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Information Journal Paper

Title

CONDUCTION MECHANISM OF THIOPHENE POLYMER NANOPARTICLES TO ENHANCE THE ELECTRON CONDUCTIVITY OF LIFEP04 IN LITHIUM BATTERIES

Pages

  1-4

Abstract

 The last few decades many efforts to improve their characteristics and electronic tons this matter is that most of the reduction can be as much as particles, with metal, which will cover you electron increase (often carbon dioxide). Cover stand if what has caused the leading electron But led to lower energy also be implemented because of carbon dioxide active. A bridge schoolboy PTh the cover of the article 350,000 tons to a great character to improve its in a way that the resistance of the tank electrode CATHODE to reduce And will increase capacity is a return of the composite rotor (LiFePO 4/PTh) Cycle Time a better investment compared to the type of pure LiFePO holder.

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  • Cite

    APA: Copy

    AHMADI SABEGH, MEHDI, & GHASEMNEJAD, MOHAMMAD. (2012). CONDUCTION MECHANISM OF THIOPHENE POLYMER NANOPARTICLES TO ENHANCE THE ELECTRON CONDUCTIVITY OF LIFEP04 IN LITHIUM BATTERIES. THE APPLICATION OF CHEMISTRY IN ENVIRONMENT, 3(10), 1-4. SID. https://sid.ir/paper/236277/en

    Vancouver: Copy

    AHMADI SABEGH MEHDI, GHASEMNEJAD MOHAMMAD. CONDUCTION MECHANISM OF THIOPHENE POLYMER NANOPARTICLES TO ENHANCE THE ELECTRON CONDUCTIVITY OF LIFEP04 IN LITHIUM BATTERIES. THE APPLICATION OF CHEMISTRY IN ENVIRONMENT[Internet]. 2012;3(10):1-4. Available from: https://sid.ir/paper/236277/en

    IEEE: Copy

    MEHDI AHMADI SABEGH, and MOHAMMAD GHASEMNEJAD, “CONDUCTION MECHANISM OF THIOPHENE POLYMER NANOPARTICLES TO ENHANCE THE ELECTRON CONDUCTIVITY OF LIFEP04 IN LITHIUM BATTERIES,” THE APPLICATION OF CHEMISTRY IN ENVIRONMENT, vol. 3, no. 10, pp. 1–4, 2012, [Online]. Available: https://sid.ir/paper/236277/en

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