Deng Chenglong, Chen Nan, Hou Chuanyu, Liu Hanxiao, Zhou Zhiming, Chen Renjie
School of Materials Science & Engineering, Beijing Key Laboratory of Environmental Science and Engineering, Beijing Institute of Technology, Beijing, 100081, China.
School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Small. 2021 May;17(18):e2006578. doi: 10.1002/smll.202006578. Epub 2021 Mar 19.
Solid-state batteries promise to meet the challenges of high energy density and high safety for future energy storage. However, poor interfacial contact and complex manufacturing processes limit their practical applications. Herein, a simple strategy is proposed to enhance interfacial contact by introducing a gradient composite polymer solid electrolyte (GCPE), which is prepared by a facile UV-curing polymerization technique. The high-Li La Zr Ta O (LLZTO)-content side of the electrolyte exhibits high oxidation resistance (5.4 V versus Li /Li), making it compatible with a high-voltage cathode material, whereas the LLZTO-deficient side achieves excellent interfacial contact with the Li metal anode, facilitating uniform Li deposition. Benefiting from the elaborate composition and structure of GCPE films, the symmetric Li//Li cell exhibits a low-voltage hysteresis potential of 42 mV and a long cycle life of >1900 h without short-circuiting. The Li//LiFePO solid-state batteries deliver a capacity of 161.0 mA h g at 60 °C and 0.1 C (82.4% capacity is retained after 200 cycles). Even at 80 °C, the cell still shows an outstanding capacity of 132.9 mAh g at 0.2 C after 100 cycles. The design principle of gradient electrolytes provides a new path for achieving enhanced interfacial contact in high-performance solid-state batteries.
固态电池有望应对未来储能领域在高能量密度和高安全性方面的挑战。然而,较差的界面接触和复杂的制造工艺限制了它们的实际应用。在此,我们提出了一种简单的策略,即通过引入梯度复合聚合物固体电解质(GCPE)来增强界面接触,该电解质是通过简便的紫外光固化聚合技术制备的。电解质中高锂镧锆钽氧化物(LLZTO)含量的一侧表现出高抗氧化性(相对于Li/Li为5.4 V),使其能够与高压正极材料兼容,而LLZTO含量较低的一侧则与锂金属负极实现了优异的界面接触,有利于锂的均匀沉积。得益于GCPE薄膜精心设计的组成和结构,对称Li//Li电池表现出42 mV的低电压滞后电位和超过1900 h的长循环寿命且无短路现象。Li//LiFePO固态电池在60℃和0.1 C下的容量为161.0 mA h g(200次循环后保留82.4%的容量)。即使在80℃下,该电池在100次循环后于0.2 C时仍表现出132.9 mAh g的出色容量。梯度电解质的设计原理为在高性能固态电池中实现增强的界面接触提供了一条新途径。