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Quasi–solid state rechargeable Na-CO2 batteries with reduced graphene oxide Na anodes

机译:准固态可充电Na-CO2电池氧化石墨烯钠阳极还原

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摘要

Na-CO2 batteries using earth-abundant Na and greenhouse gas CO2 are promising tools for mobile and stationary energy storage, but they still pose safety risks from leakage of liquid electrolyte and instability of the Na metal anode. These issues result in extremely harsh operating conditions of Na-CO2 batteries and increase the difficulty of scaling up this technology. We report the development of quasi–solid state Na-CO2 batteries with high safety using composite polymer electrolyte (CPE) and reduced graphene oxide (rGO) Na anodes. The CPE of PVDF-HFP [poly(vinylidene fluoride-co-hexafluoropropylene)]–4% SiO2/NaClO4–TEGDME (tetraethylene glycol dimethyl ether) has high ion conductivity (1.0 mS cm−1), robust toughness, a nonflammable matrix, and strong electrolyte-locking ability. In addition, the rGO-Na anode presents fast and nondendritic Na+ plating/stripping (5.7 to 16.5 mA cm−2). The improved kinetics and safety enable the constructed rGO-Na/CPE/CO2 batteries to successfully cycle in wide CO2 partial pressure window (5 to 100%, simulated car exhaust) and especially to run for 400 cycles at 500 mA g−1 with a fixed capacity of 1000 mA·hour g−1 in pure CO2. Furthermore, we scaled up the reversible capacity to 1.1 A·hour in pouch-type batteries (20 × 20 cm, 10 g, 232 Wh kg−1). This study makes quasi–solid state Na-CO2 batteries an attractive prospect.
机译:使用富含稀土的Na和温室气体CO2的Na-CO2电池是用于移动和固定能量存储的有前途的工具,但是它们仍然会因液体电解质泄漏和Na金属阳极的不稳定性而带来安全隐患。这些问题导致Na-CO2电池的运行条件极为恶劣,并增加了扩展该技术的难度。我们报告了使用复合聚合物电解质(CPE)和还原型氧化石墨烯(rGO)Na阳极的高安全性准固态Na-CO2电池的开发。 PVDF-HFP [聚偏二氟乙烯-六氟丙烯共聚物] -4%SiO2 / NaClO4-TEGDME(四甘醇二甲醚)的CPE具有高离子电导率(1.0 mS cm -1 ),坚固的韧性,不易燃的基质和强大的电解质锁定能力。此外,rGO-Na阳极呈现出快速且无树枝状的Na + 电镀/剥离(5.7至16.5 mA cm -2 )。改进的动力学特性和安全性使所构造的rGO-Na / CPE / CO2电池能够在宽的CO2分压窗口(5至100%,模拟的汽车尾气)中成功循环,尤其是在500 mA gs下运行400次1 在纯二氧化碳中的固定容量为1000 mA·hour g -1 。此外,我们将袋装电池(20×20 cm,10 g,232 Wh kg -1 )的可逆容量扩大到1.1 A·小时。这项研究使准固态Na-CO2电池具有诱人的前景。

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