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首页> 外文期刊>Journal of Applied Electrochemistry >Protective PVDF-HFP-based membranes for air de-hydration at the cathode of the rechargeable Li-air cell
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Protective PVDF-HFP-based membranes for air de-hydration at the cathode of the rechargeable Li-air cell

机译:基于PVDF-HFP的保护膜,用于可充电锂电池的阴极上的空气脱水

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摘要

Nonaqueous electrolyte Li-air batteries with an O-2-selective membrane at the cathode are developed for operation in ambient air at constant relative humidity (RH). The membrane allows for oxygen permeation and acts as a moisture barrier. Our group prepared highly hydrophobic films of poly(vinylidene fluoride co-hexafluoropropylene) (PVDF-HFP) via nonsolvent-induced phase separation. The addition of sacrificial silica nanoparticles (SiO2 NPs) to the precursor polymer solution increased the surface roughness of the casted membrane. Subsequent SiO2 NPs removal created a homogeneous porous network inside the membrane in which the silicone oil was trapped. The silicone oil accomplished the role of O-2-selective medium. The Li-air cell with the oxygen-selective membrane forwarded capacities of 640 mA h g(-1), at the discharge current density of 0.05 mA cm(-2), in air (17 % RH). Under the same experimental conditions, but without the membrane at the cathode, the Li-air cell delivered a capacity of 220 mA h g(-1). We demonstrate that the main cause of the unsatisfactory behaviour of the unprotected cell is the corrosion of the Li anode in the presence of water, although the cathode is also sensitive to CO2. The galvanostatic discharge-charge tests, in the capacity-controlled mode, confirmed the effectiveness of the membrane in protecting the Li-air cell in ambient air, assuring a cycle life comparable to that in dry oxygen atmosphere.
机译:开发了在阴极处具有O-2-选择性膜的非水电解质锂空气电池,可在恒定相对湿度(RH)的环境空气中运行。膜允许氧气渗透并充当防潮层。我们的小组通过非溶剂诱导的相分离制备了高度疏水的聚偏二氟乙烯共六氟丙烯(PVDF-HFP)薄膜。将牺牲二氧化硅纳米颗粒(SiO2 NPs)添加到前体聚合物溶液中会增加流延膜的表面粗糙度。随后的SiO2 NPs去除在膜内部形成了均匀的多孔网络,硅油被捕获在其中。硅油起到了O-2-选择性介质的作用。具有氧气选择性膜的锂空气电池在空气(17%RH)中,在放电电流密度为0.05 mA cm(-2)时,转发容量为640 mA h g(-1)。在相同的实验条件下,但正极没有膜,锂空气电池的容量为220 mA h g(-1)。我们证明,未保护电池的不令人满意行为的主要原因是在存在水的情况下Li阳极的腐蚀,尽管阴极也对CO2敏感。在容量控制模式下的恒电流充放电试验证实了该膜在保护环境空气中的锂空气电池方面的有效性,从而确保了与干燥氧气气氛相当的循环寿命。

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