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General and facile synthesis of metal sulfide nanostructures: In situ microwave synthesis and application as binder-free cathode for Li-ion batteries

机译:金属硫化物纳米结构的一般和便捷合成:原位微波合成及其作为锂离子电池无粘结剂阴极的应用

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摘要

Several transition metal sulfides (CuS, NiS/Ni3S2, FeS2, Co9S8) with various morphologies are in situ synthesized on the corresponding metal foils in the presence of sulfur by a facile single-mode microwave irradiation approach. The irradiation temperature is found to be a key parameter to tune product morphologies for various metal sulfides (CuS nanoparticle at 25 degrees C; CuS nanobud at 80 degrees C, CuS nanosheet at 140 degrees C; NiS/Ni3S2 nanoparticle at 120 degrees C, NiS/Ni3S2 interlinked nanosheet at 150 and 180 degrees C, FeS2 nanoparticle at 120 degrees C, FeS2 interlinked nanosheet at 150 degrees C, and FeS2 nanosheet at 180 degrees C). In general, the particle product is obtained at a low irradiation temperature, while nanosheet and interlinked porous nanosheet are obtained at higher temperatures. As a proof of concept, Cu foil supported CuS nanosheets and nanobuds are also directly used as cathode materials for lithium ion battery without addition of conductive agent and binder material. The CuS nanosheet exhibits an initial reversible capacity of 588 mAh g(-1) at 56 mA g(-1) with a small capacity fading rate of 0.17% per cycle during 100 cycles and a good high-rate capability (463 mAh g(-1) at 2.8 A g(-1)). (C) 2016 Published by Elsevier B.V.
机译:通过简便的单模微波辐照方法,在硫存在下,在相应的金属箔上原位合成了几种具有各种形态的过渡金属硫化物(CuS,NiS / Ni3S2,FeS2,Co9S8)。发现辐照温度是调节各种金属硫化物(25摄氏度的CuS纳米粒子; 80摄氏度的CuS纳米芽; 140摄氏度的CuS纳米片; 120摄氏度的NiS / Ni3S2纳米粒子; NiS / Ni3S2交联的纳米片在150和180摄氏度,FeS2纳米粒子在120摄氏度,FeS2的交联纳米片在150摄氏度,FeS2纳米片在180摄氏度)。通常,在低辐照温度下获得颗粒产物,而在较高温度下获得纳米片和交联的多孔纳米片。作为概念的证明,无需添加导电剂和粘合剂材料,Cu箔支撑的CuS纳米片和纳米芽也可直接用作锂离子电池的正极材料。 CuS纳米片在56 mA g(-1)时具有588 mAh g(-1)的初始可逆容量,在100个循环中每个循环的容量衰减率仅为0.17%,并且具有良好的高倍率容量(463 mAh g(-1) -1)在2.8 A g(-1)时)。 (C)2016由Elsevier B.V.发布

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