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The effect of boron doping on lithium intercalation performance of boron-doped carbon materials

机译:硼掺杂对掺硼碳材料锂嵌入性能的影响

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Boron-doped carbons were prepared by pyrolysis of phenolic resin and of pitch with boric acid. The charge-discharge performance of those carbons as an anode electrode material of lithium-ion batteries is here reported. Results showed that the reversible capacity of carbon from pyrolysis of boron-doped phenolic resin was 176.6 mA h g(-1) and its charge-discharge efficiency during the first cycle did not change apparently, while that of carbon from pitch was 258.5 mA h g(-1), and its charge-discharge efficiency during the first cycle was 92.2%. XRD analysis for the present boron-doped materials showed that the distance between carbon layers was lowered by a proper amount of doped boron. XPS analysis with Ar bombardment showed that boron mainly stays on the surface of carbon from pitch, and the increase of surface content of oxygen and nitrogen was also observed. The influence of boron doping on the graphitization of pitch coke and the behavior of lithium intercalation was regarded as surface effect, thus elucidating the increases of graphitization degree and lithium intercalation capacity, and the decrease of irreversible capacity by boron doping. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 15]
机译:通过酚醛树脂的热解和硼酸沥青的制备硼掺杂碳。这里报道了那些碳作为锂离子电池的负极材料的充放电性能。结果表明,掺硼酚醛树脂热解碳的可逆容量为176.6 mA hg(-1),第一周期的充放电效率没有明显变化,沥青中碳的可逆容量为258.5 mA hg(-1)。 -1),并且其在第一循环中的充放电效率为92.2%。对本发明的硼掺杂材料的XRD分析表明,碳层之间的距离通过适当量的掺杂硼而减小。用Ar轰击进行XPS分析表明,硼从沥青中主要停留在碳的表面上,并且还观察到氧和氮的表面含量增加。硼掺杂对沥青焦炭石墨化和锂嵌入行为的影响被认为是表面效应,从而阐明了石墨化程度和锂嵌入容量的增加,以及硼掺杂引起不可逆容量的降低。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:15]

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