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11.
硫代乙酰胺体系电沉积法制备CdS纳米膜   总被引:6,自引:0,他引:6  
The film of surface active agents spread out on the surface of the electrolyte of Thioacetamide and cadmium chloride. CdS nanofilm was deposited at the interface of surface active agents and electrolyt by the method of electrodeposition. The optimal conditions on which the nanofilm was prepared of the least crystals and uniform particles could be attained via analytical results of L16(45) orthogonal experiments. The optimal conditions: castor oil/hexadecanoll 0.06 mL·cm-2,CdCl2/CH3CSNH2 4 mmol·L-1, cell voltage 5 V, electrodeposition temperature 15 ℃. The effects on the grain size of temperature, surface-active agent, electrodyte concentration, cell voltage and pH become smaller in the series. If the temperature was high, the movement of molecules of surface-active agent and electrodyte would be faster, thus the preparation of the film would be difficult. The grain size of thinfilm varied with the surface-active agents, however, when the amount of surface-active agents reached a certain value, the grain size would remain unchanged. The higher the electrodyte concentration, the larger the grain size of nanofilm. The surface forms were changed at the same time. If the pH of the electrodyte was higher or lower, nanofilm could not be prepared successfully, thus the pH range should be is 3~6. SEM image of the nanofilm shows the occurance of dendrite. The sucessful preparation of nanofilm is closely related to the nature of surface activre agent due to the nanofilm growth mechanism.  相似文献   
12.
表面修饰纳米CdS制备中两个重要影响因素及结构表征   总被引:12,自引:0,他引:12  
利用溶胶-凝胶法制备了PVP表面修饰的CdS纳米晶粒。考察了影响纳米CdS制备的两个重要因素Cd2+/S2-和PVP,及其作用机理。确证表面过剩S2-和PVP在反应体系中的作用是在较高浓度下制备纳米CdS的两个重要因素,进一步确定了PVP的最佳用量。通过TEM、ED、XRD、FT-IR等手段对合成的纳米粒子进行了结构表征,最小粒径为7~10nm,闪锌矿构型,粒子大小及形貌可通过改变Cd2+/S2-及反应物浓度来控制。最后给出了CdS/PVP纳米晶粒的结构模型。  相似文献   
13.
CdS nanoparticles have been prepared and modified with mercaptoacetic acid. The functionalized nanoparticles are water-soluble and biocompatible. They could be used as a fluorescence probe in the determination of bovine serum albumin (BSA), which was proved to be a simple, rapid and specific method. In comparison with single organic fluorophores, these nanoparticle probes are brighter, more stable against photobleaching, and do not suffer from blinking. Under the optimum conditions, the response is linearly proportional to the concentration of BSA between 0.1 and 3.2 μg ml−1, and the limit of detection is 0.08 μg ml−1.  相似文献   
14.
TiO2-CdS-MCM-41复合纳米材料的合成和表征   总被引:4,自引:0,他引:4  
利用γ-巯丙基三甲氧基硅烷及表面预吸附水解技术在MCM-41介孔分子筛孔道内部以化学键合的形式依次引入了CdS和TiO2纳米粒子.紫外-可见吸收光谱结果表明,借助于巯基的络合能力,MCM-41能有效地从反胶束中萃取CdS纳米粒子.利用小角XRD谱图成功地跟踪观察到了MCM-41介孔分子筛随纳米粒子的引入而产生的孔径变化.  相似文献   
15.
Na2O-B2O3-SiO2 (NBS) gels containing a large amount of CdS quantum-dots (10 wt%) were densified using the hot press (HP) sintering method. By HP treatment, full-densification temperature could be lowered by about 40°C than that of the normal non-pressing (NP) heat treatment. Exciton absorption of CdS quantum-dots in HP-sample showed a large blue shift compared with that in the NP sample, and the size-distribution of CdS dots remained very sharp, with a mean particle diameter d = 3.66 nm and a standard deviation of = 0.72. HP pressure had a large effect on the reduction of sintering temperature and time, resulting in the suppression of the aggregation and growth of CdS quantum-dots in NBS glasses.  相似文献   
16.
0IntroductionStudies of direct electrochemistry of proteins orenzymes at electrodes can serve as a basis for build-ing electrochemical biosensors,enzymatic bioreactors,and biomedical devices[1].This approach simplifiessuch devices without using mediators and is of partic-ular significance for fabricating the third generationbiosensors[2].For example,if a protein or enzyme im-mobilized on electrode surface is capable of directelectron transfer without loss of bioactivities,it can beused in the …  相似文献   
17.
以聚酰胺-胺树形分子为模板制备了分散好、尺寸均匀的CdS量子点,并用分光光度滴定法研究了Cd2+、Zn2+、Pb2+、Cu2+、Mn2+几种金属离子对其光致发光性能的影响。发现不同离子对CdS量子点的发光性能影响不同:Cd2+和Zn2+使量子点荧光增强,Pb2+、Cu2+和Mn2+使其荧光有不同程度淬灭。这归因于金属离子对CdS量子点表面的修饰作用。Cd2+能减少由S2-悬键构成的非辐射复合中心,增强树形分子对量子点表面缺陷的钝化作用,并能在量子点周围形成类肖特基能垒,从而显著增大CdS量子点的光致发光效率。由于ZnS与CdS的晶格参数非常接近,Zn2+能起到与Cd2+类似的作用,使CdS量子点的发光效率大大增强。Pb2+和Cu2+能取代Cd2+在CdS量子点表面生成窄带隙的壳层,对其发光有很强的淬灭作用。由于块体PbS的带隙比块体CuS窄,故Pb2+的淬灭能力强于Cu2+。Mn2+能破坏Cd2+与PAMAM树形分子的配位键,降低树形分子对CdS量子点表面缺陷的钝化作用,且其本身在量子点表面构成了新的荧光淬灭中心,但Mn2+也能形成较弱的类肖特基能垒,故对量子点的发光淬灭作用较弱。  相似文献   
18.
IntroductionNano-sized semiconductors are of great interestdue to their special optical and electronic proper-ties[1,2].As one of the mostimportantⅡ—Ⅵsemicon-ductors,CdS has importantapplications in many fields,such as the solar cell field,non linear o…  相似文献   
19.
A sandwiched structure of CdS/Ag/ZnO nanorod photoanode exhibits greatly enhanced photoelectrochemical activity for solar hydrogen generation, due to synergistic effect of CdS nanocrystallites and plasmonic Ag nanoparticles for the enhanced optical absorption and the promoted charge carrier separation.  相似文献   
20.
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