首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Covalently linked metal-organic framework (MOF)-polymer all-solid-state electrolyte membranes for room temperature high performance lithium batteries
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Covalently linked metal-organic framework (MOF)-polymer all-solid-state electrolyte membranes for room temperature high performance lithium batteries

机译:共价连接的金属 - 有机框架(MOF) - 聚合物全固态电解质膜,适用于室温高性能锂电池

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Extensive attention has been paid to metal-organic frameworks (MOFs) in the fields of gas storage/separation, sensors, catalysis, drug delivery and so on. However, the potential application of MOFs as electrolytes in lithium-ion batteries (LIBs) still needs to be further studied. In this study, showcased as the first example in the domain of all-solid-state electrolytes, a MOF covalently linked by flexible polymer chains toward a flexible stand-alone hybrid all-solid-state polymer electrolyte (HSPE) film is prepared by one-pot UV photopolymerization. Specifically, the precursors of the HSPE are composed of vinyl functionalized MOF (M-UiO-66-NH2) nanoparticles, poly(ethylene glycol) diacrylate (PEGDA), a lithium salt and a photoinitiator. It is confirmed that HSPE-1-8 (m(M-UiO-66-NH2):m(PEGDA) = 1:8) possesses over 5 times higher ionic conductivity (4.31 x 10(-5) S cm(-1) at 30 degrees C) and much better interfacial contact with Li electrodes than the SPE without incorporation of the vinyl functionalized MOF. Furthermore, at room temperature, the assembled cell of Li/HSPE-1-8/LiFePO4 exhibits outstanding rate capacity (it can reach 140, 124 and 80 mA h g(-1) at 0.2, 0.5 and 1C, respectively) and excellent long cycle performance. Meanwhile, the solid cell can also be well run at 60 degrees C (the discharge capacity reaches 110 mA h g(-1) at 2C). Combined with the superior low/high temperature performance of the cell, it is believed that the MOF-based hybrid SPE can be one of the most promising high-safety and high performance electrolytes for LIBs.
机译:在气体储存/分离,传感器,催化剂,药物递送等领域的金属有机框架(MOF)已经支付了广泛的关注。然而,需要进一步研究锂离子电池(LIBS)中的MOF作为电解质的潜在应用。在本研究中,作为全固态电解质结构域中的第一实例,通过朝向柔性聚合物链共同连接的MOF朝向柔性独立式杂交全固态聚合物电解质(HSPE)膜。通过一个 - 紫外线光聚合。具体地,HPPE的前体由乙烯基官能化MOF(M-UIO-66-NH2)纳米颗粒,聚(乙二醇)二丙烯酸酯(PEGDA),锂盐和光引发剂组成。据证实,HSPE-1-8(M(M-UIO-66-NH 2):M(PEGDA)= 1:8)具有超过5倍高的离子电导率(4.31×10(-5)S厘米(-1 )在30摄氏度下,与Li电极的界面与SPE更好的界面接触而不掺入乙烯基官能化的MOF。此外,在室温下,Li / Hspe-1-8 / Lifepo4的组装电池显示出优异的速率容量(其可分别达到0.2,0.5和1c的140,124和80 ma Hg(-1))和优异的长度循环性能。同时,固体细胞也可以在60℃下运行很好(放电容量在2℃下达到110mA H(-1))。结合细胞的优越低/高温性能,据信由基于MOF的杂交SPE是LIBS最有前途的高安全性和高性能电解质之一。

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