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首页> 外文期刊>Nano-Micro Letters >Electrolyte/Structure-Dependent Cocktail Mediation Enabling High-Rate/Low-Plateau Metal Sulfide Anodes for Sodium Storage
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Electrolyte/Structure-Dependent Cocktail Mediation Enabling High-Rate/Low-Plateau Metal Sulfide Anodes for Sodium Storage

机译:电解质/结构依赖性鸡尾酒调节使高速/低高平台金属硫化物阳极阳极用于钠储存

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As promising anodes for sodium-ion batteries, metal sulfides ubiquitously suffer from low-rate and high-plateau issues, greatly hindering their application in full-cells. Herein, exemplifying carbon nanotubes (CNTs)-stringed metal sulfides superstructure (CSC) assembled by nano-dispersed SnS2 and CoS2 phases, cocktail mediation effect similar to that of high-entropy materials is initially studied in ether-based electrolyte to solve the challenges. The high nano-dispersity of metal sulfides in CSC anode underlies the cocktail-like mediation effect, enabling the circumvention of intrinsic drawbacks of different metal sulfides. By utilizing ether-based electrolyte, the reversibility of metal sulfides is greatly improved, sustaining a long-life effectivity of cocktail-like mediation. As such, CSC effectively overcomes low-rate flaw of SnS2 and high-plateau demerit of CoS2, simultaneously realizes a high rate and a low plateau. In half-cells, CSC delivers an ultrahigh-rate capability of 327.6 mAh g?1anode at 20 A g?1, far outperforming those of monometallic sulfides (SnS2, CoS2) and their mixtures. Compared with CoS2 phase and SnS2/CoS2 mixture, CSC shows remarkably lowered average charge voltage up to ca. 0.62 V. As-assembled CSC//Na1.5VPO4.8F0.7 full-cell shows a good rate capability (0.05?~?1.0 A g?1, 120.3 mAh g?1electrode at 0.05 A g?1) and a high average discharge voltage up to 2.57 V, comparable to full-cells with alloy-type anodes. Kinetics analysis verifies that the cocktail-like mediation effect largely boosts the charge transfer and ionic diffusion in CSC, compared with single phase and mixed phases. Further mechanism study reveals that alternative and complementary electrochemical processes between nano-dispersed SnS2 and CoS2 phases are responsible for the lowered charge voltage of CSC. This electrolyte/structure-dependent cocktail-like mediation effect effectively enhances the practicability of metal sulfide anodes, which will boost the development of high-rate/-voltage sodium-ion full batteries.
机译:作为钠离子电池的有前途的阳极,普遍存气的金属硫化物患有低速率和高平坦问题,极大地阻碍了它们在全细胞中的应用。这里,通过纳米分散的SNS2和COS2阶段组装的碳纳米管(CNT)硫化金属硫化物(CSC),最初在基于醚的电解质中研究了类似于高熵材料的鸡尾酒调解效果,以解决挑战。 CSC阳极中金属硫化物的高纳米分散性下面是鸡尾酒样中介效应,使不同金属硫化物的内在缺点的延伸。通过利用基于乙醚的电解质,可以大大提高金属硫化物的可逆性,维持了鸡尾酒状调解的长寿命效应。因此,CSC有效地克服了COS2的SNS2和高平台偏差的低速率漏洞,同时实现了高速率和低平台。在半电池中,CSC在20A G = 1的情况下提供327.6mAhg的超高速率能力.1Anode,远远优于单金属硫化物(SNS2,COS2)及其混合物。与COS2相和SNS2 / COS2混合物相比,CSC显着降低到CA的平均电荷电压显着降低。 0.62 V.组装CSC // Na1.5VPO4.8F0.7全细胞显示出良好的速率能力(0.05?〜1.1.0,12.3mahg≤1,120.3mah g?1电极为0.05 ag≤1)和高平均放电电压高达2.57 V,与具有合金型阳极的全细胞相当。动力学分析验证了与单相和混合相比相比,鸡尾酒的调解效果主要提高CSC中的电荷转移和离子扩散。进一步的机制研究表明,纳米分散的SNS2和COS2相之间的替代和互补电化学过程负责CSC的降低的电荷电压。这种电解质/结构依赖性的鸡尾酒的调解效果有效增强了金属硫化物阳极阳极的实用性,这将提高高速/屏幕钠离子全电池的开发。

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