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Hierarchically mesoporous CuO/carbon nanofiber coaxial shell-core nanowires for lithium ion batteries

机译:锂离子电池的层状介孔CuO /碳纳米纤维同轴壳核纳米线

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摘要

Hierarchically mesoporous CuO/carbon nanofiber coaxial shell-core nanowires (CuO/CNF) as anodes for lithium ion batteries were prepared by coating the Cu2(NO3)(OH)3 on the surface of conductive and elastic CNF via electrophoretic deposition (EPD), followed by thermal treatment in air. The CuO shell stacked with nanoparticles grows radially toward the CNF core, which forms hierarchically mesoporous three-dimensional (3D) coaxial shell-core structure with abundant inner spaces in nanoparticle-stacked CuO shell. The CuO shells with abundant inner spaces on the surface of CNF and high conductivity of 1D CNF increase mainly electrochemical rate capability. The CNF core with elasticity plays an important role in strongly suppressing radial volume expansion by inelastic CuO shell by offering the buffering effect. The CuO/CNF nanowires deliver an initial capacity of 1150 mAh g−1 at 100 mA g−1 and maintain a high reversible capacity of 772 mAh g−1 without showing obvious decay after 50 cycles.
机译:通过电泳沉积(EPD)将Cu2(NO3)(OH)3涂覆在导电和弹性CNF的表面上,制备了锂离子电池阳极用介孔结构的CuO /碳纳米纤维同轴壳核纳米线(CuO / CNF),然后在空气中进行热处理。堆叠有纳米粒子的CuO壳向CNF核径向生长,在纳米粒子堆叠的CuO壳中形成具有中等内部空间的分层介孔三维(3D)同轴壳核结构。在CNF表面具有丰富内部空间的CuO壳层和一维CNF的高电导率主要提高了电化学速率能力。具有弹性的CNF芯通过提供缓冲作用,在通过无弹性的CuO壳层强烈抑制径向体积膨胀方面起着重要作用。 CuO / CNF纳米线在100 mA g -1 时的初始容量为1150 mAh g -1 ,并保持772 mAh g -1的高可逆容量在50个周期后没有显示出明显的衰减。

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