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首页> 外文期刊>Nano letters >Building Fast Diffusion Channel by Constructing Metal Sulfide/Metal Selenide Heterostructures for High-Performance Sodium Ion Batteries Anode
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Building Fast Diffusion Channel by Constructing Metal Sulfide/Metal Selenide Heterostructures for High-Performance Sodium Ion Batteries Anode

机译:通过构建金属硫化物/金属硒化物异质结构来构建快速扩散通道,用于高性能钠离子电池阳极

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Heterostructure engineering is one of the most promising modification strategies toward improving sluggish kinetics for the anode of sodium ion batteries (SIBs). Herein, we report a systemic investigation on the different types of heterostructure interfaces' effects of discharging products (Na2O, Na2S, Na2Se) on the rate performance. First-principle calculations reveal that the Na2S/Na2Se interface possesses the lowest diffusion energy barrier (0.39 eV) of Na among three kinds of interface structures (Na2O/Na2S, Na2O/Na2Se, and Na2S/Na2Se) due to its smallest recorded interface deformation, similar electronegativity, and lattice constant. The experimental evidence confirms that the metal sulfide/metal selenide (SnS/SnSe2) hierarchical anode exhibits outstanding rate performance, where the normalized capacity at 10 A g(-1) compared to 0.1 A g(-1) is 45.6%. The proposed design strategy in this work is helpful to design high rate performance anodes for advanced battery systems.
机译:异性结构是改善钠离子电池阳极(SIBS)的阳极缓慢动力学的最有希望的改进策略之一。 在此,我们报告了对不同类型的异质结构界面对排出产品(NA2O,NA2S,NA2SE)对速率性能的影响的系统性研究。 由于其最小录制的界面变形 ,类似的电致电阻和晶格常数。 实验证据证实,金属硫化物/金属硒化烯(SNS / SNSE2)等级阳极表现出优异的速率性能,其中10Ag(-1)的归一化容量为0.1Ag(-1)为45.6%。 该工作中提出的设计策略有助于为高级电池系统设计高速速率性能阳极。

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