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首页> 外文期刊>ACS applied materials & interfaces >Solid-Solution Sulfides Derived from Tunable Layered Double Hydroxide Precursors/Graphene Aerogel for Pseudocapacitors and Sodium-Ion Batteries
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Solid-Solution Sulfides Derived from Tunable Layered Double Hydroxide Precursors/Graphene Aerogel for Pseudocapacitors and Sodium-Ion Batteries

机译:用于衍生自可调谐层状双氢氧化物前体/石墨烯气体的固溶体硫化物,用于假壳体和钠离子电池

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Transition-metal sulfides (TMSs) are suggested as promising electrode materials for electrochemical pseudocapacitors and lithium- and sodium-ion batteries; however, they typically involve mixed composites or conventionally stoichiometric TMSs (such as NiCo2S4 and Ni2CoS4). Herein we demonstrate a preparation of solid-solution sulfide (Ni0.7Co0.3)S-2 supported on three-dimensional graphene aerogel (3DGA) via a sulfuration of NiCo-layered double hydroxide (NiCo-LDH) precursor/3DGA. The electrochemical tests show that the (Ni0.7Co0.3)S-2/3DGA electrode exhibits a capacitance of 2165 F g(-1) at 1 A g(-1), 2055 F g(-1) at 2 A g(-1), and 1478 F g(-1) at 10 A g(-1); preserves 78.5% capacitance retention upon 1000 cycles for pseudocapacitors; and in particular, possesses a relatively high charge capacity of 388.7 mA h g(-1) after 50 cycles at 100 mA g(-1) as anode nanomaterials for sodium-ion batteries. Furthermore, the electrochemical performances are readily tuned by varying the cationic type of the tunable LDH precursors to prepare different solid-solution sulfides, such as (Ni0.7Fe0.3)S-2/3DGA and (Co0.7Fe0.3)S-2/3DGA. Our results show that engineering LDH precursors can offer an alternative for preparing diverse transition-metal sulfides for energy storage.
机译:过渡金属硫化物(TMS)被建议为用于电化学假壳体和锂和钠离子电池的有前景的电极材料;然而,它们通常涉及混合复合材料或常规化学计量TMS(例如NicO 2 S 4和Ni2COS4)。在此,通过Nico层双氢氧化物(NiCO-LDH)前体/ 3DGA,证明了在三维石墨烯气体(3DGA)上负载的固溶体硫化物(NiO 2 7 COO 0.3)S-2的制备。电化学测试表明,(Ni0.7CO0.3)S-2 / 3DGA电极在2A G处在1A(-1),2055fg(-1)下表现出2165fg(-1)的电容(-1)和1478 f g(-1),10 a g(-1);保留78.5%的电容保留1000个循环用于假偶联器;特别地,在100 mA g(-1)的50次循环之后具有388.7mA H(-1)的相对高的充电容量作为钠离子电池的阳极纳米材料。此外,通过改变可调谐的LDH前体的阳离子类型以制备不同的固溶体硫化物,例如(Ni0.7FeO 3)S-2 / 3DGA和(COO.7FE0.3)S-来易于调节电化学性能。 2 / 3dga。我们的研究结果表明,工程LDH前体可以为制备用于储能的多样化过渡金属硫化物提供替代方案。

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