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Steam Selective Etching: A Strategy to Effectively Enhance the Flexibility and Suppress the Volume Change of Carbonized Paper-Supported Electrodes

机译:蒸汽选择性蚀刻:有效提高灵活性并抑制碳化纸支撑电极体积变化的策略

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Paper-supported electrodes with high flexibility have attracted much attention in flexible Li-ion batteries. However, they are restricted by the heavy inactive paper substrate and large volume change during the lithiation-delithiation process, which will lead to low capacity and poor rate capability and cyclability. Converting the paper substrate to carbon fiber by carbonization can substantially eliminate the "dead mass", but it becomes very brittle. This study reports a water-steam selective etching strategy that successfully addresses these problems. With the help of steam etching, pores are created, and transition metal oxides are embedded into the fiber. These effectively accommodate the volume change and enhances the kinetics of ion and electron transport. The pores release the mechanical stress from bending, ensuring the sufficient bendability of carbonized paper. Benefiting from these merits, the steam-etched samples show high flexibility and possess outstanding electrochemical performance, including ultra-high capacity and superior cycling stability with capacity retention over 100% after 1500 cycles at 2 A g(-1). Furthermore, a flexible Li-ion full battery using the steam-etched Fe2O3@CNF anode and LiFePO4/steam-etched CNF cathode delivers a high capacity of 623 mAh g-1 at 100 mA g(-1) and stable electrochemical performances under the bent state, holding great promise for next-generation wearable devices.
机译:具有高柔韧性的纸张支撑电极在柔性锂离子电池中引起了很多关注。然而,它们受到重质非活性纸基材的限制,并且在锂化脱锂过程中的大体积变化,这将导致低容量和速率不良和可行性。通过碳化将纸基材转化为碳纤维可以基本上消除“尸体”,但它变得非常脆。本研究报告了一种成功解决这些问题的水蒸汽选择性蚀刻策略。在蒸汽蚀刻的帮助下,产生孔隙,并将过渡金属氧化物嵌入纤维中。这些有效地适应体积变化并增强离子和电子传输的动力学。孔释放弯曲的机械应力,确保碳化纸的充分弯曲性。从这些优点中受益,蒸汽蚀刻样品显示出高柔韧性并具有出色的电化学性能,包括超高容量和优异的循环稳定性,在2Ag(-1)下1500次循环后容量保持超过100%。此外,使用蒸汽蚀刻Fe2O3 @ C​​NF阳极和LiFePO4 /蒸汽蚀刻的CNF阴极的柔性锂离子全电池在100mA g(-1)下提供高容量为623mAhg-1,稳定的电化学性能弯曲状态,对下一代可穿戴设备持有巨大的承诺。

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