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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Cellulose Microcrystals with Brush-Like Architectures as Flexible All-Solid-State Polymer Electrolyte for Lithium-Ion Battery
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Cellulose Microcrystals with Brush-Like Architectures as Flexible All-Solid-State Polymer Electrolyte for Lithium-Ion Battery

机译:具有刷状架构的纤维素微晶作为锂离子电池的柔性全固态聚合物电解质

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摘要

Development of cellulose-based electrolytes can strongly reduce the cost of energy storage devices. However, the prepared cellulose-based electrolytes use high contents of liquid electrolytes, sacrificing the safety of the assembled cells. In this study, showcased as the first example in the field of cellulose-based all-solid-state polymer electrolytes (CSSPEs), we develop a flexible (stretchability >150%) SPE using a cellulose with brush-like architectures for lithium-ion batteries (LIBs). Specifically, to prepare the electrolyte matrix, ion-conducting segments are covalently connected onto the cellulose-based macroinitiator via living controllable polymerization. The CSSPE delivers good electrochemical performance. Especially, the ionic conductivity of the CSSPE reaches 8.00 x 10(-5) S cm(-1) (30 degrees C) because the brush-like architectures are beneficial for the formation of more ion channels. The assembled LiFePO4/Li cell using the CSSPE exhibits excellent long cycle ability (over 450 cycles with a Coulombic efficiency of over 99%) and good rate capacity. The novel CSSPE with brush-like architectures provides possibility for preparing stretchable devices.
机译:基于纤维素的电解质的开发可以强烈地降低能量存储装置的成本。然而,制备的纤维素的电解质使用高含量的液体电解质,从而牺牲组装细胞的安全性。在该研究中,作为纤维素的全固态聚合物电解质(Csspes)领域的第一个例子,我们使用纤维素产生柔性(拉伸性> 150%)SPE,纤维素与锂离子的刷状架构电池(LIBS)。具体地,为了制备电解质基质,通过活可控制的聚合,离子导电段共价连接到基于纤维素的大型纤维素引发剂上。 CSSPE提供良好的电化学性能。特别地,CSPE的离子电导率达到8.00×10(-5)厘米(-1)(30摄氏度),因为刷状架构是有利于形成更多离子通道的。使用CSSPE组装的LiFePO4 / Li细胞表现出优异的长循环能力(超过450个周期,库仑效率超过99%)和良好的速率容量。具有刷状架构的新型CSSPE提供了准备可拉伸设备的可能性。

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