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首页> 外文期刊>Electrochimica Acta >Effect of heat pre-treatment conditions on the electrochemical properties of mangrove wood-derived hard carbon as an effective anode material for lithium-ion batteries
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Effect of heat pre-treatment conditions on the electrochemical properties of mangrove wood-derived hard carbon as an effective anode material for lithium-ion batteries

机译:热处理条件对红树林木材作为锂离子电池有效负极材料的硬碳电化学性能的影响

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Anodic hard carbon for lithium-ion batteries with high discharge capacity was successfully developed using mangrove green tree as a cheap raw material. To obtain commercial-level first-cycle Coulombic efficiency, the effects of heat pre-treatment in the low temperature range of 450-600 degrees C at various pressures, to produce optimized char precursor before carbonization, were closely investigated, focusing on synthetic yield, structural and physical properties, first-cycle Coulombic efficiency, and discharge capacity of the resulting hard carbon. The hard carbon with heat pre-treatment involving optimum fabrication conditions of 500 degrees C in inner gas at 0.7 MPa for 39 days exhibited higher synthetic yield of 30.0 wt% and better first-cycle Coulombic efficiency of 81% and discharge capacity of 424 mAh/g than that prepared through direct one-step carbonization, due to low H/C and O-diff/C ratios and a pore structure promoting lithium-ion insertion/desertion. (C) 2016 Elsevier Ltd. All rights reserved.
机译:以红树林绿树为廉价原料,成功开发了高放电容量的锂离子电池用阳极硬碳。为了获得商业级的第一循环库仑效率,我们在紧密结合的情况下,密切研究了在450-600摄氏度的低温范围内在各种压力下进行热处理,以在碳化之前生产优化的焦炭前体的效果,结构和物理特性,第一循环库伦效率和所得硬碳的放电容量。在0.7 MPa的内部气体中经过500天的最佳制造条件进行热处理的硬碳在39天内表现出更高的合成产率,更好的第一循环库伦效率为81%和放电容量为424 mAh /由于H / C和O-diff / C比低,且孔结构促进锂离子的插入/脱除,因此比通过直接一步碳化制备的g要高。 (C)2016 Elsevier Ltd.保留所有权利。

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