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Three-dimensional graphene-supported nickel disulfide nanoparticles promise stable and fast potassium storage

机译:三维graphene-supported镍二硫纳米粒子稳定和快速的承诺钾存储

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Nickel sulfide (NiS2) is generally regarded as an appropriate anode for manufacturing new-type potassium-ion batteries (PIBs), while the development and application of NiS2 are hampered by poor intrinsic electrical conductivity and huge volumetric change during potassiation/de-potassiation. Herein, we construct self-adaptive NiS2 nanoparticles confined to a three-dimensional graphene oxide (NiS2/3DGO) electrode via in situ sulfurization and self-assembly processes. The as-obtained NiS2/3DGO exhibits high reversible capacity (391 mA h g(-1)) and outstanding rate behavior (stable cycling at 1000 mA g(-1)) for PIBs. Furthermore, in situ X-ray diffractometry and ex situ Raman test results elucidate partially reversible transformation from the cubic NiS2 phase to the KxNiS2 intermediate, followed by generating a Ni-0 and K2S4 product. This phenomenon is caused by the conversion reaction mechanism of NiS2 nanocrystals along with an amorphous phase transition during the initial cycle. Such understandings may shed new light on the application of metal sulfides and give directions to design novel electrodes with desirable structural stability and lifespan.
机译:硫化镍(NiS2)通常被认为是一个合适的制造新型阳极钾离子电池(本文),发展和应用NiS2阻碍内在的导电性差、巨大的体积变化potassiation / de-potassiation。构造自适应NiS2纳米颗粒局限于一个三维的石墨烯氧化物通过原位硫化(NiS2/3DGO)电极和自组装过程。NiS2/3DGO展品高可逆容量(391马h g(1))和杰出的行为(稳定马骑自行车在1000 g(1))本文。原位x射线衍射测量和非原位拉曼测试结果说明部分可逆的转换从立方NiS2阶段KxNiS2中间,紧随其后的是生成一个Ni-0和K2S4产品。NiS2的转化反应机理纳米晶体和无定形的阶段在最初的周期的过渡。理解可能做了新的阐述应用金属硫化物和指点设计新颖的电极和可取的结构稳定性和寿命。

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