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Direct electrochemical generation of supercooled sulfur microdroplets well below their melting temperature

机译:远低于其熔化温度的过冷硫微滴的直接电化学生成

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摘要

Supercooled liquid sulfur microdroplets were directly generated from polysulfide electrochemical oxidation on various metal-containing electrodes. The sulfur droplets remain liquid at 155 °C below sulfur’s melting point (Tm = 115 °C), with fractional supercooling change (Tm − Tsc)/Tm larger than 0.40. In operando light microscopy captured the rapid merging and shape relaxation of sulfur droplets, indicating their liquid nature. Micropatterned electrode and electrochemical current allow precise control of the location and size of supercooled microdroplets, respectively. Using this platform, we initiated and observed the rapid solidification of supercooled sulfur microdroplets upon crystalline sulfur touching, which confirms supercooled sulfur’s metastability at room temperature. In addition, the formation of liquid sulfur in electrochemical cell enriches lithium-sulfur-electrolyte phase diagram and potentially may create new opportunities for high-energy Li-S batteries.
机译:过冷的液态硫微滴是由多硫化物在各种含金属的电极上电化学氧化直接产生的。硫滴在低于硫的熔点(Tm = 115°C)155°C时仍保持液态,而过冷却分数(Tm-Tsc)/ Tm大于0.40。在操作中,光学显微镜观察到了硫滴的快速合并和形状松弛,表明了它们的液体性质。微图案化的电极和电化学电流可分别精确控制过冷微滴的位置和大小。使用该平台,我们启动并观察了结晶硫接触后过冷硫微滴的快速凝固,这证实了过冷硫在室温下的亚稳性。另外,电化学电池中液态硫的形成丰富了锂-硫-电解质的相图,并可能为高能Li-S电池创造新的机会。

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