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31.
《Current Applied Physics》2015,15(3):253-260
This work presents the fabrication of large-scale tunable-plasmonic surface-enhanced Raman scattering (SERS) templates and investigates their Raman enhancement. Substrates for SERS were prepared by deposition of gold nanoparticles on a glass slide followed by their growth. A plasmon shift was observed upon growing due to the formation of elongated nanoparticles and their mutual coupling. The changes in particle size, shape and interparticle distances were indicated by SEM measurements. Surface-enhanced Raman spectra of Nile blue A at a very low concentration on top of a blocking layer were measured. The overall Raman enhancement is correlated with the number of growth steps. For excitation at 532 nm four growth steps lead to maximum enhancement. Better overlap of excitation laser and the plasmon resonances upon growing increased the enhancement until four steps while further growing decreased the enhancement. At longer wavelengths excitation (633 and 785 nm) the enhancement further increased beyond the fourth growth step. This enhancement is caused by the plasmon excitation of narrower gap sizes. The proposed procedure for the SERS substrates is simple, allows covering large surface areas and plasmon band tuning from 530 nm to the near infrared in order to increase overall Raman enhancement. 相似文献
32.
Shasha Song Haiqiao Wang Prof. Dr. Aixin Song Prof. Dr. Shuli Dong Prof. Dr. Jingcheng Hao 《Chemistry (Weinheim an der Bergstrasse, Germany)》2014,20(29):9063-9072
The aggregation behavior of mixtures of the alkaline amino acid L ‐Arginine (L ‐Arg) and bis(2‐ethylhexyl)phosphoric acid (DEHPA) in water was studied in detail. At a fixed L ‐Arg concentration, a phase sequence of micellar phase (L1 phase), vesicle phase (Lαv phase), planar lamellar phase (Lαl phase), and sponge phase (L3 phase) was obtained with increasing DEHPA concentration due to changes in the packing parameter. The phase transition of the lamellar structures was determined by freeze‐fracture TEM and 2H NMR spectroscopy. Rheological measurements reflected the phase transition through significant variations of both the elastic modulus and the viscous modulus. Porous CeO2 materials were produced by utilizing the L3 phase as template, and the porous CeO2 exhibited excellent catalytic oxidation activity toward CO due to its high surface area, which provides more active sites for CO conversion. 相似文献
33.
In this paper,we use La0.8Sr0.2MnO3 and La0.7Ca0.2Sr0.1MnO3 as examples to demonstrate a preparation method for threedimensionally ordered macroporous(3DOM) perovskite thermochromic materials.Polystyrene spheres with an average diameter of 220 nm were self-assembled into a three-dimensionally ordered colloidal crystal template.A mixed metal nitrate solution prepared using La(NO3) 3·6H2O,Ca(NO3) 2·4H2O,Sr(NO3) 2,Mn(CH3COO) 2·4H2O and an ethanol precursor was used to fill the interstitial voids of the polystyrene colloidal crystal templates.3DOM La0.8Sr0.2MnO3 and La0.7Ca0.2Sr0.1MnO3 materials were then obtained after the sphere templates were removed via drying and calcination.The results show that the framework of the 3DOM materials can have different thicknesses and pore shrinkage rates by varying the filling times.In addition,the Curie temperatures of the 3DOM and bulk La0.8Sr0.2MnO3 materials can be varied by altering the preparation method. 相似文献
34.
Well-aligned open-ended multi-walled carbon nanotube (MWCNT) arrays were prepared via chemical vapor deposition (CVD) method in porous anodic aluminum oxide (AAO) templates without depositing any transition metals as catalyst. Effects of the CVD temperature and heat treatment were studied in detail.Well-aligned open-ended MWCNT arrays were obtained at the CVD temperature above 600 ℃; when CVD temperature is reduced to around 550 ℃, CNTs, CNFs and other structures existed at the same time; no CNTs or carbon nanofibres (CNFs) could be found as the CVD temperature is below 500 ℃, and only amorphous carbon in the porous AAO template was found. Experimental results showed that the AAO template is catalytic during the CVD process, and it has the following two effects: to catalyze thermal decomposition of acetylene and to catalyze conversion of carbon decomposed from acetylene into CNTs or CNFs. Heat treatment could improve the graphitization degree, but it might also introduce new defects. 相似文献
35.
在传统的遥感数字图像增强处理方法中,空间滤波主要采用静态的图像模板来进行计算处理以突出图像上某些特征,如突出边缘和纹理等.该文探讨用动态的图像模板来进行计算处理遥感影像,发现处理后的遥感图像取得了很好的效果. 相似文献
36.
利用阳极氧化铝模板,用化学方法合成了CoFe2O4纳米管.X射线衍射结果表明,纳米管由无择优取向的、立方尖晶石结构的多晶CoFe2O4构成.电子显微镜显示,纳米管管径约300 nm,管壁厚度约100 nm,由约30 nm的CoFe2O4颗粒组成.进一步的磁性测量表明,纳米管阵列无明显的各向异性,其矫顽力约1 kOe,磁滞回线的方形度约0.37. 相似文献
37.
利用磁过滤等离子体结合氧化铝模板(AA0)技术在室温下制备了具有优异场发射性能的铜掺杂类金刚石(DLC)纳米点阵列.微观分析表明,铜掺杂类金刚石纳米点阵列分布均匀,密度高达109cm-2;利用X射线光电子能谱对制备的铜掺杂类金刚石纳米点阵列进行结构分析,测得铜的掺杂量为3.6;且sp3键含量高达60;;通过对铜掺杂类金刚石纳米点阵列的场发射性能测试,试验结果表明,铜掺杂类金刚石纳米点阵列开启电场和阈值电场分别为0.08V/μm,0.42V/μm,并且在电场值为0.67V/μm时,发射电流密度高达95mA/cm2,场发射性能明显优于无掺杂类金刚石纳米点阵列. 相似文献
38.
以松木为模板,使用模板法制备了不同铈锆含量的CexZr1-xO2复合氧化物的催化剂,用于餐饮废油与甲醇进行酯交换反应合成生物柴油.采用BET、SEM对CexZr1-xO2进行表征分析.研究不同制备方法、CeO2的负载量和煅烧温度对催化剂活性的影响,以及不同的酯交换反应条件对生物柴油产率的影响.制备的CexZr1-xO2具有松木的生物形态,并有助于催化剂形成多孔道结构.以CexZr1-xO2为催化剂,考察甲醇和餐饮废油的酯交换反应.结果表明:当x=0.5,煅烧温度为600℃时,甲醇与餐饮废油物质的量比为60:1,催化剂用量(基于餐饮废油的质量)的质量分数为5%,反应温度为190℃,反应时间为6 h的反应条件下,酯交换反应的甲酯收率达到91.1%. 相似文献
39.
视频流中的自适应阈值模板匹配车辆检测算法 总被引:1,自引:0,他引:1
在传统帧差法的基础上, 通过对帧差法得到的感兴趣区域进行阈值处理, 得到用白色代表前景、 黑色代表背景的黑白二值图像, 并设计了自适应阈值模板匹配车辆检测算法从黑白二值图像中定位出运动车辆. 实验结果表明, 该算法简单, 容易实现, 能准确定位车辆. 相似文献
40.
Novel polyphosphazene nanotubes with active hydroxyl groups were fabricated via an in situ template approach under ultrasonic irradiation. SEM and TEM results indicated that the nanotubes were uniform with length of several micrometers, inner diameter of ca. 20 nm and outer diameter of 60-80 nm. FTIR spectra revealed that the content of the hydroxyl groups on the nanotube surface was dependent on the feed ratio of hexachlorocyclotriphosphazene (HCCP) to 4,4′-sulfonyldiphenol. The successful esterification of polymer nanotubes with benzoxy chloride demonstrated the high reactivity of the hydroxyl groups. The method employed here might provide a simple and effective way to prepare functional nanotubes used for biological applications. 相似文献