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电化学研究方法的英文

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"电化学研究方法"怎么读用"电化学研究方法"造句

英文翻译手机手机版

  • electrochemical research methods
  • methods in investigation of electrical chemistry

例句与用法

  • The interactive manners and the spectroscopic and electrochemical research of the interaction between small biomolecules and dna were reviewed , 32 references were quoted
    评述了生物小分子与dna的作用方式及其相互作用的光谱及电化学研究方法。引用文献32篇。
  • The results obtained in this thesis are of significance in exploring the intrinsic properties of low - dimensional nanostructured materials , and in developing fundamental of in situ ftir reflection spectroscopy , and nanotechnology and nanoscience as well . the main results and conclusions are summarized as follows : 1 . the development of surface combinatorial method
    本论文工作的主要内容及研究结果如下: 1 .分子水平表面组合电化学研究方法初探以电化学insitumftirs为分析检测手段,自行设计和制备meai ,在分子水平上开展表面组合电化学研究。
  • The corrosion resistance of uranium surface treated with supercritical carbon dioxide ( scco2 ) has been studied by weight gain method and electrochemical method . the reaction product and surface element species have been studied by x - ray diffraction ( xrd ) and auger electron spectroscopy ( aes ) methods . the interaction mechanism of supercritical carbon dioxide with uranium surface by thermodynamics method was also studied
    本论文用重量法、电化学研究方法评价了金属铀经超临界co _ 2处理后的表面抗腐蚀性能,用aes 、 xrd等分析手段研究了超临界co _ 2与金属铀表面的相互作用机理,并从热力学角度对超临界co _ 2与金属铀反应的可能性进行了研究。
  • A study on the synthesis , structure and performance of linio2 - based compounds as cathode materials for lithium ion batteries was carried out systemically and in detail in this dissertation . as the first step of this study , a sol - gel method using citric acid as a chelating agent was developed . the reaction conditions in sol - gel process , pre - calcination process and calcination process , especially sintering temperature and sintering time in calcinations process , were analyzed and optimized carefully
    本文采用多种结构分析、表面分析、热分析和电化学研究方法和实验手段,从合成方法、结构特征、电化学性能、热稳定性和贮存性能等多方面对锂镍氧系列电极材料进行了系统深入的研究,制备出性能良好的锂镍氧系列电极材料,解释了钛的掺杂对电极材料的作用机理,揭示了锂镍氧系列电极材料的贮存失效机理,并借鉴和发展了rietveld结构精修方法和tpd - ms技术在锂离子电池电极材料研究中的应用。
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