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首页> 外文期刊>Angewandte Chemie >Double-Helix Structure in Carrageenan-Metal Hydrogels: A General Approach to Porous Metal Sulfides/Carbon Aerogels with Excellent Sodium-Ion Storage
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Double-Helix Structure in Carrageenan-Metal Hydrogels: A General Approach to Porous Metal Sulfides/Carbon Aerogels with Excellent Sodium-Ion Storage

机译:卡拉胶金属水凝胶中的双螺旋结构:具有优异的钠离子存储性能的多孔金属硫化物/碳气凝胶的一般方法

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摘要

The metal sulfide-carbon nanocomposite is a new class of anode material for sodium ion batteries, but its development is restricted by its relative poor rate ability and cyclic stability. Herein, we report the use of double-helix structure of carrageenan-metal hydrogels for the synthesis of 3D metal sulfide (MxSy) nanostructure/carbon aerogels (CAs) for high-performance sodium-ion storage. The method is unique, and can be used to make multiple MxSy/CAs (such as FeS/CA, Co9S8/CA, Ni3S4/CA, CuS/CA, ZnS/CA, and CdS/CA) with ultra-small nanoparticles and hierarchical porous structure by pyrolyzing the carrageenan-metal hydrogels. The as-prepared FeS/CA exhibits a high reversible capacity and excellent cycling stability (280mAh(-1) at 0.5Ag(-1) over 200cycles) and rate performance (222mAh(-1) at 5Ag(-1)) when used as the anode material for sodium-ion batteries. The work shows the value of biomass-derived metal sulfide-carbon heterostuctures in sodium-ion storage.
机译:金属硫化物-碳纳米复合材料是用于钠离子电池的新型负极材料,但其发展受到相对较差的倍率能力和循环稳定性的限制。在这里,我们报道了角叉菜胶金属水凝胶的双螺旋结构在3D金属硫化物(MxSy)纳米结构/碳气凝胶(CAs)的合成中的应用,以用于高性能钠离子存储。该方法是独特的,可用于制造具有超小纳米颗粒和分层结构的多个MxSy / CA(例如FeS / CA,Co9S8 / CA,Ni3S4 / CA,CuS / CA,ZnS / CA和CdS / CA)。通过裂解角叉菜胶金属水凝胶形成多孔结构。所制备的FeS / CA在使用时表现出高的可逆容量和出色的循环稳定性(在200个循环中在0.5Ag(-1)时为280mAh(-1))和速率性能(在5Ag(-1)时为222mAh(-1))作为钠离子电池的负极材料。这项工作表明了生物质衍生的金属硫化物-碳异质结构在钠离子存储中的价值。

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