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Fuel cells incorporating magnetic composites having distinct flux properties

机译:包含具有不同通量特性的磁性复合材料的燃料电池

摘要

Magnetic composites exhibit distinct flux properties due to gradient interfaces. Such composites can be used, for example, to improve fuel cells and batteries and to effect transport and separation of different chemical species, such as transition metal species (lanthanides and actinides). A variety of devices can be made utilizing the composites, including a separator, an electrode for channeling flux of magnetic species, an electrode for effecting electrolysis of magnetic species, a system for channeling electrolyte species, a system for separating particles with different magnetic susceptibilities, as well as improved fuel cells, batteries, and oxygen concentrators. Various magnetic composites can be used, for example, to make a separator for distinguishing between two chemical species, to form a flux switch to regulate the flow of a chemical species, to control chemical species transport and distribution, to produce rechargeable batteries having longer secondary cycle life and improved output power, and to enable the production of ambient pressure fuel cells having enhanced performance and reduced weight.
机译:磁性复合材料由于梯度界面而表现出独特的磁通特性。此类复合材料可用于,例如,改善燃料电池和电池,以及实现不同化学物种(例如过渡金属物种(镧系元素和act系元素))的运输和分离。可以使用复合材料制造各种设备,包括隔板,用于引导磁性物质通量的电极,用于实现磁性物质电解的电极,用于引导电解质物质的系统,用于分离具有不同磁化率的颗粒的系统,以及改进的燃料电池,电池和氧气浓缩器。可以使用各种磁性复合材料,例如,制造用于区分两种化学物质的隔板,形成通量开关以调节化学物质的流量,控制化学物质的运输和分配,以生产具有更长二次电池的可充电电池循环寿命和改进的输出功率,并能够生产具有增强性能和减轻重量的常压燃料电池。

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