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Visualization of Ion Transport and Electrode/Electrolyte Interaction in Electrolytes for Lithium Metal Batteries

机译:锂金属电池电解质中离子传输和电极/电解质相互作用的可视化

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Visualization of ion transport in electrolyte provides fundamental understandings of electrolyte dynamics and electrolyte-electrode interaction, shedding light on material designs to enhance device performance, such as batteries and fuel cells. However, this task is challenging for existing techniques, since it is difficult to capture the low ionic concentration (<1 M) and the fast dynamics (1-10 s) of the electrolyte. Here we show that an emerging Stimulated Raman Scattering (SRS) microscopy offers the required spatial (sub-micrometer optical resolution), temporal (faster than 1 s per frame) and chemical (around mM) sensitivities to address this challenge.
机译:电解质中离子传输的可视化提供了电解质动力学和电解质电极相互作用的基本谅解,在材料设计上脱落,以增强装置性能,例如电池和燃料电池。 然而,该任务对现有技术具有挑战性,因为难以捕获低离子浓度(<1M)和电解质的快速动力学(1-10秒)。 在这里,我们表明,出现的刺激拉曼散射(SRS)显微镜提供所需的空间(亚微米光学分辨率),时间(速度超过1 s)和化学(周围mm)敏感性,以解决这一挑战。

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