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首页> 外文期刊>Nanoscale >Core-shell (nano-SnX/nano-Li4Ti5O12)@C spheres (X = Se,Te) with high volumetric capacity and excellent cycle stability for lithium-ion batteries
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Core-shell (nano-SnX/nano-Li4Ti5O12)@C spheres (X = Se,Te) with high volumetric capacity and excellent cycle stability for lithium-ion batteries

机译:核壳(nano-SnX / nano-Li4Ti5O12 @C球体(X)= Se, Te)和高容量的能力极好的锂循环稳定电池

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摘要

Among binary tin chalcogenides as anode materials for lithium-ion batteries, SnSe and SnTe have attracted attention due to their high theoretical volumetric capacity. However, they suffer from sluggish dynamics and serious agglomeration during lithiation/delithiation processes, which leads to inferior cycling performance. This study reports core-shell structure (nano-SnSe/nano-Li4Ti5O12)@C and (nano-SnTe/nano-Li4Ti5O12)@C [denoted as (n-SnX/n-LTO)@C] with extraordinary lithium storage stability. Benefiting from the well-designed structural merits, the core-shell structure of (n-SnX/n-LTO)@C is well preserved over 500 cycles, suggesting its high structural integrity. The (n-SnSe/n-LTO)@C and (n-SnTe/n-LTO)@C anodes deliver high initial volumetric capacities of 3470.1 and 3885.4 mA h cm(-3) at 0.2 A g(-1) and maintain capacities of 2066.0 and 1975.3 mA h cm(-3) even after 500 cycles, respectively. This work provides a new avenue for designing novel binary tin chalcogenide lithium-ion battery anodes with high volumetric capacity and superior long-term cycling performance.
机译:在二进制锡硫属化合物作为阳极材料锂离子电池,SnSe和拉丁由于他们的高理论吸引了大家的注意体积容量。缓慢的动力学和严重的聚集lithiation / delithiation过程期间导致性能不如骑自行车。报道核壳结构(nano-SnSe / nano-Li4Ti5O12) @C和(nano-SnTe / nano-Li4Ti5O12) @C[表示(n-SnX / n-LTO)以非凡的锂@C]储存稳定性。精心设计的结构优点,核壳结构(n-SnX / n-LTO) @C保存完好超过500个周期,表明其高结构的完整性。(n-SnTe / n-LTO) @C阳极初始交付高马容积能力的3470.1和3885.4 h0.2厘米(3)在g(1)和维护的能力2066.0和1975.3 mA h厘米(3)甚至500年之后周期,分别。设计新颖的二进制锡的大道与高硫族化物锂离子电池阳极体积容量和优越的长期循环性能。

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