首页> 外文会议>Symposium on joint general session: batteries and energy storage -and- fuel cells, electrolytes, and energy conversion >Binder-Free Freestanding Flexible Si Nanoparticles-Multi-Walled Carbon Nanotubes Composite Anodes for Li-Ion Batteries
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Binder-Free Freestanding Flexible Si Nanoparticles-Multi-Walled Carbon Nanotubes Composite Anodes for Li-Ion Batteries

机译:无合成的独立式柔性Si纳米颗粒 - 多壁碳纳米管复合阳极用于锂离子电池

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Binder-free freestanding flexible Si nanoparticles-multi-walled carbon nanotubes (SiNPs-MWNTs) composite paper anodes have been prepared by simple, inexpensive, and scalable approach of ultra-sonication and pressure filtration. The 3D network of MWNTs forms a continuous conductive pathway within the composite structure, which ensures sufficient electrical conductivity, holds the particles together, and alleviates volume expansion of Si. Through control of Si/C weight ratio, we found out the SiNPs-MWNTs electrode with 3:2 Si/C ratio exhibits the optimal balance between high capacity of SiNPs and high conductivity and structural stabilization quality of MWNTs, leading to high rate capability as well as specific capacity and cycle performance superior to conventional slurry-cast SiNPs anode using binder and Cu current collector. After 100 cycles, the electrode retains capacity of 1170 mAh/g at 100 mA/g. The freestanding feature of our electrode eliminates the non-active mass, which is promising for enhanced capacity and energy density of Li-ion cells.
机译:通过简单,廉价和可扩展的超声波和压力过滤方法,通过简单,廉价和可扩展的方法制备了无合成的独立式柔性Si纳米颗粒 - 多壁碳纳米管(SINPS-MWNT)复合纸阳极。 MWNT的3D网络在复合结构内形成连续导电途径,其确保了足够的导电性,将颗粒保持在一起,并减轻Si的体积膨胀。通过控制Si / C重量比,我们发现了3:2 Si / C的SINPS-MWNTS电极在高容量的SINPS和高电导率和MWNT的结构稳定质量之间具有最佳平衡,导致高速率能力以及使用粘合剂和Cu集电器优于传统浆料铸造SINPS阳极的特定容量和循环性能。在100次循环之后,电极以100mA / g保持1170mAh / g的容量。我们电极的独立特征消除了非活性物质,这是有希望提高Li离子电池的能力和能量密度。

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