首页> 外文会议>International Workshop on Materials Analysis and Processing in Magnetic Fields >Department of Chemistry, Faculty of Science, Saitama University, Shimo-Ohkubo 2.55, Sakura-Ku, Saitama, Japan
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Department of Chemistry, Faculty of Science, Saitama University, Shimo-Ohkubo 2.55, Sakura-Ku, Saitama, Japan

机译:Noodle stry,f stry,fs f s shima,埼玉,r到ty,shimouso hcmbes 2.55,sakura,埼玉,jaypan

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摘要

Carbon materials produced from organic materials as a precursor are generally subjected to three heat treatment processes of stabilization and carbonization followed by graphitization A high magnetic field was imposed in the thermal decomposition reactions of carbon materials Thermal decomposition reactions such as solid-phase, liquid-phase and gas-phase reactions have been used It is found that the magnetic field imposed along with the heat treatment controls the magnetic shape and increases the tensile strength of carbon materials formed by thermal decomposition reactions The mechanism of magnetic shape control and increase of the tensile strength due to the imposition of a high magnetic field is discussed based on an intermolecular cross-linking reaction model in which the radical pair theory is modified by accounting for the magnetic field.
机译:作为前体的有机材料制备的碳材料通常经受三个热处理过程的稳定化和碳化,然后石墨化施加高磁场,在碳材料的热分解反应中施加高碳化反应,如固相,液相已经使用了气相反应,发现磁场随着热处理施加的磁场控制磁性形状并增加通过热分解反应形成的碳材料的拉伸强度,磁形控制机制和拉伸强度的增加由于施加高磁场,基于分子分子交联反应模型讨论,其中通过算用于磁场来修改自由基对理论。

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