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Preparation of negative electrodes for lithium-ion rechargeable battery by pressure-pulsed chemical vapor infiltration of pyrolytic carbon into electro-conductive forms

机译:通过热解碳的压力脉冲化学气相渗透法制备锂离子二次电池负极

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The plate-type negative electrodes for lithium-ion rechargeable battery were prepared by pressure-pulsed chemical vapor infiltration of pyrolytic carbon (pyrocarbon) into two sorts of conductive porous forms, that is, the carbonized paper (A) and the TiN-coated paper (B), as the conductive tillers and/or current collectors. The electrodes had the three-dimensionally continuous current paths in the pyrocarbon-based anodes without the organic binders and the additional conductive fillers. The pyrocarbon in sample (A) had the relatively high crystallinity, whereas the pyrocarbon in sample (B) was disordered. Sample (B) possessed higher surface area and larger pore volume with mesopores of 1.5-10 nm, especially below 3 nm, than that of sample (A). The capacity of pyrocarbon in sample (B) was 460 mA h g~(-1) per mass of pyrocarbon at a current density of 25 mA g~(-1), reflecting the disordered microstructure of pyrocarbon film. And 80% of the capacity was maintained even at 1000 mA g~(-1). The capacity of pyrocarbon in sample (A) was estimated at ~300 mA h g~(-1), which was lower than that of sample (B). However, sample (A) showed higher Coulombic efficiency at first cycle (i.e. 85%) than that of sample (B), which would result from the high crystallinity, laminar microstructure and low surface area of pyrocarbon in sample (A).
机译:通过将热解碳(pyrocarbon)的压力脉冲化学气相渗透成两种导电的多孔形式,即碳化纸(A)和TiN涂层纸,制备了用于锂离子可充电电池的板状负极(B),作为导电分till和/或集电器。电极在基于热碳的阳极中具有三维连续电流路径,而没有有机粘合剂和其他导电填料。样品(A)中的热碳具有较高的结晶度,而样品(B)中的热碳则无序。与样品(A)相比,样品(B)具有更高的表面积和更大的孔体积,中孔为1.5-10nm,尤其是低于3nm。在电流密度为25 mA g〜(-1)的情况下,样品(B)中的焦碳容量为每质量焦碳460 mA h g〜(-1),反映了焦碳膜微结构的无序性。甚至在1000 mA g〜(-1)时仍保持80%的容量。样品(A)中的热解炭的容量估计为〜300 mA h g〜(-1),低于样品(B)。但是,样品(A)在第一循环时(即85%)比样品(B)显示出更高的库仑效率,这是由于样品(A)中的高结晶度,层状微结构和热碳的低表面积所致。

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