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The Fractal Nature Materials Microstructure Influence on Electrochemical Energy Sources

机译:分形自然材料的微观结构对电化学能源的影响

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With increasing of the world energy crisis, research for new, renewable and alternative energy sources are in growth. The focus is on research areas, sometimes of minor importance and applications, where the different synthesis methods and microstructure properties optimization, performed significant improvement of output materials' and components' electro-physical properties, which is important for higher energy efficiency and in the electricity production (batteries and battery systems, fuel cells and hydrogen energy) contribution. Also, the storage tanks capacity improvement, for the energy produced on such way, which is one of the most important development issues in the energy sphere, represents a very promising research and application area. Having in mind, the results achieved in the electrochemical energy sources field, especially electrolyte development, these energy sources, materials fractal nature optimization analysis contribution, have been investigated. Based on materials fractal structure research field, particularly electronic materials, we have performed microstructure influence parameters research in electrochemistry area. We have investigated the Ho2O3 concentration influence (from 0.01wt% to 1wt%) and sintering temperature (from 1320 degrees C to 1380 degrees C), as consolidation parameters, and thus, also open the electrochemical function fractalization door and in the basic thermodynamic parameters the fractal correction introduced. The fractal dimension dependence on additive concentration is also investigated.
机译:随着世界能源危机的加剧,对新能源,可再生能源和替代能源的研究也在增长。重点是研究领域,有时重要性不高,在应用领域中,不同的合成方法和微观结构性能优化极大地改善了输出材料和组件的电物理性能,这对于提高能源效率和电力领域至关重要生产(电池和电池系统,燃料电池和氢能)的贡献。而且,对于以这种方式产生的能量的储罐容量的改进是能量领域中最重要的发展问题之一,这代表了非常有前途的研究和应用领域。考虑到在电化学能源领域中取得的成果,特别是电解质的发展,已经研究了这些能源,材料分形性质优化分析的贡献。基于材料分形结构研究领域,特别是电子材料,我们在电化学领域进行了微结构影响参数研究。我们研究了Ho2O3浓度的影响(从0.01wt%到1wt%)和烧结温度(从1320摄氏度到1380摄氏度),作为固结参数,因此也打开了电化学功能分形门和基本的热力学参数分形校正介绍。还研究了分形维数对添加剂浓度的依赖性。

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