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Zn(Salen) metal complex-derived ZnO-implanted carbon slabs as anode material for lithium-ion and sodium-ion batteries

机译:金属(锌(伦))complex-derived ZnO-implanted碳板作为锂阳极材料和钠电池

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摘要

Zinc oxide-implanted carbon slabs (ZnO@CS) were prepared by conventional pyrolysis of a [Zn(salen)] complex. The formed ZnO@CS was characterized in detail through material characterization, which confirmed the formation of ZnO nanoparticles implanted into the two dimensional carbon slabs. Then, the ZnO@CS was explored as an anode material for lithium-ion and sodium-ion batteries in the form of CR-2032-type coin cells. The lithium-ion half cell (ZnO@CS|LiPF6|Li) resulted in a high discharge capacity of 500 mA h g~(-1) at 0.4C-rate, while the sodium-ion half cell (ZnO@CS|NaClO4|Na) delivered a stabilized discharge capacity of 60 mA h g~(-1) at 0.2C-rate with excellent cycling stability as well as coulombic efficiency in both cases. The superior lithium-ion/sodium-ion storage performances of the ZnO@CS anode are attributed to the simultaneous occurrence of the conversion/re-conversion and the alloying/de-alloying reactions that occurred on the ZnO anode. The carbon slab seemed to act as a conductive matrix as well as cushion to withstand the volume stress induced during the lithiation/ sodiation, contributing to the cycling stability. Subsequently, the CR-2032-full-cell fabricated using the ZnO@CS as the anode and the commercial LiCoO2 as the cathode delivered a stable discharge capacity as high as 400 mA h g~(-1) at 0.1C-rate with excellent rate capability and cycling stability. The CR-2032 type laboratory proto-type full cell was demonstrated to power a commercial (3.0 V) LED bulb for more than 5 h continuously on a single charge.
机译:锌oxide-implanted碳板(ZnO@CS)由传统的热解锌(伦)复杂。通过材料的详细特征表征,证实了形成氧化锌纳米颗粒的植入维碳板。探讨了作为锂阳极材料钠电池的cr - 2032型硬币的细胞。李(ZnO@CS | LiPF6 |)导致高放电容量500毫安h g ~ (1) 0.4 c-rate,钠-半电池(ZnO@CS | NaClO4 | Na)了稳定的放电容量60马h g ~ (1) 0.2 c-rate优秀的自行车在这两方面都稳定以及库仑效率用例。存储ZnO@CS阳极的性能同时出现的转换/ re-conversion和合金/ de-alloying反应发生氧化锌阳极。导电矩阵以及缓冲来承受在lithiation /体积应力诱导sodiation,导致循环稳定。随后,cr - 2032 -满-细胞制造使用ZnO@CS作为阳极和商业LiCoO2阴极提供一个稳定的放电容量高达400 mA h g ~ (1)0.1 c-rate出色的能力和速度循环稳定性。原生细胞是展示力量商业(3.0 V) LED灯泡超过5 h一次充电持续。

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