纳米管

  • 网络Nanotube;TNTS;BNNTs
纳米管纳米管
  1. 多孔阳极氧化铝模板与V2O5纳米管组装体系的研究

    A Study on Assemble System of AAO Template and V_2O_5 Nanotubes

  2. 硝酸铁为催化剂大量制备离散Mn2O3纳米管/纤维

    Large-scale Synthesis of Isolated Mn_2O_3 Nanotubes / Fibers with Ferric Nitrate as Catalyst

  3. C纳米管包裹的金属钴纳米线(管)同心电缆的制备与表征

    Synthesis and Characterization of the Concentric Cable of Cobalt Nanowires ( nanotubes ) Encapsulated in Carbon Nanotubes

  4. 碳纳米管载钴氧化物催化剂制备及其分解N2O研究

    Studies on Preparation of Carbon Nanotube Supported Cobalt Oxide and N_2O Decomposition Reaction

  5. 基于静电相互作用,以阳离子聚电解质为中介,将小牛胸腺DNA静电组装在羧基化多壁碳纳米管表面。

    Based on electrostatic interaction , calf thymus DNA was self-assembled on MWNTs-modified gold electrode via a cationic polyelectrolyte .

  6. Fe颗粒的存在可以解释定向生长的碳纳米管所具有的较高的磁导率。

    The existence of Fe particles may explain the higher permeability of directionally grown CNTs .

  7. 研究了在碳纳米管表面化学镀Ni的新方法。

    A new method of coating of carbon nanotube with electroless plating of nickel is proposed .

  8. 镍基底上生长CNx纳米管薄膜的研究

    Growth of CN_x Nanotubes Films on Ni Substrates

  9. 碳纳米管的加入对PMMA强度和导电性能的影响

    Effects of Carbon nanotube on Strength and Resistivity of PMMA

  10. 模板法制备过渡金属Ru和Pd纳米管

    Template Synthesis of Transition-metal Ru and Pd Nanotubes

  11. CVD法在不同基底上制备碳纳米管及其机制研究

    Synthesis and Growth Mechanism of Carbon Nanotubes on Different Substrates Through CVD Method

  12. 催化裂解CH4或CO制碳纳米管结构性能的谱学表征

    Studies on Structure and Property of Carbon nanotubes Formed Catalytically from Decomposition of CH 4 or CO

  13. 采用催化剂裂解化学气相沉积的方法,用化学共沉淀法制备的Co催化剂,高产率的制备了多壁碳纳米管。

    Using the Co catalysts produced by chemical co-deposition , the carbon nanotubes were synthesized by the catalytic chemical vapor decomposition method .

  14. 磷对CVD法制备碳纳米管纯度及形貌的影响

    Effect of Phosphorus on the Purity and Morphology of Carbon Nanotubes by CVD Method

  15. 碳纳米管组成二维光子晶体的有效介电常数FDTD数值模拟

    FDTD Simulation of Effective Dielectric Constant of a Two-Dimensional Photonic Crystal with Carbon Nanotubes

  16. 化学气相反应合成MoS2纳米管的研究

    Formation of MoS_2 nanotubes by chemical vapour deposition

  17. 用XRD、TEM、BET、TG-DSC、Uv-vis等方法对TiO2纳米管的形貌、成分和性能进行了表征。

    The titania nanotube was characterized by XRD , TEM , BET , TG-DSC and Uv-vis .

  18. 在碳纳米管上CVD法原位生长CdSe纳米晶体

    In Situ Growth of CdSe Nano-crystals on Carbon Nanotubes through Chemical Vapor Deposition

  19. 此外,应用直接电化学阳极氧化法制备了不同硅掺杂量的TiO2纳米管阵列电极。

    In addition , the Si-doped TiO2 nanotube arrays with different Si-doping amounts were also fabricated by electrochemical anodization .

  20. 基于zigzag型碳纳米管分子模型的建立及主要应用

    Molecular Modeling of Zigzag Carbon Nanotubes and Their Main Application

  21. 采用水热合成法,以TiO2粉体和NaOH为原料,成功地制备出了TiO2纳米管。

    TiO2 nanotube was synthesized successfully by hydrothermal process , using TiO2 powder and NaOH as the precurser .

  22. 电化学阳极氧化自组织TiO2纳米管阵列的研究

    Electrochemistry Anodic Oxidation Self-Assembled TiO_2 Nanotube Arrays

  23. 高强度碳纳米管可在养料、药品供给系统与细胞之间形成圆筒形的渠道,输送肽、蛋白质、质粒DNA或寡核苷酸等物质。

    CNTs of high intensity are mainly focused on the interactions of aliment , drug supply and biological molecules , such as DNA , peptides , proteins and oligonucleotide etc.

  24. 结果表明:对于同一电解液体系,TiO2纳米管阵列的形成需要特定的氧化电压、时间参数范围。

    The results indicate that TiO2 nanotube arrays can be regularly formed at the specific anodic voltage and anodic time .

  25. 研究了用阳极弧等离子体法高效制备单壁碳纳米管(CNTs)。

    Single-walled carbon nanotubes ( CNTs ) can be effectively prepared by means of anode-arc plasma vaporization .

  26. SBA-16薄膜内生长碳纳米管阵列及其Fe的填充

    Carbon Nanotubes Filled with Fe in SBA-16 Thin Film of Mesoporous Silica

  27. 我们利用自组织多孔阳极氧化铝膜结合液相沉积方法分别制备了Sn掺杂和Fe掺杂的TiO2纳米管阵列。

    We produced Sn-doped and Fe-doped TiO2 nanotube arrays by the template-based LPD method with the self & organized AAO membrane as the template .

  28. 天然纳米矿物作为催化剂CVD法合成碳纳米管及碳纳米管吸氢性能的研究

    Synthesis of Carbon Nanotubes by Chemical Vapor Deposition with Natural Nano-minerals as Catalyst and Studies on Hydrogen Absorption in Carbon Nanotubes

  29. 添加5%碳纳米管的复合PCM的导热系数增加了26.26%。

    The addition of 5wt % carbon nano-tube can result in a 26.26 % increase in the thermal conductivity .

  30. 分析评述了现阶段碳纳米管纯度测定方法,包括TEM、TPO、TGA、Raman等。

    Methods for the purity of carbon nanotubes , including TEM , TPO , TGA , Raman etc. , are discussed .