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Novel reversible and switchable electrolytes based on magneto-rheology

机译:基于磁流变学的新型可逆可转换电解质

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摘要

Replacing organic liquid electrolytes with solid electrolytes has led to a new perspective on batteries, enabling high-energy battery chemistry with intrinsically safe cell designs. However, most solid/gel electrolytes are easily deformed; under extreme deformation, leakage and/or short-circuiting can occur. Here, we report a novel magneto-rheological electrolyte (MR electrolyte) that responds to changes in an external magnetic field; the electrolyte exhibits low viscosity in the absence of a magnetic field and increased viscosity or a solid-like phase in the presence of a magnetic field. This change from a liquid to solid does not significantly change the conductivity of the MR electrolyte. This work introduces a new class of magnetically sensitive solid electrolytes that can enhance impact resistance and prevent leakage from electronic devices through reversible active switching of their mechanical properties.
机译:用固体电解质代替有机液体电解质已经为电池带来了新的视角,从而通过本质安全的电池设计实现了高能量电池化学。但是,大多数固体/凝胶电解质很容易变形。在极端变形下,可能会发生泄漏和/或短路。在这里,我们报告了一种新型的磁流变电解质(MR电解质),它可以响应外部磁场的变化。电解质在没有磁场的情况下表现出低粘度,而在存在磁场的情况下表现出增加的粘度或固相。从液体到固体的这种变化不会显着改变MR电解质的电导率。这项工作引入了一类新型的磁敏固体电解质,该电解质可通过机械性能的可逆主动切换来增强抗冲击性并防止电子设备泄漏。

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