碳骨架

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  • carbon skeleton
碳骨架碳骨架
  1. 将这种连续多孔碳骨架@MnO2纳米复合材料进行SEM、XRD表征,并将其直接制作成整体电极进行电化学性能测试。

    This will be a continuous porous carbon skeleton @ MnO2nano-composites SEM , XRD characterization , and direct production into a whole electrode electrochemical performance testing .

  2. 基于Ala碳骨架的存在,这些结果表明,碳/氮平衡是影响这些酶活性差别表达的主要原因。

    Based on the additional carbon skeleton of Ala compared to ( NH_4 ) SO_4 , these resulted suggested that carbon / nitrogen balance play a important role in the different regulation of the enzyme activity .

  3. 经七步反应,以49.3%的总收率得到构筑Lycorine型生物碱环碳骨架的关键中间体环氧化合物。

    In seven steps , the key intermediate epoxy compound , to build cycle carbon-skeleton of Lycorine-type alkaloids , is synthesized in a total yield of 49.3 % .

  4. 应用固体13C核磁波谱分析技术,采用自然演化与热压模拟相结合探讨了干酪根热演化过程中碳骨架与官能团的变化规律,提出脂碳是生烃主要贡献者。

    Solid 13C nuclear magnetic resonance spectrometer and natural evolution combining with thermocompression simulator are used for analysis of variation of carbon matrix and functional group in the course of kerogen thermal evolution , showing that lipid carbons mainly contribute to the hydrocarbon generation .

  5. 准一维碳骨架分子中的超导相与其它凝聚相

    Superconducting and other phases in quasi-one-dimensional carbon skeletons

  6. 非碳骨架分子的热稳定性

    Thermostability of Noncarbon Skeleton Molecules

  7. 红外光谱表明了该双改性树脂的碳骨架上引入了桐油分子长碳链,具有一定的柔韧性和油溶性。

    IR spectra showed that long chains of molecules of tung oil were bonded on the skeleton of boron phenolic resin .

  8. 生物质的堆积密度及其在热解过程中碳骨架的变化是影响协同作用的重要因素。

    Packing densities of the biomass and the skeleton collapse characteristics during pyrolysis were important impact factors on the synergies during co-pyrolysis of biomass and coal .

  9. 电子的受、供体由具有刚性σ碳骨架的桥体连接组成的体系在分子器件的设计中表现出了独特的性质。

    It displays unique property as a molecular device for the system consisting of the rigid σ bridge , in which the electron donor and acceptor chromophores are linked by the bridge .

  10. 氮掺杂多孔炭由于其碳骨架上的含氮官能团可以提供赝电容并增强材料的表面润湿性,因而其作为超级电容器电极材料受到研究人员广泛的关注。

    Nitrogen-doped porous carbons ( NPCs ) have broad application prospects as electrode materials for supercapacitor because the nitrogen functional groups on carbon skeleton can not only provide pseudocapacitance effect but also improve the surface wettability of electrode materials .

  11. 其反应机理可能是:硫先作用于链状化合物将其改造成共轭烯中间体,其他硫再从这个部位进入碳骨架从而形成该类化合物。

    The reaction mechanism is probably that sulphur acts on the chain compounds and makes them to become the conjugate alkene intermediate at first , then the other sulphur attacks the intermediate and joins the carbon skeleton to form thiophene series .

  12. 新型明胶基碳纳米管骨架活性炭的制备

    Preparation of new gelatin-based activated carbon with carbon nanotubes as framework

  13. 碳纤维骨架、栅片式天线反射器加工工艺研究

    Research on Processing and Machining Workmanship of Blade-grided Antenna Reflector with Carbon-fiber Frame

  14. 十九种长链正烷基脂肪酸的碳链骨架振动能量研究

    Study on Frame Vibration Energy of Carbon Chain in 19 n-alkyl Fatty Acids with Long-chain

  15. 建议将煤大分子结构划分为碳原子骨架(基本结构单元)、交联网络和边缘基团三个级次。

    The skeleton of carbon atoms ( Basic Structural Unit ), the metwork of cross-linking bonds and the edge groups in BSU .

  16. 在分子轨道理论中,所考虑的共轭碳氢化合物的分子常用碳原子骨架图来表示,此类图的特征是所有顶点的度不超过3,并且具有完美匹配。

    In the molecular orbital theory , the molecule of the conjugated hydrocarbons considered generally can be represented in carbon-atom skeleton graph , the character of this kind of graphs is that all vertices have degree no greater than three and have a perfect matching .

  17. 所有的类固醇都含有排列成四个环的17个碳原子的骨架。

    All steroids contain a skeleton of 17 carbon atoms organized into four rings .

  18. 将葡萄糖和谷氨酰胺作为主要的碳源和氮源,为细胞生长提供碳骨架和能源,同时产生乳酸、氨和丙氨酸等副产物,并完成细胞的增殖。

    Glucose and glutamine are considered as the major carbon , nitrogen and energy sources in myeloma cell culture media . They provide carbon skeleton and energy for cell growth . Byproducts , such as lactate , ammonia and alanine , are produced during cell culture process .

  19. 同时样品的拉曼光谱和傅里叶变换红外光谱表明:经微波处理后的双壁碳纳米管表面产生大量的缺陷或功能团,这些官能团是导致Pt纳米粒子沿着双壁碳纳米管骨架成核与生长的关键因素。

    The Raman spectrum and Fourier transform infrared ( FTIR ) spectrum show the introduction of defects or functional groups on CNTs surface , which are crucial factors to assist the nucleation and growth of Pt NPs along the skeleton of CNTs .