Self Ethan C, Naguib Michael, Ruther Rose E, McRen Emily C, Wycisk Ryszard, Liu Gao, Nanda Jagjit, Pintauro Peter N
Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, TN, 37235, USA.
Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN, 37831, USA.
ChemSusChem. 2017 Apr 22;10(8):1823-1831. doi: 10.1002/cssc.201700096. Epub 2017 Mar 24.
Freestanding nanofiber mat Li-ion battery anodes containing Si nanoparticles, carbon black, and poly(acrylic acid) (Si/C/PAA) are prepared using electrospinning. The mats are compacted to a high fiber volume fraction (≈0.85), and interfiber contacts are welded by exposing the mat to methanol vapor. A compacted+welded fiber mat anode containing 40 wt % Si exhibits high capacities of 1484 mA h g (3500 mA h g-1Si ) at 0.1 C and 489 mA h g at 1 C and good cycling stability (e.g., 73 % capacity retention over 50 cycles). Post-mortem analysis of the fiber mats shows that the overall electrode structure is preserved during cycling. Whereas many nanostructured Si anodes are hindered by their low active material loadings and densities, thick, densely packed Si/C/PAA fiber mat anodes reported here have high areal and volumetric capacities (e.g., 4.5 mA h cm and 750 mA h cm , respectively). A full cell containing an electrospun Si/C/PAA anode and electrospun LiCoO -based cathode has a high specific energy density of 270 Wh kg . The excellent performance of the electrospun Si/C/PAA fiber mat anodes is attributed to the: i) PAA binder, which interacts with the SiO surface of Si nanoparticles and ii) high material loading, high fiber volume fraction, and welded interfiber contacts of the electrospun mats.
采用静电纺丝法制备了包含硅纳米颗粒、炭黑和聚丙烯酸(Si/C/PAA)的独立式纳米纤维毡锂离子电池阳极。将这些毡压实至高纤维体积分数(≈0.85),并通过将毡暴露于甲醇蒸汽中来焊接纤维间的接触点。含有40 wt %硅的压实+焊接纤维毡阳极在0.1 C时表现出1484 mA h g(3500 mA h g-1Si)的高容量,在1 C时为489 mA h g,并且具有良好的循环稳定性(例如,在50次循环中容量保持率为73 %)。对纤维毡的事后分析表明,在循环过程中整体电极结构得以保留。尽管许多纳米结构的硅阳极因其低活性材料负载量和密度而受到阻碍,但本文报道的厚的、密集堆积的Si/C/PAA纤维毡阳极具有高的面积容量和体积容量(例如,分别为4.5 mA h cm和750 mA h cm)。包含静电纺丝Si/C/PAA阳极和静电纺丝LiCoO₂基阴极的全电池具有270 Wh kg的高比能量密度。静电纺丝Si/C/PAA纤维毡阳极的优异性能归因于:i)与硅纳米颗粒的SiO表面相互作用的PAA粘合剂,以及ii)静电纺丝毡的高材料负载量、高纤维体积分数和焊接的纤维间接触点。