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Ultrafine Nd2O3 nanoparticles doped carbon aerogel to immobilize sulfur for high performance lithium–sulfur batteries

机译:Ultelafine ND 2 O 3 纳米粒子掺杂碳气凝块以固定高性能锂 - 硫磺硫 电池

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Abstract The carbon aerogel (CA) uniformly doped neodymium oxide (Nd2O3) nanoparticle was synthesized by an effective in-situ method via acid catalyzing and used as the cathode matrix for lithium-sulfur batteries. The doped materials with interconnected pore structure of CA and evenly dispersed Nd2O3 offer crucial confinement role to anchor sulfur and suppress the loss of polysulfide ions for interrelate function of S/polysulfides by Nd2O3. The composited sulfur electrodes present high electrochemical performances and initial discharge capacities, especially, the Nd2-CA/S sample gains initial discharge capacity of 1327mAhg?1 at 0.2 C and remains at 1082mAhg?1 after 100cycles. Meanwhile, it still remains capacity of about 907mAhg?1 at 0.5 C after 300cycles. The enhanced electrochemical performances can be ascribed to the crosslink mesoporous CA materials and well distributed neodymium oxide. Furthermore, the metal additive also takes promoting effect on redox reactions of the Li/S batteries presenting higher discharge voltages. ]]>
机译:<![cdata [ 抽象 碳气凝胶(CA)均匀掺杂的钕氧化物(ND 2 O 3 )纳米颗粒通过酸催化通过酸性原位方法合成,用作锂 - 硫电池的阴极基质。掺杂材料具有Ca和均匀分散的孔结构和均匀分散的Nd 2 O 3 提供至关重要锚定硫的禁闭作用,抑制了S /聚硫化物的相互关联函数的多硫化物离子的丧失通过ND 2 O 3 。复合硫电极具有高电化学性能和初始放电能力,特别是ND2-CA / S样品增益初始放电容量为1327 MAH g 1 在0.2 c时>保持在1082 mah g 1 在100 周期。同时,它仍然仍然容量约为907 mah g 1 在0.5℃下300℃,300℃:HSP SP =“0.25”/>循环。增强的电化学性能可以归因于交联中孔Ca材料和良好的分布氧化物。此外,金属添加剂还对呈现较高放电电压的Li / S电池的氧化还原反应产生促进作用。 ]]>

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