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    • 53. 发明授权
    • High energy density boride batteries
    • 高能量密度硼化物电池
    • US06468694B1
    • 2002-10-22
    • US09162428
    • 1998-09-28
    • Steven Amendola
    • Steven Amendola
    • H01M00058
    • H01M4/58H01M4/00H01M4/38H01M4/388H01M4/582H01M6/04H01M12/04H01M2300/0002H01M2300/0017
    • Borides generally can produce a cell with a high energy density. High power densities are also achievable using borides that are reasonably good conductors of electricity. High density is important to achieve high energy density. Another important factor is lower molecular weight per available electron. The borides generally provide a favorable balance of these factors compared to a number of other materials, such as lithium or zinc. Individual borides have other important characteristics. Titanium diboride is safe. The inclusion of a halide, particularly fluoride, in the anodic storage medium signficantly improvers performance.
    • 硼化物通常可以产生具有高能量密度的电池。 使用相当好的电导体的硼化物也可实现高功率密度。 高密度对于实现高能量密度是很重要的。 另一个重要因素是每个可用电子的分子量较低。 与许多其它材料(例如锂或锌)相比,硼化物通常提供这些因素的有利平衡。 单个硼化物还有其他重要特征。 二硼化钛是安全的。 在阳极存储介质中包含卤化物,特别是氟化物显着提高了性能。