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141.
光限幅材料在激光轰击过程中的稳定性将在很大程度上决定其实用化价值。文章采用红外(IR)光谱、拉曼(Raman)光谱、透射电子显微镜(TEM)及孔结构分析等测试方法对纳米碳管(CNTs)复合光限幅材料在激光轰击过程中组成、结构的演变进行跟踪研究。结果表明,在强激光轰击下,复合体系中二氧化硅(SiO2)基质的组成未发生显著改变且网络结构趋于完整,具有较好的稳定性。掺杂CNTs石墨化程度提高,SiO2凝胶玻璃基质对其起一定的保护作用。轰击过程产生的热效应使得SiO2颗粒长大,由其堆积而成的孔随之增大。  相似文献   
142.
碳纳米管的电化学贮氢性能研究   总被引:13,自引:0,他引:13  
研究了碳纳米管电极的电化学性能 ,其电化学储氢量达到 2 0 0mAh·g 1且具有高的电化学活性和良好的循环寿命 .采用循环伏安法研究了氢在碳纳米管电极上吸附 /氧化机理 .  相似文献   
143.
真空热处理碳纳米管的储氢性能研究   总被引:1,自引:0,他引:1       下载免费PDF全文
研究了真空热处理对多壁碳纳米管(MWNTs)电化学储氢性能的影响.采用化学气相沉积法(CVD)制备碳纳米管,碳纳米管与LaNi5储氢合金按质量比1∶10混合,制作成CNTs-LaNi5电极.电解池采用三电极体系,6mol/L KOH为电解液,Ni(OH)2为正极,Hg/HgO为参比电极.实验结果表明,在相同的充放电条件下,850℃时CNTs-LaNi5电极的储氢性能最好,克容量最大为503.6mAh/g,相应的平台电压高达1.18V.从500—850℃随着温度升高,放电量有较大幅度的增加,但到950℃时放电量反而下降.由此可见,碳纳米管的热处理温度对碳纳米管的电化学储氢性能有着较大的影响. 关键词: 碳纳米管(CNTs) 储氢性能 5合金')" href="#">LaNi5合金 化学气相沉积法(CVD法)  相似文献   
144.
With home-made multi-walled carbon nanotubes (MWCNTs, simplified as CNTs in later text) as support, CNT-supported Co-Mo-S catalysts, denoted as x%(mass percentage) MoiCoj/CNTs, were prepared. Their catalytic performance for thiophene hydrodesulfurization (HDS) and pyrrole hydrodenitrification (HDN) reactions was studied, and compared with the reference system supported by AC. Over the 7.24%Mo3Co1/CNTs catalyst at reaction condition of 1.5 MPa, 613 K, C4H4S/H2=3.7/96.3(molar ratio) and GHSV≈8000 mlSTp/(g-cat·h), the specific HDS activity of thiophene reached 3.29 mmolc4H4s/(s·molMo), which was 1.32 times as high as that (2.49 mmolC4H4s/(s·molMo)) of the AC-based counterpart, and was 2.47 times as high as that (1.33 mmolC4H4s/(s·molMo)) of the catalysts supported by AC with the respective optimal Mo3Co1-loading amount, 16.90%Mo3Co1/AC. Analogous reaction-chemical behaviours were also observed in the case of pyrrole HDN. It was experimentally found that using the CNTs in place of AC as support of the catalyst caused little change in the apparent ac-tivation energy for the thiophene HDS or pyrrole HDN reaction, but led to a significant increase in the concentration of catalytically active Mo-species (Mo4 ) at the surface of the functioning catalyst. On the other hand, H2-TPD measurements revealed that the CNT-supported catalyst could reversibly adsorb a greater amount of hydrogen under atmospheric pressure at temperatures ranging from room temperature to about 673 K. This unique feature would help to generate microenvironments with higher stationary-state concentration of active hydrogen-adspecies at the surface of the functioning catalyst. Both factors mentioned above were favorable to increasing the rate of thiophene HDS and pyrrole HDN reactions.  相似文献   
145.
Carbon nanotubes (CNTs) supported Pt-Ru and Pt-Ru-Ni catalysts were prepared by chemical reduction of metal precursors with sodium borohydride at room temperature. The crystallographic properties and composition of the catalysts were characterized by X-ray diffraction (XRD) and energy dispersive X-ray (EDX) analysis, and the catalytic activity and stability for methanol electro-oxidation were measured by electrochemical impedance spectroscopy (EIS), linear sweep voltammetries (LSV), and chronoamperometry (CA). The results show that the catalysts exhibit face-centered cubic (fcc) structure. The particle size of Pt-Ru-Ni/CNTs catalyst is about 4.8 nm. The catalytic activity and stability of the Pt-Ru-Ni/CNTs catalyst are higher than those of Pt-Ru/CNTs catalyst.  相似文献   
146.
碳纳米管对非晶态NiB合金催化剂性能的影响   总被引:8,自引:0,他引:8  
采用化学还原法制备了非晶态NiB合金,用CNTs-1、CNTs-2、y-Al2O3作载体制备了负载型非晶态NiB合金催化剂.以乙炔选择性加氢为目标反应考察了催化活性和选择性,用TEM、TPD等方法对催化剂进行了表征.TEM结果表明,粒径为8~10nm的NiB粒子均匀分散在CNTs-1外表面,大部分粒径为12~14nm的NiB颗粒在CNTs-2内腔生长,而y-Al2O3载体未能有效提高NiB分散度.用CNTs-1将NiB负载化,明显提高了NiB催化剂乙炔加氢活性.CNTs-1、CNTs-2和y-Al2O3载体对比,CNTs-2作载体促进了催化剂对氢的吸附,减弱了乙炔的吸附,提高了加氢活性和乙烯选择性.  相似文献   
147.
In this review, the more recent topics in the field of fluorinated carbon materials are given with the emphasis on the research work presented by our group. The direct fluorination and/or oxyfluorination of various carbon materials, especially of new carbon materials, i.e. nanotubes, carbon fibers, and activated carbon fibers have been described. It has been shown that fluorination can be one of the most effective methods to modify and control physico-chemical properties of carbon materials.  相似文献   
148.
纳微米PZT/水泥基压电复合材料的研究   总被引:1,自引:1,他引:0       下载免费PDF全文
采用溶胶-凝胶法合成了锆钛酸铅(PZT)纳微米粉体.XRD与SEM分析结果表明,经700 ℃煅烧的PZT粉体的平均晶粒尺寸约为26.4 nm,粉体团聚体的平均尺寸约为200 nm.采用干压成型-水化法制备了纳微米PZT/水泥基压电复合材料,研究了复合材料的压电及介电性能.SEM结果表明,PZT陶瓷相在基体中呈网状分布.PZT颗粒之间的良好连通性使复合材料具有优良的压电性能.  相似文献   
149.
以稀土合金MlNi5-1.35(CoAlMn)1.35为催化剂,C2H2为碳源,H2为还原气和载气,用CVD法合成了纯度较高的CNTs。通过用SEM,TEM,XRD及Raman等表征测试方法,研究了H2流量对合成的CNTs管径、产量、纯度、形态及石墨化程度的影响。结果表明:合金催化剂经还原后其粒径从μm级细化到了nm量级;在催化剂与C2H2反应过程中不通入H2时,催化剂上仍能生长出CNTs,但其长度短而管径粗(约97.8nm),管壁厚而粗糙;随着H2流量增大,CNTs管径先减小后增大,而其产量、纯度及石墨化程度则先提高后下降。当H2流量为50ml·min-1时,CNTs管径达最细(平均管径49.1nm);H2流量为75ml·min-1时,其产物纯度高,产量最大(4.05g·g-1催化剂),CNTs石墨化程度最高;H2流量为100ml·min-1时,CNTs管径最均匀(平均管径97.8nm)。  相似文献   
150.
Palecek E  Fojta M 《Talanta》2007,74(3):276-290
Magnetic beads (MBs) are versatile tools in the separation of nucleic acids, proteins and other biomacromolecules, their complexes and cells. In this article recent application of MBs in electrochemical biosensing and particularly in the development of DNA hybridization sensors is reviewed. In these sensors MBs serve not only for separation but also as a platform for optimized DNA hybridization. A hybridization event is detected separately at another surface, which is an electrode. The detection is based either on the intrinsic DNA electroactivity or on various kinds of DNA labeling, including chemical modification, enzyme tags, nanoparticles, electroactive beads, etc., greatly amplifying the signals measured. In addition to DNA hybridization, other kinds of biosensing in combination with MBs, such as DNA-protein interactions, are reviewed.  相似文献   
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