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Multifunctional, robust, light-weight, free-standing MWCNT/phenolic composite paper as anodes for lithium ion batteries and EMI shielding material\ud

机译:多功能,坚固,轻质,独立式mWCNT /酚醛复合纸作为锂离子电池和EmI屏蔽材料的阳极\ ud

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摘要

Energy density of Li-ion batteries is marred due to the additional weight of copper, which is used as a current collector. In this work, fabrication of strong, graphitized, multiwalled carbon nanotubes (GCNTs)/phenolic composite paper using a new dispersion technique is reported. The composite paper has been used as a free-standing current collector, as well as an anode material for Li-ion batteries, because of its good electrical conductivity of 76 S cm(-1). This highly thin conductive composite paper (thickness 140 mu m) also shows efficient electromagnetic interference (EMI) shielding effectiveness of 32.4 dB in Ku-band (12.4-18 GHz). Moreover, structural and morphological studies were carried out using TEM and SEM. The flexural strength of the composite paper was 30 MPa, which is good enough for use as an electrode in batteries. The electrochemical properties of the composite paper were investigated by galvanostatic charge-discharge test. It exhibits a stable reversible specific capacity for more than 45 cycles. EMI shielding effectiveness (SE) was measured using a vector network analyzer, and the total EMI-SE surpasses the value needed for commercial applications.
机译:锂离子电池的能量密度由于用作集电器的铜的额外重量而受损。在这项工作中,报道了使用新的分散技术制造坚固的石墨化多壁碳纳米管(GCNT)/酚醛复合纸。该复合纸由于具有76 S cm(-1)的良好导电性,已被用作独立式集电器以及锂离子电池的负极材料。这种高度薄的导电复合纸(厚度为140μm)在Ku波段(12.4-18 GHz)中也显示出32.4 dB的有效电磁干扰(EMI)屏蔽效果。此外,使用TEM和SEM进行了结构和形态研究。该复合纸的抗弯强度为30MPa,足以用作电池中的电极。通过恒电流充放电试验研究了复合纸的电化学性能。它具有超过45个循环的稳定的可逆比容量。使用矢量网络分析仪测量了EMI屏蔽效果(SE),总EMI-SE超过了商业应用所需的值。

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