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1.
本文通过阳极氧化法直接在铜片上生长出纳米氧化亚铜阵列,所得到的样品通过扫描电子显微镜(SEM),紫外可见漫反射(UV-Vis diffuser reflectance),X-射线光电子能谱(XPS)等方法进行了表征,并研究了不同形貌氧化亚铜的杀菌效果.实验结果表明:反应过程中在阳极液中加入一定量的CTAB,有助于氧化亚铜的定向生长.通过控制反应条件(如电流密度,温度,和反应时间),可以得到不同形貌的氧化亚铜.随着电流密度的增大,氧化亚铜的形貌从网状,片状到棒状进行转化.所得到氧化亚铜的禁带宽度为1.95 eV.用所得样品进行杀菌实验,1 h内棒状氧化亚铜的杀菌率达到90.85%,而其它形貌的氧化亚铜杀菌率只有50%左右,与空铜片的杀菌率30%相比,所制得氧化亚铜具有较好的杀菌效果.  相似文献   

2.
采用湿化学合成路线以巯基乙酸为包覆剂,水为溶剂制备了六方相ZnIn2S4。应用能谱分析(EDS)、X射线衍射(XRD)、透射电镜(TEM)、扫描电镜(SEM)和紫外-可见光谱对产物的组成、结构、形貌和光学性质进行了表征。结果表明,所得到的ZnIn2S4具有层状形貌。这些层状物是由ZnIn2S4纳米粒子前驱体在热处理过程中聚集生长而成的。另外,以ZnIn2S4纳米粒子前驱体为起始原料,借助表面活性剂的导向作用在固/液界面成功地实现了ZnIn2S4的形貌控制生长,得到了具有棒状、棒簇状、管簇状形貌的ZnIn2S4。根据实验结果,初步讨论了可能的表面活性剂辅助的ZnIn2S4形貌控制生长的机制。  相似文献   

3.
为提高LiNi_(0.8)Co_(0.15)Al_(0.05)O_2(NCA)材料的电化学性能,在NCA材料的制备过程中加入聚乙烯吡咯烷酮(PVP),通过调控所得NCA材料的形貌来提高其电化学性能。所得材料采用X射线衍射仪和扫描电子显微镜进行形貌结构表征,电化学性能经组装成纽扣电池,用电池程控测试仪和电化学工作站进行测试。研究结果表明:由于PVP的空间效应和静电作用,PVP改性的NCA材料拥有更完整的棒状结构、发育出更好的层状结构,电化学储能性能得到较大的提升。在0.1C下,材料的首次放电比容量和充放电效率分别从143.36 mAh·g~(-1)、78.25%提高到了170.24 mAh·g~(-1)、89.20%;在0.2C的实验室条件下循环50次后,容量保持率为94.28%。  相似文献   

4.
采用聚丙烯酰胺(PAM)为软模板,在CuSO4、Na2SO3体系中调控合成了片状、海胆状、一维线、针状聚集体氧化亚铜晶体。研究了不同浓度Cu2+、不同PAM含量及不同温度对晶体生长的影响。结果表明,PAM促使氧化亚铜异相成核,氧化亚铜形貌随PAM质量分数的变化而变化:当c(Cu2+)=0.5mol.L-1时,PAM质量分数为3.0%(常温引入体系),产物主要为片状晶体;PAM质量分数为1.0%、3.0%时(高温引入体系),分别获得一维线状、海胆状晶体;当Cu2+浓度为0.1 mol.L-1时,体系中高温引入质量分数3.0%的PAM,得到片层状晶体;当Cu2+浓度为0.3、0.4 mol.L-1时,得到针状聚集体氧化亚铜晶体。分别用X射线粉末衍射、冷场发射扫描电子显微镜和激光粒度仪对所制备的产品进行了表征。  相似文献   

5.
采用EDAX, XRD和SEM等方法对大庆油田三元复合驱结垢样品中碳酸钙的结晶特性及形貌特征进行了研究. 结果表明, 结垢样品中的碳酸钙呈现出球形、棒状和花状等形貌特征和层状生长的结晶特征. 部分水解聚丙烯酰胺(HPAM)降低了重烷基苯磺酸盐(HABS)表面活性剂的临界胶束浓度(cmc), 促进了其胶束化作用; HABS使溶液中HPAM链的刚性增强, 负电吸引能力增强; 二者均会形成模板, 导致结垢样品中的碳酸钙具有不同的形貌特征. 聚丙烯酰胺和表面活性剂的存在未改变结垢样品中碳酸钙的层状生长特征.  相似文献   

6.
以FeCl2为原料,利用化学沉淀法制备了针状纳米α-FeOOH中间体,并通过柠檬酸法在针状纳米α-FeOOH表面包裹锶的柠檬酸配合物,煅烧后形成的棒状纳米SrFe12O19并分别在共沉淀和溶胶-凝胶2个不同过程中对纳米SrFe12O19进行镧掺杂。采用XRD,TEM和振动样品磁强计(VSM)对SrFe12O19及掺杂锶铁氧体的结构、形貌及磁性能进行了表征。结果表明:沉淀法和柠檬酸法相结合后制得的针状前驱体于900℃煅烧后可制得平均直径为40nm,长径比为15~20的棒状纳米SrFe12O19。在沉淀过程中对前驱体进行掺杂后制得的SrLaxFe12-xO19较同温度时在溶胶-凝胶过程中进行掺杂制得样品的长径比有所增加,进而使得SrLaxFe12-xO19的各向异性变大,磁性能增加,且在沉淀过程中掺杂镧后,样品的矫顽力和饱和磁化强度达到最大值时,x值明显大于溶胶-凝胶过程中进行掺杂制得的棒状SrLaxFe12-xO19。利用共沉淀法掺杂后,当x=0.15时制备的样品的矫顽力最大为6179.1Oe,此时样品的饱和磁化强度和剩余磁化强度分别65.7和38.4emu·g-1。当x=0.2时制备的样品的饱和磁化强度达到最大值为67.3emu·g-1,样品的矫顽力为5852.7Oe。  相似文献   

7.
通过可控水热法,制备出层状、花形和棒状钛酸铋(Bi4Ti3O12,BIT)纳米结构。通过X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)观测其结构和形貌特征。XRD图显示,所制备的样品为层状钙钛矿结构。FESEM结果表明,通过控制水热过程的反应参数可以得到不同形貌的纳米粉体。紫外-可见漫反射光谱(UV-Vis DRS)表明BIT样品的带隙能约为2.63~2.95 eV。利用可见光(λ>420 nm)照射下的甲基橙降解实验评价了BIT样品的光催化性能。结果表明,BIT的光催化活性比掺氮TiO2(N-TiO2)高得多。所制备的层状BIT纳米结构光催化效率最高,经可见光照射360 min,甲基橙溶液的降解率可达95.0%。同时还研究了结构和形貌对不同条件下制备的BIT样品光催化活性的影响。  相似文献   

8.
对阿伏伽德罗常数与气体常数测定实验进行了改进:将原实验中测阴极铜片增重改为测阳极铜片的减重;改变电解液的性质,引入EDTA络合铜离子;用相对更环保的锌片代替铜片等。经过反复实验,最终得到了较优化的实验方案。  相似文献   

9.
以醋酸锌和氢氧化钠为原料, 以水和含不同长度烷基链的咪唑类氯盐离子液体的混合物作为反应介质, 采用水热法合成出不同形貌的微/纳米ZnO晶体, 用扫描电子显微镜(SEM)和X射线衍射仪(XRD)对合成的ZnO晶体进行表征. 研究了烷基链长度、 离子液体用量、 反应时间以及反应温度对形成棒状ZnO晶体形貌的影响. 实验结果表明, 所制备的棒状ZnO晶体样品均为六方晶系结构. 在棒状ZnO晶体的制备过程中, 控制反应温度, 选择不同的离子液体及其用量十分重要.  相似文献   

10.
通过微乳液法及其辅助的溶剂热法制备出了不同形貌的SrMoO4粉体材料,探讨了工艺参数对SrMoO4材料形貌的影响。微乳液体系中表面活性剂十六烷基三甲基溴化铵(CTAB)浓度、反应物浓度及溶剂热过程中反应时间、CTAB浓度都会对SrMoO4材料的形貌造成影响。通过调整上述工艺参数可以调控SrMoO4材料的形貌,得到了近球状、哑铃状、纺锤体状、花簇状等特殊形貌的SrMoO4微晶材料。SrMoO4样品的室温光致发光谱是由发光中心在约420nm处的单一紫光组成,样品的形貌不同发光强度和发光峰位置略有不同。  相似文献   

11.
The electrochemical carbon dioxide reduction reaction (CO2RR) to C2 chemicals has received great attention. Here, we report the cuprous oxide (Cu2O) nanocubes cooperated with silver (Ag) nanoparticles via the replacement reaction for a synergetic CO2RR. The Cu2O-Ag tandem catalyst exhibits an impressive Faradaic efficiency (FE) of 72.85% for C2 products with a partial current density of 243.32 mA·cm−2. The electrochemical experiments and density functional theory (DFT) calculations reveal that the introduction of Ag improves the intermediate CO concentration on the catalyst surface and meanwhile reduces the C-C coupling reaction barrier energy, which is favorable for the synthesis of C2 products.  相似文献   

12.
A cuprous oxide (Cu2O) film with a novel porous structure is successfully synthesized on Cu foil by using a simple hydrothermal method. A redox reaction occurs between Cu and Cu2+ in aqueous solution to form the Cu2O film. The porous structures are formed as a result of the Ostwald ripening mechanism. In addition, photoluminescence measurements indicate that the porous Cu2O film may reduce the recombination of photogenerated electrons and holes. The UV/Vis absorption property of the porous Cu2O film is better than that of the granular Cu2O film, and its high photocurrent is expected to make the porous Cu2O film more suitable for solar energy applications.  相似文献   

13.
以Cu(NO32·3H2O为铜源,在液相还原过程中,调变沉淀剂NaOH、还原剂L-抗坏血酸钠的加入顺序制备了Cu2O,借助X射线粉末衍射(XRD)、傅里叶变换红外光谱(FT-IR)、拉曼光谱(Raman)、俄歇电子能谱(XAES)和H2程序升温还原(H2-TPR)等手段研究了制备条件对Cu2O结构及催化甲醛乙炔化性能的影响.结果表明,调变NaOH及L-抗坏血酸钠的添加方式改变了Cu2O的结晶度与粒径尺寸,从而使Cu2O表现出不同的炔化性能.先加入NaOH,后加入抗坏血酸钠,Cu2O结晶度高,粒径大,难以转化为活性物种炔化亚铜;先加入抗坏血酸钠,后加入NaOH,Cu2O被过度还原为非活性的金属Cu,两者均造成催化剂活性较低.而NaOH和抗坏血酸钠混合后添加的方式制备出表面Cu2O结晶完整而体相Cu2O分散度高的样品,这使得Cu2O高效转化为炔化亚铜活性物种,表现出最优的炔化性能,在适宜的反应条件下,1,4-丁炔二醇收率达到71.7%,经6次循环后,仍保持在56.5%.  相似文献   

14.
Thin cuprous oxide films have been prepared by chemical vapor deposition (pulsed spray evaporation-chemical vapor deposition) method without post-treatment. The synthesis ofcuprous oxide was produced by applying a water strategy effect. Then, the effect of water on the morphology, topology, structure, optical properties and surface composition of the obtained films has been comprehensively investigated. The results reveal that a pure phase of Cu2O was obtained. The introduction of a small quantity of water in the liquid feedstock lowers the band gap energy from 2.16 eV to 2.04 eV. This finding was mainly related to the decrease of crystallite size due to the effect of water. The topology analyses, by using atomic force microscope, also revealed that surface roughness decreases with water addition, namely more uniform covered surface. Moreover, theoretical calculations based on density functional theory method were performed to understand the adsorption and reaction behaviors of water and ethanol on the Cu2O thin film surface. Formation mechanism of the Cu2O thin film was also suggested and discussed.  相似文献   

15.
《Solid State Sciences》2012,14(2):276-280
In this paper, graphene–cuprous oxide (G–Cu2O) composites were synthesized at room temperature using graphene oxide (GO) as two-dimensional support. From Zeta potential analysis, the surface charge of G–Cu2O composites altered from positive to negative, which favors the adsorption and photodegradation of positively charged dyes. Compared with Cu2O under similar synthesis condition, the G–Cu2O composites demonstrated improved photodegradation activity for methylene blue (MB) dye under visible light. Controlled experiments indicated that the G–Cu2O composite synthesized with 80 mg GO in the reaction system possessed more negative Zeta potential, highest specific surface area and thus presented the highest photocatalytic activity. Electrons mechanism for the improved photocatalytic performance of G–Cu2O composite was proposed in the degradation of MB.  相似文献   

16.
The co-deposition of cuprous oxide (Cu2O) and zinc oxide (ZnO) on indium tin oxide (ITO) substrate was executed by two different electrochemical methods and the formation mechanism of ZnO onto Cu2O was investigated by ex-situ SEM, XRD, and XPS. The single galvanostatic electrodeposition step in a mixed nitrate electrolyte offered a useful method in preparing ZnO onto triangular Cu2O islands formed. On the other hand, hexagonal shaped ZnO phase was electrodeposited on ITO substrate as well as on Cu2O islands when two steps of the galvanostatic and potentiostatic process were applied.  相似文献   

17.
A composite of graphene–cuprous oxide (Cu2O) was prepared using copper acetate-adsorbed graphene oxide (GO) sheets as precursors. In this composite, in-situ formed Cu2O particles were derived from the adsorbed copper acetate which attached to graphene sheets and prevented the aggregation of the reduced graphene oxide sheets. The as-synthesized Cu2O crystals were cube-like particles distributed randomly on the sheets due to the template effect of GO, consequently forming a graphene–Cu2O cubes composite. A preliminary study on the electrochemical behavior of the graphene–Cu2O composite used as anode material for lithium ion batteries was carried out.  相似文献   

18.
Homogeneous cuprous oxide (Cu2O) nanoparticles with size of 8-10 nm are deposited on multiwall carbon nanotubes (MWNTs) by a polyol process using Cu(CH3COO)2·H2O as a precursor and diethylene glycol as both solvent and reducing agent. The composition of the resulting Cu2O/MWNTs composites is confirmed by XRD pattern, XPS spectrum and HRTEM images. With the change of the reaction conditions, it is found that Cu2O nanoparticles on the surface of MWNTs can be leafage-like or big spherical particle coated on the surface of MWNTs. HRTEM images indicate that all the leafage-like and big spherical particles are assembled by small Cu2O particles with size of about 2-5 nm. With the assistance of FTIR spectrum, a tentative mechanism is proposed for the formation of Cu2O nanoparticles with different morphologies on the surface of MWNTs.  相似文献   

19.
In this paper a novel simple method for preparing two different catalysts with various‐valences copper was reported. Carbon nanofibers supported copper‐cuprous oxide nanoparticles (Cu‐Cu2O NPs/CNFs) and copper oxide nanoparticles (CuO NPs/CNFs) through electrospinning, adsorption and reduction in the high‐pressure hydrogenation and the high‐temperature calcination methods. These catalysts were investigated by a series of characterizations and were applied in reaction in nitrogen atmosphere, which had a good catalytic activity and selectivity of benzaldehyde for the reaction. Above all, the new study has been certified clearly, in which Cu‐Cu2O NPs/CNFs and CuO NPs/CNFs composite catalysts enhanced the generation of benzaldehydeand the excellent catalytic properties were exhibited.  相似文献   

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