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Electrospinning preparation of ultra-long aligned nanofibers thin films for high performance fully flexible lithium-ion batteries

机译:高性能全柔性锂离子电池超长取向纳米纤维薄膜的静电纺丝制备

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摘要

Flexible lithium-ion batteries (LIBs) are of increasing interest as mobile power supply for the next-generation of flexible electronics. The current flexible LIBs are generally limited by relatively poor ductility, short cycle-life and low charge and discharge rate. Herein, we report a rational design and preparation of flexible ultra-long, aligned carbon nanofibers thin films with embedded In2O3 nanocrystals (In2O3@FUACNFF) as a binder free anode for highly flexible LIBs. In this work, needleless electrospinning has been demonstrated to be to an effective method for the preparation of In2O3@FUACNFF with super-high throughput. The In2O3@FUACNFF can ensure excellent charge transport, electrolyte transport and mechanical flexibility, thus leading to excellent electrochemical performance and exceptional flexibility. The In2O3@FUACNFF exhibited excellent cycling ability even after 500 cycles, with a capacity of 545.6 mA h g(-1) at a current density of 200 mA g(-1) and rate performance even at the highest current density of 100 A g(-1) with a reversible capacity of 224.2 mA h g(-1). Moreover, highly flexible full batteries were also fabricated to demonstrate the superior durability (the electrical stability of the manufactured flexible full battery was hardly affected after more than 120 times folding cycles), excellent cycle-ability (the capacity retention was almost 100% in the measured range from the 17th cycle on) and high rate performance (321.4 mA h g(-1) at a current density of 1000 mA g(-1)). (C) 2014 Elsevier Ltd. All rights reserved.
机译:柔性锂离子电池(LIB)作为下一代柔性电子设备的移动电源越来越受到关注。当前的柔性LIB通常受到相对差的延展性,短的循环寿命和低的充放电速率的限制。本文中,我们报告了合理设计和制备的柔性超长取向碳纳米纤维薄膜,其中嵌入的In2O3纳米晶体(In2O3 @ FUACNFF)可作为无粘合剂的高柔性LIB阳极。在这项工作中,无针静电纺丝已被证明是一种制备超高通量In2O3 @ FUACNFF的有效方法。 In2O3 @ FUACNFF可确保出色的电荷传输,电解质传输和机械柔韧性,从而带来出色的电化学性能和出色的柔韧性。 In2O3 @ FUACNFF即使在500次循环后仍表现出出色的循环能力,在200 mA g(-1)的电流密度下的容量为545.6 mA hg(-1),甚至在最高电流密度为100 A g(( -1)的可逆容量为224.2 mA hg(-1)。此外,还制造了高度柔性的完整电池,以显示出优异的耐久性(经过120次折叠循环后几乎不影响所制造的柔性完整电池的电稳定性),出色的循环能力(电池中的容量保持率几乎为100%)从第17个周期开始测量范围)和高倍率性能(电流密度为1000 mA g(-1)时为321.4 mA hg(-1))。 (C)2014 Elsevier Ltd.保留所有权利。

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