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首页> 外文期刊>Journal of Solid State Electrochemistry >Paper like free-standing hybrid single-walled carbon nanotubes air electrodes for zinc–air batteries
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Paper like free-standing hybrid single-walled carbon nanotubes air electrodes for zinc–air batteries

机译:纸状独立式混合单壁碳纳米管,用于锌-空气电池的空气电极

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Flexible electrode architectures based on non-functionalized (P2) and functionalized (P3) single-walled carbon nanotubes (SWNTs) were fabricated via a simple vacuum filtration process. A hybrid layer of various compositions of P2- and P3-SWNTs forms free-standing membranes (~80 μm in thickness), and their electrochemical performance was evaluated as an air electrode AEP2/P3 in zinc–air batteries. Such bifunctionalized air electrodes showed uniform surface morphology with interconnected micron-sized porous structure with high porosity (~70%). The N2 adsorption isotherms at 77 K are of type IV with BET-specific surface areas of AE(60/40) and AE(80/20) to be 130.54 and 158.76 m2 g−1, respectively, thus facilitates high active surface area for active oxygen reduction/evolution reactions. BJH pore size distribution of AE(60/40) and AE(80/20) shows maximum pores with diameter <15 nm. The zigzag interlaying of the SWNTs imparts mechanical stability and flexibility in zinc–air batteries. Zinc–air batteries with optimized compositions of P2- and P3-SWNTs in air electrode AE(60/40) had ionic conductivity ~1 × 10−2 S cm−1 and delivered higher discharge capacity ~300 mAh g−1 as compared to AE(80/20) composition. The unique properties of AE(P2/P3) studied in this work would enable flexible air electrode architectures in future metal–air batteries.
机译:通过简单的真空过滤过程,可以制造基于非功能化(P2)和功能化(P3)单壁碳纳米管(SWNT)的柔性电极体系结构。由P2-和P3-SWNTs组成的杂化层形成独立的膜(厚度约80μm),其电化学性能作为锌中的空气电极AEP 2 / P3 进行了评估。空气电池。这样的双功能空气电极显示出均匀的表面形态,具有互连的微米级多孔结构,具有高孔隙率(〜70%)。 77 K下的N 2 等温吸附线为IV型,其BET比表面积为AE (60/40)和AE (80/20)< / sub>分别为130.54和158.76 m 2 g -1 ,因此有利于高活性表面积用于活性氧的还原/释放反应。 AE (60/40)和AE (80/20)的BJH孔径分布显示出最大孔径为<15 nm的孔。 SWNT的锯齿形夹层为锌空气电池提供了机械稳定性和灵活性。在空气电极AE (60/40)中具有优化的P2-和P3-SWNT组成的锌-空气电池的离子电导率为〜1×10 -2 S cm -1 并具有比AE (80/20)组成更高的放电容量〜300 mAh g -1 。在这项工作中研究的AE (P2 / P3)的独特特性将为未来的金属空气电池提供灵活的空气电极架构。

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