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A MOF-based single-ion Zn2+ solid electrolyte leading to dendrite-free rechargeable Zn batteries

机译:基于MOF的单离子Zn2 +固体电解质,导致树枝状可充电Zn电池

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Rechargeable Zn ion battery is a promising alternative for the current portable and mobile energy storage technologies because of its good safety, low cost, and material abundance. Poor deposition reversibility with dendrite formation of Zn metal anode in aqueous electrolytes, which brings the risk of short-circuit and capacity loss (dead Zn), is one of the critical issues that plague its practical applications. To improve the performances of Zn ion batteries, a crystalline single-ion Zn2+ solid-state electrolyte (SSE) is designed based on a post-synthetic modified metal-organic framework. The SSE possesses many advantages such as high ionic conductivity of 2.1 x 10(-4) S cm(-1) at 30 degrees C, minor activation energy of 0.12 eV, high Zn2+ transference number of 0.93, along with the good mechanical and electrochemical stability. Due to the restricted and guided Zn deposition through the nanowetted Zn/SSE interface at which Zn(H2O)(6)(2+) ions are confined, excellent compatibility between Zn metal anode and the SSE is revealed, which is confirmed firmly by the stable Zn plating/stripping performance, giving rise to a homogeneous, compact, and smooth Zn deposition layer. The good properties of the SSE are further verified in VS2/Zn batteries, which deliver a reversible capacity of 125 mAh g(-1) over 250 cycles at 0.2 A g(-1) and a reasonable rate capability with similar to 40% capacity retention (vs. 0.1 A g(-1)) at 2 A g(-1).
机译:由于其良好的安全性,低成本和材料丰富,可充电Zn离子电池是当前便携式和移动能量存储技术的有前途的替代方案。沉积沉积可逆性与Zn金属阳极在水性电解质中的抗牙齿形成,这带来了短路和容量损失(死亡Zn)的风险,是困扰其实际应用的关键问题之一。为了改善Zn离子电池的性能,基于合成后改性的金属 - 有机框架设计了晶体单离子Zn2 +固态电解质(SSE)。 SSE在30摄氏度,小Zn2 +转移数为0.93的较小激活能量,0.1×10(-4)的高离子导电率,例如高离子导电率为2.1×10(-4)厘米(-1)的优点。稳定。由于Zn(H2O)(6)(2+)离子被限制的纳米线Zn / SSE界面限制和引导的Zn沉积被限制,Zn金属阳极与SSE之间的优异相容性被揭示,其被牢固地确认稳定的Zn电镀/剥离性能,产生均匀,紧凑,光滑的Zn沉积层。在VS2 / Zn电池中进一步验证了SSE的良好性质,该电池在0.2Ag(-1)下以250次循环提供125mAhg(-1)的可逆容量,合理的速率能力与40%的容量相似在2Ag(-1)时保留(与0.1ag(-1)))。

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