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Ultrafast-charging and long cycle-life anode materials of TiO2-bronze/nitrogen-doped graphene nanocomposites for high-performance lithium-ion batteries

机译:用于高性能锂离子电池的TiO2-铜/氮掺杂石墨烯纳米膜复合材料的超速度充电和长循环寿命材料

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Emerging technologies demand a new generation of lithium-ion batteries that are high in power density, fast-charging, safe to use, and have long cycle lives. This work reports charging rates and specific capacities of TiO _(2) (B)/N-doped graphene (TNG) composites. The TNG composites were prepared by the hydrothermal method in various reaction times (3, 6, 9, 12, and 24 h), while the N-doped graphene was synthesized using the modified Hummer's method followed by a heat-treatment process. The different morphologies of TiO _(2) dispersed on the N-doped graphene sheet were confirmed as anatase-nanoparticles (3, 6 h), TiO _(2) (B)-nanotubes (9 h), and TiO _(2) (B)-nanorods (12, 24 h) by XRD, TEM, and EELS. In electrochemical studies, the best battery performance was obtained with the nanorods TiO _(2) (B)/N-doped graphene (TNG-24h) electrode, with a relatively high specific capacity of 500 mA h g ~(?1) at 1C (539.5 mA g ~(?1) ). In long-term cycling, excellent stability was observed. The capacity retention of 150 mA h g ~(?1) was observed after 7000 cycles, at an ultrahigh current of 50C (27.0 A g ~(?1) ). The synthesized composites have the potential for fast-charging and have high stability, showing potential as an anode material in advanced power batteries for next-generation applications.
机译:新兴技术要求新一代高功率密度,快速充电,使用安全性的新一代锂离子电池,并且具有长循环的生命。这项工作报告了TiO _(2)(B)/ n掺杂石墨烯(TNG)复合材料的充电率和特定容量。通过水热法在各种反应时间(3,6,9,12和24小时)中的水热法制料,同时使用改性悍马的方法合成N掺杂的石墨烯,然后用热处理方法合成。分散在N掺杂的石墨烯片上的TiO _(2)的不同形貌被证实为锐钛矿 - 纳米颗粒(3,6h),TiO _(2)(b) - Nanotubes(9h)和TiO _(2 )(b)XRD,TEM和EELS的Nanorods(12,24小时)。在电化学研究中,用纳米棒TiO _(2)(B)/ n掺杂的石墨烯(TNG-24H)电极获得最佳电池性能,在1C处具有相对较高的特定容量为500mA Hg〜(α1) (539.5 mA g〜(?1))。在长期循环中,观察到优异的稳定性。在7000次循环后观察到150mA H g〜(α1)的容量保持在50℃的超高电流(27.0ag〜(α1))。合成的复合材料具有快速充电的可能性并且具有高稳定性,显示出作为下一代应用的先进动力电池中的阳极材料的潜力。

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