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Mixed Phase Solid-State Plastic Crystal Electrolytes Based on a Phosphonium Cation for Sodium Devices

机译:基于磷阳离子的钠相混合相固态塑料电解质

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摘要

Na batteries are seen as a feasible alternative technology to lithium ion batteries due to the greater abundance of sodium and potentially similar electrochemical behavior. In this work, mixed phase electrolyte materials based on solid-state compositions of a trimethylisobutylphosphonium (P-111i4) bis(trifluromethanesulphonyl)amide (NTf2) organic ionic plastic crystal (OIPC) and high concentration of NaNTf2 that support safe, sodium metal electrochemistry are demonstrated. A Na symmetric cell can be cycled efficiently, even in the solid state (at 50 degrees C and 60 degrees C), for a 25 mol% (P111i4NTf2)-75 mol% NaNTf2 composition at 0.1 mA cm(-2) for 100 cycles. Thus, these mixed phase materials can be potentially used in Na-based devices under moderate temperature conditions. It is also investigated that the phase behavior, conductivity, and electrochemical properties of mixtures of NaNTf2 with this OIPC. It is observed that these mixtures have complex phase behavior. For high compositions of the Na salt, the materials are solid at room temperature and retain a soft solid consistency even at 50 degrees C with remarkably high conductivity, approaching that of the pure ionic liquid at 50 degrees C, i.e., 10(-3)-10(-2) S cm(-1).
机译:由于钠含量更高且电化学行为可能相似,因此钠电池被视为锂离子电池的可行替代技术。在这项工作中,基于三甲基异丁基phosph(P-111i4)双(三氟甲磺酰基)酰胺(NTf2)有机离子塑料晶体(OIPC)和高浓度NaNTf2固态成分的混合相电解质材料可支持钠金属电化学的安全性演示。即使在固态(50摄氏度和60摄氏度)下,Na对称电池也可以有效循环,对于25 mol%(P111i4NTf2)-75 mol%NaNTf2组合物在0.1 mA cm(-2)时可有效循环100次。因此,这些混合相材料可以在中等温度条件下潜在地用于基于Na的器件中。还研究了NaNTf2与该OIPC的混合物的相行为,电导率和电化学性质。观察到这些混合物具有复杂的相行为。对于高含量的Na盐,材料在室温下为固体,即使在50°C时仍保持柔软的固体稠度,导电率非常高,接近50°C时纯离子液体的电导率,即10(-3) -10(-2)S cm(-1)。

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