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首页> 外文期刊>ACS applied materials & interfaces >Transition-Metal-Triggered High-Efficiency Lithium Ion Storage via Coordination Interactions with Redox-Active Croconate in One-Dimensional Metal-Organic Anode Materials
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Transition-Metal-Triggered High-Efficiency Lithium Ion Storage via Coordination Interactions with Redox-Active Croconate in One-Dimensional Metal-Organic Anode Materials

机译:过渡金属触发的高效锂离子储存通过与一维金属 - 有机阳极材料中的氧化还原活性鳄鱼的配位相互作用

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Coordination polymers (CPs) have powerful competence as anode materials for lithium-ion batteries (LIBs) owing to their structural diversity, tunable functionality, and facile and mild synthetic conditions. Here, we show that two isostructural one-dimensional croconate-based CPs, namely, [M(C5O5)(H2O)(3)](n) (M = Mn for 1 and Co for 2; C5O52- = croconate dianion), can work as high-performance electrode materials for rechargeable LIBs. By means of the coordination between the redox-active transition metal ion and the ligand, the anode materials were stable in the electrolyte and showed high capacities, impressive rate capabilities, and excellent cycling performance during the discharging/charging processes. The chain-based supramolecular structures of the CPs also make them stand out from a crowd of porous three-dimensional molecular materials due to their free channels between the chains for lithium ion diffusion. When tested in a voltage window of 0.01-2.4 V at 100 mA g(-1), CPs 1 and 2 demonstrated high discharge specific capacities of 729 and 741 mA h g(-1), respectively. The synergistical redox reactions on both metal centers and the organic moieties play a crucial role in the high electrochemical performance of CPs 1 and 2. After undergoing elevated discharging/charging rates to 2 A g(-1), the electrodes could finally recover their capabilities as those in the initial stage when the current rate was back to 100 mA g(-1), indicating excellent rate performance and outstanding cycling stabilities of the materials.
机译:由于其结构多样性,可调谐功能和轻度和轻度合成条件,配位聚合物(CPS)具有强大的态度为锂离子电池(LIBS)的阳极材料。在这里,我们表明,两个异节结构一维冰川的CPS,即[M(C5O5)(H 2 O)(3)](N)(m = Mn为1和Co 2; C5O52- = Croconate Dianion),可以作为可充电Libs的高性能电极材料工作。通过氧化还原活性过渡金属离子和配体之间的配位,阳极材料在电解质中稳定,并且在放电/充电过程中显示出高容量,令人印象深刻的速率能力和优异的循环性能。 CPS的基于链的超分子结构也使它们从多孔三维分子材料中脱颖而出,由于它们之间的锂离子扩散链之间的自由通道。当在100mA G(-1)的电压窗中测试时,CPS 1和2分别显示出729和741mA Hg(-1)的高放电比容量。金属中心和有机部分对金属中心和有机部分的协同氧化还原反应在高电化学性能的高电化学性能下发挥着至关重要的作用,在升高的放电/充电速率升高到2Ag(-1)后,电极最终恢复其能力作为当前速率恢复到100 mA g(-1)时的初始阶段的那些,表明材料的优异性能和出色的循环稳定性。

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