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An anion-immobilized composite electrolyte for dendrite-free lithium metal anodes

机译:用于无枝晶状锂金属阳极的阴离子固定复合电解质

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摘要

Lithium metal is strongly regarded as a promising electrode material in next-generation rechargeable batteries due to its extremely high theoretical specific capacity and lowest reduction potential. However, the safety issue and short lifespan induced by uncontrolled dendrite growth have hindered the practical applications of lithium metal anodes. Hence, we propose a flexible anion-immobilized ceramic–polymer composite electrolyte to inhibit lithium dendrites and construct safe batteries. Anions in the composite electrolyte are tethered by a polymer matrix and ceramic fillers, inducing a uniform distribution of space charges and lithium ions that contributes to a dendrite-free lithium deposition. The dissociation of anions and lithium ions also helps to reduce the polymer crystallinity, rendering stable and fast transportation of lithium ions. Ceramic fillers in the electrolyte extend the electrochemically stable window to as wide as 5.5 V and provide a barrier to short circuiting for realizing safe batteries at elevated temperature. The anion-immobilized electrolyte can be applied in all–solid-state batteries and exhibits a small polarization of 15 mV. Cooperated with LiFePO4 and LiNi0.5Co0.2Mn0.3O2 cathodes, the all–solid-state lithium metal batteries render excellent specific capacities of above 150 mAh⋅g−1 and well withstand mechanical bending. These results reveal a promising opportunity for safe and flexible next-generation lithium metal batteries.
机译:金属锂由于其极高的理论比容量和最低的还原电位,因此在下一代可充电电池中被强烈认为是一种有前途的电极材料。然而,由于不受控制的枝晶生长而引起的安全性问题和寿命短阻碍了锂金属阳极的实际应用。因此,我们提出了一种柔性阴离子固定化陶瓷-聚合物复合电解质,以抑制锂枝晶并构建安全的电池。复合电解质中的阴离子被聚合物基体和陶瓷填料束缚在一起,引起空间电荷和锂离子的均匀分布,这有助于无枝晶状锂的沉积。阴离子和锂离子的离解还有助于降低聚合物的结晶度,从而使锂离子稳定,快速地运输。电解质中的陶瓷填料将电化学稳定的窗口扩展至5.5 V,并为实现高温下的安全电池短路提供了屏障。阴离子固定的电解质可用于全固态电池,并具有15 mV的小极化。全固态锂金属电池与LiFePO4和LiNi0.5Co0.2Mn0.3O2阴极配合使用,可提供超过150 mAh·g -1 的出色比容量,并具有良好的机械弯曲性能。这些结果揭示了安全灵活的下一代锂金属电池的潜在机会。

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