引:0,他引:2  
马洁  刘辉  石英  贺晶  姚忠科 《应用化学》2008,25(7):815-0
采用电沉积方法研究制备了分别含TiO2纳米球、TiO2纳米线和TiO2纳米管的一系列Ni-P-Cr基复合镀层的耐海水微生物腐蚀的新型复合材料.TiO2纳米材料的形貌采用TEM表征.以SEM、EDX测试技术研究了复合镀层的表面形貌和元素组成.并分别在质量分数为3.5%NaCl溶液及以硫酸盐还原菌(SRB)为腐蚀介质,应用极化曲线和电化学阻抗谱法(EIS)研究了各种复合镀层的耐蚀和抗菌性能.结果表明,含TiO2纳米管的Ni-P-Cr基复合镀层具有更优良的耐电解质及微生物腐蚀性能.  相似文献   

8.
电沉积二氧化钛纳米微粒膜的光电化学性能和表面形貌研究   总被引:20,自引:1,他引:19  
采用光电流谱、透射光谱和扫描微探针显微镜技术对电沉积法制备的二氧化钛纳米微粒膜的光电化学性能和表面形貌进行了研究.结果表明,不同制备条件下的二氧化钛纳米微粒膜具有与紧密的半导体电极不同的光电化学性质,并探讨了其光电化学性能与表面形貌的关系.  相似文献   

9.
利用脂肪醇聚氧乙烯醚型非离子表面活性剂Marlipal O13/50、水、环己烷组成的W/O微乳液体系合成纳米Pd微粒, 考察了化学破乳剂作用下纳米Pd微粒的沉积过程. 结果表明, 不同化学破乳剂使纳米Pd微粒沉积的速率顺序为1,4-二噁烷跃四氢呋喃跃甲醇跃乙醇跃正丁醇. 研究了化学破乳剂对微乳液界面张力与两亲因子的影响. 结果表明, 微乳液结构的破坏是界面张力增大的过程, 同时也是两亲性降低而向Lifschitz线逐渐靠近的过程.  相似文献   

10.
采用水热法制备了钛基纳米金微粒修饰电极(Au/Ti)。扫描电镜图表明纳米金颗粒粒径大约为300 nm,在钛基体表面构成三维多孔网状结构。运用循环伏安,电位阶跃和交流阻抗等电化学技术研究了碱性介质中甲醛在Au/Ti电极上的电氧化行为。循环伏安图显示,甲醛在Au/Ti上的起始氧化电位在-0.90 V左右,相对于多晶金电极提前大约0.2 V,交流阻抗测试表明,甲醛在Au/Ti电极上电氧化表现出低的电荷传递电阻。研究结果表明钛基纳米金微粒修饰电极对甲醛氧化具有良好的电催化活性。  相似文献   

11.
Gold nanoparticles were electrodeposited directly for the first time from a new electrolyte system: water-in-ionic liquid (W/IL) microemulsion. The electrochemical behavior of Au(Ш) in W/IL microemulsion was investigated. The cyclic voltammetry (CV) result of Au(Ш) shows a pair of redox peak. The effect of precursor apparent concentration on the reduction peak current density is similar to that in homogeneous solution such as aqueous solution. The effect of scan rate on the reduction peak current density is different from that in homogeneous solution. Linear-sweep voltammograms result for a rotating disk electrode in the W/IL microemulsion suggests that the reduction is kinetically limited and not transport limited. And also the activation energy of the reaction was calculated to be 26.7 KJ mol?1. The gold electrodeposits were characterized by scanning electron microscopy and X-ray diffraction. It is found that the gold electrodeposits are face-centered cubic and nanosized. Furthermore, the potential mechanism for the electrode reaction was proposed. In addition, the electrochemical properties of the gold nanoparticles were researched through the electro-oxidation of glycerol. The CV and electrochemical impedance spectroscopy studies demonstrate that the gold nanoparticles electrodeposited from W/IL microemulsion have much higher electro-catalytic activities than bare gold for glycerol oxidation.  相似文献   

12.
A carbon molecular wire electrode was fabricated using diphenylacetylene as the modifier and gold nanoparticles were electrodeposited on the surface. The morphology and electrochemical properties of this modified electrode were investigated by scanning electron microscopy and electrochemical impedance spectroscopy. Two well-defined peaks for metol appeared using this gold nanoparticle-modified carbon molecular wire electrode by cyclic voltammetry with a high current response. These results demonstrate a synergistic effect between the gold nanoparticles and the carbon molecular wire electrode resulting in a rapid electrochemical reaction. The electrochemical conditions for metol were optimized on the modified electrode and a detection limit of 0.64?µmol/L and a linear dynamic range between 2.0 to 800.0?µmol/L were obtained. This modified electrode provided good selectivity, high sensitivity, and acceptable reproducibility, demonstrating promise for the determination of metol in the water.  相似文献   

13.
The electrochemical reduction of di-carboxylic acids; oxalic, succinic, malic, and tartaric have been studied on the gold nanoparticles modified electrode in aqueous media solution of 0.1 M KCl. Gold nanoparticle (AuNPs)-modified electrodes were prepared by the electrodeposition with cyclic voltammetric method onto glassy carbon electrode in acidic media. The surface morphology of the electrodeposited gold nanoparticles was examined by SEM. Also, the electrochemical properties of the prepared electrodes were investigated with different electrochemical techniques; cyclic voltammetry, chronoamperometry, and electrochemical impedance spectroscopy. Cyclic voltammetric, chronoamperometric, and electrochemical impedance spectroscopic techniques were used for investigating the electrochemical behavior of the particulate acids. The modification of the electrode with Au nanoparticles (AuNPs) enables the appearance of cyclic voltammogram peaks completely clear and sharp for the acids under investigation in comparison with the poor behavior of them in absence of the modification. All acids undergo totally irreversible redox reaction in neutral and acid media. The cyclic voltammetric response of the investigated acids is sensitive to pH, as well as of the scan rate. Each acid has a different reduction peak position from the other acids depending on the structure of the acid undergo the electroreduction process. Further, the lowest unoccupied molecular orbital energies of the investigated acids have been theoretically evaluated and are compared with their electroreduction potential peaks.  相似文献   

14.
A novel strategy to fabricate a hydrogen peroxide sensor based on Ag nanoparticles electrodeposited on chitosan-graphene oxide nanocomposites/cysteamine-modified gold (Au) electrode was reported. The chitosan-graphene oxide nanocomposites were first assembled on a cysteamine-modified Au electrode to produce chitosan-graphene oxide/cysteamine/Au electrode. Then Ag nanoparticles were electrodeposited on the modified Au electrode and formed Ag nanoparticles/chitosan-graphene oxide/cysteamine/Au electrode. The chitosan-graphene oxide nanocomposites and the electrodeposited Ag nanoparticles were characterized by atomic force microscopy and scanning electron microscopy. The results showed the Ag nanoparticles were uniformly dispersed on the chitosan-graphene oxide/cysteamine/Au electrode. The cyclic voltammagrams and amperometric method were used to evaluate electrocatalytic properties of the Ag nanoparticles/chitosan-graphene oxide/cysteamine/Au electrode. The results showed that the modified electrode displayed good electrocatalytic activity to the reduction of hydrogen peroxide with a detection limit of 0.7 μM hydrogen peroxide based on a signal-to-noise ratio of 3. The sensor has good reproducibility, wide linear range, and long-term stability.  相似文献   

15.
银纳米修饰电极的制备及电化学行为   总被引:7,自引:0,他引:7       下载免费PDF全文
金属纳米粒子由于其小的体积和大的比表面积而具有独特的电子、光学和异相催化特性,是目前表面纳米工程及功能化纳米结构制备的一种理想研究对象[1]。银纳米粒子可广泛应用于催化剂材料、电池的电极材料、低温导热材料和导电材料等,成为近年来人们研究的热点[2,3]。在电化学方面,银纳米粒子具有比其他纳米粒子更为优异的导电性能和电催化性能。因此,研究银纳米粒子修饰电极有重要的应用价值和前景[4]。1实验部分1.1仪器CHI660电化学工作站(USA);TU-1901型双光束紫外可见分光光度计(北京普析通用仪器公司);KQ-100型超声清洗器(昆山市超声…  相似文献   

16.
界面可控硫醇SAMs纳米金修饰金电极的电化学行为研究   总被引:1,自引:0,他引:1  
在裸金电极上自组装不同比例的4,4’-二甲基联苯硫醇(MTP)和硫辛酸(TA)混合液,形成自组装膜(MTP+TA/Au SAMs),再修饰纳米金,制得纳米金混合巯基修饰金电极(AuNPs/MTP+TA/Au)。研究了纳米金混合巯基修饰金电极的电化学行为和阻抗行为,结果表明电极表面pH值的改变对电极表面的电子转移有重要影响。对葡萄糖传感器的制备条件、测定条件、抗干扰能力等进行了讨论,结果表明修饰电极的微结构和微环境有必要进一步研究。  相似文献   

17.
In this paper, a carbon ionic liquid electrode (CILE) was fabricated using ionic liquid 1-hexylpyridinium hexafluorophosphate as modifier, which was further in situ electrodeposited with graphene (GR) and gold nanoparticles step by step to get an Au/GR nanocomposite modified CILE. Myoglobin (Mb) was further immobilized on the Au/GR/CILE surface with Nafion film to get the modified electrode denoted as Nafion/Mb/Au/GR/CILE. Cyclic voltammetric experiments indicated that a pair of well-defined quasi-reversible redox peaks appeared in pH 3.0 phosphate buffer solution with the formal potential (E 0′) located at ?0.197 V (vs. saturated calomel electrode), which was the typical characteristics of Mb heme Fe(III)/Fe(II) redox couples. Thus, the direct electron transfer rate between Mb and the modified electrode was promoted due to the high conductivity and increased surface area of Au/GR nanocomposite present on electrode surface. Based on the cyclic voltammetric data, the electrochemical parameters of Mb on the modified electrode were calculated. The Mb-modified electrode showed excellent electrocatalytic activities towards the reduction of trichloroacetic acid and H2O2 with wider linear range and lower detection limit. Using GR and Au nanoparticles modified CILE, a new third-generation electrochemical Mb biosensor was constructed with good stability and reproducibility.  相似文献   

18.
The immobilization of anti-IgG on Au-colloid modified gold electrodes has been investigated. A cleaned gold electrode was first immersed in a mercaptoethylamine (AET) solution, and then gold nanoparticles were chemisorbed onto the thiol groups of the mercaptoethylamine. Finally, anti-IgG was adsorbed onto the surface of the gold nanoparticles. Potentiometric immunosensor, cyclic voltammetry, and electrochemical impedance techniques were used to investigate the immobilization of anti-IgG on Au colloids. In the impedance spectroscopic study, an obvious difference of the electron transfer resistance between the Au-colloid modified electrode and the bare gold electrode was observed. The cyclic voltammogram tends to be more irreversible with increased anti-IgG concentration. Using the potentiometric immunosensor, the proposed technique is based on that the specific agglutination of antibody-coated gold nanoparticles, averaging 16 nm in diameter, in the presence of the corresponding antigen causes a potential change that is monitored by a potentiometry. It is found that the developed immunoagglutination assay system is sensitive to the concentration of IgG antigen as low as 12 ng mL(-1). Experimental results showed that the developed technique is in satisfactory agreement with the ELISA method, and that gold nanoparticles can be used as a biocompatible matrix for antibody or antigen immobilization.  相似文献   

19.
A novel biochemical sensor was assembled on a glass carbon electrode by a electrodeposition process. Gold nanoparticles were deposited by potential +1.5 V on the glass carbon electrode. CT-DNA was deposited by potential +1.5 V on the gold nanoparticles array electrode. The properties of the modified electrode were characterized by electrochemical impedance spectroscopy (EIS), X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM). Our results showed that gold nanoparticles increase the DNA membrane capacitance and reduce the membrane resistance. This modified electrode can selectively determine uric acid and norepinephrine in the presence of a larger amount of ascorbic acid. The fabricated electrode showed good sensitivity, reproducibility, and stability.  相似文献   

20.
以甲基丙烯酸为功能单体,氧化乐果为印迹分子,构建了一种可用于检测果蔬中氧化乐果和乐果的分子印迹传感器。在金电极上电沉积金纳米粒子,然后将修饰电极浸入10 mL含有氧化乐果和甲基丙烯酸的聚合物溶液中进行9次循环电聚合(-0.3~0.3 V),无水甲醇/乙酸洗涤除去模板分子。循环伏安法和电化学阻抗谱表征传感器,差分脉冲伏安法用于电化学测量过程。当孵育时间为5 min,磷酸盐缓冲液为pH 7.0时,氧化乐果和乐果的线性范围分别为0.1~26 nmol/L和5~20 nmol/L,线性回归方程分别为Ip=0.6619c(mol/L)+3.1703(R2=0.9954)和Ip=0.5267c(mol/L)+6.4028(R2=0.9902),检测限分别为0.1 pmol/L和1 pmol/L。该分子印迹传感器对敌百虫、倍硫磷、马拉硫磷、高灭磷、氯丹、溴氰菊酯和呋喃丹基本没有电流响应,对分析氧化乐果和乐果具有潜在的应用价值。  相似文献   

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