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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Thermally driven phase transition of manganese oxide on carbon cloth for enhancing the performance of flexible all-solid-state zinc-air batteries
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Thermally driven phase transition of manganese oxide on carbon cloth for enhancing the performance of flexible all-solid-state zinc-air batteries

机译:碳布上氧化锰的热驱动相转变,提升柔性全固态锌空气电池性能的碳布

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Flexible and rechargeable zinc-air batteries with high energy density and stable output voltage are promising energy sources for wearable electronics and implantable medical devices. The development of efficient bi-functional catalysts with low-cost and environmentally friendly properties has become the focus of research on rechargeable zinc-air batteries. Herein, we present the in situ growth of manganese oxide (MnOx) on carbon cloth (MnOx-CC) by incorporating a simple chemical bath deposition method with the phase transformation of MnOx driven by thermal treatment for improving the bifunctional catalytic activities for the ORR and OER. With bifunctional catalytic activities, the carbon cloth supported MnOx electrode without an additional nonconductive binder has been used to assemble an all-solid-state rechargeable zinc-air battery. The solid-state battery shows a high open circuit voltage (1.47 V), superior round-trip efficiency (62.4% after 120 cycles), long cycling life (45 h over an operating voltage of 1.2 V), and high capacity (728 mA h g(-1)), which is superior to those of the Pt/C and RuO2 based battery. The battery also demonstrated excellent mechanical flexibility and cycling stability without obvious performance degradation. The present work provides an efficient approach to prepare advanced bifunctional electrocatalysts for the fabrication of all-solid-state zinc-air batteries, which would meet the demand for flexible and wearable devices.
机译:具有高能量密度和稳定输出电压的柔性和可充电锌 - 空气电池是可穿戴电子产品和可植入医疗设备的能源。具有低成本和环保性质的高效双官能催化剂的发展已成为可充电锌空气电池的研究重点。在此,我们通过在通过热处理驱动的MNOX驱动的MNOX的相变,以改善ORR的双官能催化活性,纳入碳布(MNOX-CC)对碳布(MNOX-CC)对碳布(MNOX-CC)的原位生长。 oer。通过双官能催化活性,使用碳布负载的MNOX电极,无需额外的非导电粘合剂来组装全固态可充电锌空气电池。固态电池显示出高开关电压(1.47 V),较高的往返效率(120次循环后62.4%),循环寿命长(45小时,工作电压为1.2 V),高容量(728 mA HG(-1)),其优于Pt / C和Ruo2基电池的电池。电池还展示了出色的机械柔韧性和循环稳定性,而无明显的性能降解。本作采用有效的方法,可以制备先进的双功能电催化剂,用于制造全固态锌 - 空气电池,这将满足灵活和可穿戴设备的需求。

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