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Efficient Lithium Growth Control from Ordered Nitrogen‐Chelated Lithium‐Ion for High Performance Lithium Metal Batteries

机译:高性能锂金属电池有序氮气螯合锂离子的高效锂生长控制

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摘要

Lithium (Li) metal has attracted significant attention as next‐generation anode material owing to its high theoretical specific capacity and low potential. For enabling the practical application of Li‐metal as an anode according to energy demands, suppressing dendrite growth by controlling the Li‐ion (Li+) is crucial. In this study, metal–organic frameworks comprising bipyridinic nitrogen linker (M‐bpyN) are proposed as 3‐dimensional (3D) Li guiding matrix. The proposed approach creates ordered electronegative functional sites that enable the preoccupied Li+ in the ordered bipyridine sites to produce isotropic Li growth. The Li guiding matrix containing 3D ordered bipyridinic N sites introduces preoccupied Li+ sites that attract the Li growth direction, thereby suppressing the dendrite growth during the electrodeposition of Li. After applying the M‐bpyN layers, stable lifespan of up to 900 cycles in the Li|M‐bpyN|Cu cell and over 1500 h of operation in the Li|M‐bpyN|Li symmetric cell is achieved. Moreover, the Li|M‐bpyN|LiFePO4 configuration shows a long cycle retention of 350 cycles at 0.5 C. These results indicate that an M‐bpyN Li guiding matrix, which enables a uniform Li+ flux by 3D ordered Li+‐chelating sites, serve as a suitable host for Li+ and enhance the performance of Li‐metal electrodes.
机译:由于其高理论特异性容量和低电位,锂(Li)金属作为下一代阳极材料引起了显着的关注。为了使Li-Met金属的实际应用根据能量需求,通过控制锂离子(Li +)至关重要,抑制树突生长。在该研究中,提出了包含双滤网氮接头(M-BPYN)的金属有机骨架作为三维(3D)Li引导基质。所提出的方法会产生有序的电信函数位点,使得在有序的Biphyridine位点中的预匹配Li +能够产生各向同性锂生长。含有3D有序的双式N位点的Li引导基质引入了吸引Li生长方向的预联接Li +位点,从而抑制了Li电沉积期间的枝晶生长。在施加M-BPYN层后,达到Li | M-BPYN | Cu电池中可达900次循环的稳定寿命,并且在Li | Bpyn | Li对称电池中获得超过1500小时。此外,Li | M-BPYN | LiFePO4配置显示了0.5℃的长循环保持350次循环。这些结果表明,通过3D订购的Li +浅位点,使得均匀Li +通量能够通过3D +焊剂提供350次循环。作为Li +的合适宿主,增强了Li金电极的性能。

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