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1.
在含Ni2+的2AlCl3/Et3NHCl离子液体中的铜电极上通过恒电位电沉积制备出金属Ni和Ni-Al合金.采用循环伏安和计时电流方法,揭示铜电极上沉积金属Ni的成核机理,研究了电沉积Ni-Al合金的机理,以及恒电位沉积Ni-Al合金工艺条件对沉积Ni-Al合金表面形貌和电流效率的影响.结果表明:在铜电极上电沉积金属Ni的成核机理为受扩散控制的三维瞬时成核过程.在电量≥3.0 C时,电沉积Ni-Al合金的组成基本不再变化.Ni-Al合金的电沉积机理为,Ni的电沉积受扩散控制,同时进行Al的欠电位沉积,在Ni-Al合金电沉积过程中某些Ni-Al合金相的沉积可能受动力学限制而使Ni-Al合金的组成偏离热力学预测结果.在电沉积Ni-Al合金的沉积电流小且平稳,电沉积速率慢条件下,Ni-Al合金表面形貌致密均一,反之就会出现瘤节.电沉积Ni-Al合金的电流效率>90%.电沉积物的组成接近于Ni3Al合金.  相似文献   

2.
CuCl对Et3NHCl/AlCl3离子液体催化性能的影响   总被引:12,自引:0,他引:12  
 用CuCl对Et3NHCl/AlCl3离子液体进行改性,并考察了其对异丁烷-丁烯烷基化反应的催化性能. 结果表明,烷基化油的收率达到178%,C8组分的含量达到85%,辛烷值(RON)达到94.8. 通过结构组成及电荷分布分析可知,在CuCl改性的Et3NHCl/AlCl3离子液体中形成了新的配位结构AlCl4CuCl-,它作为更好的碳正离子受体,在反应过程中可降低碳正离子的浓度,进而降低烯烃的聚合程度,抑制较长碳链烷烃的生成,改善烷基化油的组成.  相似文献   

3.
室温离子液体催化正己烷异构化反应的研究   总被引:2,自引:1,他引:1  
由无水三氯化铝与盐酸三乙胺按照不同摩尔比合成了具有不同酸度的室温离子液体,并考察了其酸性以及对正己烷异构化反应的催化性能。结果发现,随着离子液体合成时AlCl3比例的增大,离子液体的酸性增强,且离子液体2AlCl3/Et3NHCl对正己烷异构化显示出优良的催化性能。针对离子液体2AlCl3/Et3NHCl,考察了反应时间、反应温度和催化剂用量(剂油体积比)对正己烷异构化反应的影响。结果表明,反应条件对异构烷烃选择性的影响不大,但是对原料转化率、异构烷烃产率和液体收率有较大的影响。离子液体催化正己烷异构化的最佳反应条件,反应温度为50℃,反应时间为45min,剂油体积比为1∶1。  相似文献   

4.
NaCl对离子液体中电解精炼铝的影响   总被引:1,自引:0,他引:1  
研究了添加NaCl对BMIC-AlCl3离子液体电导率及电解精炼铝的影响,分析了阴极电流效率、电流密度的变化,并通过扫描电镜和能谱分析研究了沉积层的形貌及成分。结果表明,添加NaCl可以提高电解液的电导率,阴极电流效率也可提高至82%~96%,但电流密度则有所降低;添加NaCl还可以改善电解精炼铝的沉积质量,使晶粒尺寸...  相似文献   

5.
在NaCl-KCl-Tb4O7-AlF3体系中为了制备Al-Tb合金,首先对熔盐中的上清液和沉淀物进行了分析,X射线衍射(XRD)结果确定了Tb4O7能被AlF3氟化生成TbF3。采用一系列的电化学方法对NaCl-KCl-AlF3-Tb4O7体系在Mo电极上的电化学行为进行了研究。循环伏安、方波伏安、计时电位和开路计时电位等电化学方法的研究结果表明Tb(III)在预先沉积的Al电极上发生欠电位沉积。在不同条件下进行恒电流电解制备了Al-Tb合金,并对所得合金样品进行XRD和扫描电镜-能量散射谱(SEM-EDS)表征。结果表明在-2.5 A进行恒电流电解得到的Al-Tb合金是由Al和Al3Tb两相组成。采用电感耦合等离子体-原子发射光谱仪(ICP-AES)对实验所得沉积物的组成进行分析,研究了电解条件对合金组成和电流效率的影响。在电流强度为-1.5 A进行恒电流电解2 h,电流效率可达76.5%。  相似文献   

6.
采用恒电流和恒电位技术,以及路易斯酸氯化铝(III)-1-乙基-3-甲基咪唑氯化物离子液体中添加氯化镁(II),室温下在铂和铜阴极表面电沉积制备了铝-镁合金.合金层中镁的含量随离子液体中氯化镁浓度和所施加的阴极电流密度的增加而增加.采用X-射线衍射谱(XRD)、扫描电子显微镜(SEM)和能量散射X-射线谱(EDAX)技术,研究了不同电沉积实验条件得到的电沉积层的晶体结构及表面形貌.增加沉积电流密度,可以制备出致密、光亮和结合力良好的电沉积层.铝-镁合金电沉积的阴极电流效率可达99%.应用电化学石英晶体微天平(EQCM)技术研究了电沉积合金的组成.根据重声阻抗分析得到的质量-电荷(m-Q)曲线斜率计算了金属共沉积层的化学成分.  相似文献   

7.
本研究利用AlCl3-EMIC离子液体在AZ91D镁合金表面电镀铝金属,探讨离子液体组成及电流密度对电镀层性质的影响.研究结果显示铝金属可以成功地电镀于AZ91D镁合金表面上.在-0.2 V的电位下,在60 m/o AlCl3离子液体中可以获得较佳的电镀铝层.另外,在低定电流密度下进行电镀,电流效率较佳,镀层较厚.于3.5%NaCl(by mass)溶液中,铝金属镀层可以大幅提升镁合金之开路电位,并使其表面活性下降.电化学交流阻抗频谱分析显示,镁合金裸材于3.5%NaCl(by mass)水溶液中之极化阻抗值约为470~510Ω.cm2,镀铝之镁合金极化阻抗值则可提升至5200Ω.cm2.极化曲线则显示,镀铝之镁合金可以被钝化,其钝化电流密度低至5×10-5A/cm2.  相似文献   

8.
陈惠  唐有根  唐征 《电化学》2003,9(4):402-409
以贮氢合金电极作催化还原电极,恒电位电解葡萄糖,发现合金经表面处理及电极的活化后,即可提高电流效率,在最优条件下,电解葡萄糖制山梨醇电流效率高达90%,葡萄糖转化率达80%以上.测试了电极的使用寿命,同时对电极中毒及再生方法进行了探讨.  相似文献   

9.
引发剂对离子液体催化正己烷异构化反应的影响   总被引:3,自引:1,他引:2  
由无水三氯化铝与盐酸三乙胺按照摩尔比2∶1合成了离子液体2AlCl3/Et3NHCl,并考察了其催化正己烷异构化的反应性能。发现离子液体2AlCl3/Et3NHCl可用于催化正己烷的异构化反应,但所需的反应时间较长。考察了引发剂正丁醇、异丁烯、异丁烷和异戊烷对离子液体催化正己烷异构化反应的影响。发现异戊烷作为引发剂时,正己烷的转化率为84.54%,液体收率为80.08%,异构烷烃的选择性为94.74%,达到了较好的反应效果。引发剂异戊烷的用量对异构化反应有着较大的影响,较优的引发剂用量为30%。添加异戊烷引发剂能明显提高离子液体催化正己烷异构化的反应速度,达到相似反应程度的反应时间可由6h缩短为45min。  相似文献   

10.
Na3AlF6-LiF熔盐体系中硅的电沉积行为   总被引:1,自引:0,他引:1  
研究了Na3AlF6-LiF体系中硅沉积的电化学行为及影响因素, 并分别采用电解沉积和电解精炼方法获得了单质硅. 结果表明: Si(IV)的电化学还原过程分步进行, 在有单质硅存在的情况下, 还发生反应Si(IV)+Si=2Si(II); 一般情况下Al的析出电位比Si要负, 但在电极表面Si离子匮乏的情况下, Al会与Si共沉积; 固态电极上恒流电解沉积硅呈颗粒状并与电解质夹杂, 通过分离可以获得单质硅, 所获硅纯度高于99.9%. 电解精炼在大电流密度条件下可以稳定进行, 阳极电流效率高于95%, 电解精炼硅纯度比直接电沉积硅纯度有明显提高.  相似文献   

11.
Aluminum was successfully electrodeposited on Al electrodes from aluminum chloride (AlCl3)/triethylamine hydrochloride (Et3NHCl) ionic liquids by the constant potential electrolysis. Electrical conductivities of AlCl3/Et3NHCl ionic liquids were measured as a function of the temperature and composition. The nucleation processes and the influence of experimental conditions on the current efficiency and surface morphology of aluminum electrodeposits were studied on Al electrodes from 2:1 molar ratio AlCl3/Et3NHCl ionic liquid. The electrical conductivities of ionic liquids increased as the electrolyte temperature increased, following the Arrhenius behavior. Analyses of the chronoamperograms indicated that the deposition process of aluminum on Al substrates was controlled by instantaneous nucleation with diffusion-controlled growth. Constant potential deposition experiments showed that the electrodeposits obtained on Al electrodes were dense, continuous, and well adherent, and the current efficiency was 73% at −2.4 V(vs Pt) for 20 min electrolysis at room temperature. The purity of aluminum electrodeposits on Al electrodes was above 96% (w).  相似文献   

12.
Ni2+的引入对离子液体烷基化催化性能的影响   总被引:2,自引:0,他引:2  
Thealkylationofisobutanewithbuteneisanim portantprocessforthe productionofhigh qualitypetroleum .In placeofconcentratedsulfuricacid ,Et3NHCl/AlCl3ionicliquidhasbeenusedinthereac tionwithfairlygoodeffect[1] ,butthereisstillabigdifferencecomparedwiththeresultsofconcentratedsulfuricacid .TheC8contentinthealkylatesobtainedwithconcentratedsulfuricacidwas 72 1% [2 ] ,butitwasonly 5 6 %withtheionicliquid .ThekeyreactioninthealkylationishydrogentransferfromC+8toC08[3] ,andthisisthemainreasonforth…  相似文献   

13.
室温离子液体催化正戊烷异构化反应   总被引:3,自引:2,他引:1  
采用无水三氯化铝与多种有机氯盐按照不同摩尔比合成了具有不同酸度和阴、阳离子结构的室温离子液体,考察了离子液体的结构和反应条件对正戊烷异构化反应的影响。结果表明,合成离子液体过程中,AlCl3与Et3NHCl摩尔比对离子液体的酸强度和催化性能有较大的影响。实验确定了正丁醇为异构化反应适宜的引发剂,其用量为正戊烷的2.5%;正戊烷异构化的优化反应条件为反应温度30℃,反应10h,搅拌器转速1500r/min。在此优化反应条件下,正戊烷的转化率与异构化率分别达到85.66%和92.86%。  相似文献   

14.
In the present paper, the electrodeposition of Al on flame-annealed Au(111) and polycrystalline Au substrates in two air- and water-stable ionic liquids namely, 1-butyl-1-methyl-pyrrolidinium bis(trifluoromethylsulfonyl)amide, [Py(1,4)]Tf(2)N, and 1-ethyl-3-methyl-imidazolium bis(trifluoromethylsulfonyl)amide, [EMIm]Tf(2)N, has been investigated by in situ scanning tunneling microscopy (STM), electrochemical quartz crystal microbalance (EQCM), and cyclic voltammetry. The cyclic voltammogram of aluminum deposition and stripping on Au(111) in the upper phase of the biphasic mixture of AlCl(3)/[EMIm]Tf(2)N at room temperature (25 degrees C) shows that the electrodeposition process is completely reversible as also evidenced by in situ STM and EQCM studies. Additionally, a cathodic peak at an electrode potential of about 0.55 V vs Al/Al(III) is correlated to the aluminum UPD process that was evidenced by in situ STM. A surface alloying of Al with Au at the early stage of deposition occurs. It has been found that the Au(111) surface is subject to a restructuring/reconstruction in the upper phase of the biphasic mixture of AlCl(3)/[Py(1,4)]Tf(2)N at room temperature (25 degrees C) and that the deposition is not fully reversible. Furthermore, the underpotential deposition of Al in [Py(1,4)]Tf(2)N is not as clear as in [EMIm]Tf(2)N. The frequency shift in the EQCM experiments in [Py(1,4)]Tf(2)N shows a surprising result as an increase in frequency and a decrease in damping with bulk aluminum deposition at potentials more negative than -1.8 V was observed at room temperature. However, at 100 degrees C there is a frequency decrease with ongoing Al deposition. At -2.0 V vs Al/Al(III), a bulk aluminum deposition sets in.  相似文献   

15.
The electrochemistry of Hf(IV) and the electrodeposition of Al–Hf alloys were examined in the Lewis acidic 66.7–33.3 mol% aluminum chloride-1-ethyl-3-methylimidazolium chloride molten salt containing HfCl4. When cyclic staircase voltammetry was carried out at a platinum disk electrode in this melt, the deposition and stripping waves for Al shifted to negative and positive potentials, respectively, suggesting that aluminum stripping is more difficult due to the formation of Al–Hf alloys. Al–Hf alloy electrodeposits containing ~13 at.% Hf were obtained on Cu rotating wire and cylinder electrodes. The Hf content in the Al–Hf alloy deposits depended on the HfCl4 concentration in the melt, the electrodeposition temperature, and the applied current density. The deposits were composed of dense crystals and were completely chloride-free. The chloride-induced pitting corrosion potential of the resulting Al–Hf alloys was approximately +0.30 V against pure aluminum when the Hf content was above 10 at.%.  相似文献   

16.
The electrochemistry of indium species was investigated at glassy carbon, tungsten and nickel electrodes in a basic 1‐ethyl‐3‐methylimidazolium chloride/tetrafluoroborate ionic liquid. Amperometric titration experiments suggest that In(III) chloride is complexed as [InCl5]2? in this ionic liquid. The electrochemical reduction of [InCl5]2? to indium metal is preceded by overpotential driven nucleations. The effective anodic dissolution of indium to indium(III) requires, however, the presence of sufficient chloride ions at the electrode surface. The electrodeposition of indium at glassy carbon and tungsten electrodes proceeds via three‐dimensional instantaneous nucleation with diffusion‐controlled growth of the nuclei. At the nickel electrode, the deposition proceeds via three‐dimensional progressive nucleation with diffusion‐controlled growth of the nuclei. Raising the deposition temperature decreases the average radius of the individual nuclei, r. Scanning electron microscopic and x‐ray diffraction data indicated that bulk crystalline indium electrodeposits could be prepared on nickel substrates within a temperature range between 30 and 120 °C.  相似文献   

17.
Electrophilic nitration of aromatics in ionic liquid solvents.   总被引:10,自引:0,他引:10  
Potential utility of a series of 1-ethyl-3-methylimidazolium salts [emim][X] with X = OTf-, CF3COO-, and NO3- as well as [HNEtPri2][CF3COO] (protonated Hünig's base) ionic liquids were explored as solvent for electrophilic nitration of aromatics using a variety of nitrating systems, namely NH4NO3/TFAA, isoamyl nitrate/BF3.Et2O, isoamyl nitrate/TfOH, Cu(NO3)/TFAA, and AgNO3/Tf2O. Among these, NH4NO3/TFAA (with [emim][CF3COO], [emim][NO3]) and isoamyl nitrate/BF3.Et2O, isoamyl nitrate/TfOH (with [emim][OTf]) provided the best overall systems both in terms of nitration efficiency and recycling/reuse of the ionic liquids. For [NO2][BF4] nitration, the commonly used ionic liquids [emim][AlCl4] and [emim][Al2Cl7] are unsuitable, as counterion exchange and arene nitration compete. [Emim][BF4] is ring nitrated with [NO2][BF4] producing [NO2-emim][BF4] salt, which is of limited utility due to its increased viscosity. Nitration in ionic liquids is surveyed using a host of aromatic substrates with varied reactivities. The preparative scope of the ionic liquids was also extended. Counterion dependency of the NMR spectra of the [emim][X] liquids can be used to gauge counterion exchange (metathesis) during nitration. Ionic liquid nitration is a useful alternative to classical nitration routes due to easier product isolation and recovery of the ionic liquid solvent, and because it avoids problems associated with neutralization of large quantities of strong acid.  相似文献   

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