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首页> 外文期刊>Advanced energy materials >A 3D Trilayered CNT/MoSe_2/C Heterostructure with an Expanded MoSe_2 Interlayer Spacing for an Efficient Sodium Storage
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A 3D Trilayered CNT/MoSe_2/C Heterostructure with an Expanded MoSe_2 Interlayer Spacing for an Efficient Sodium Storage

机译:具有扩展MOSE_2中间间距的3D三叶式CNT / MOSE_2 / C异间隙,用于高效钠储存

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Freestanding composite structures with embedded transition metal dichalcogenides (TMDCs) as the active material are highly attractive in the development of advanced electrodes for energy storage devices. Most 3D electrodes consist of a bilayer design involving a core-shell combination. To further enhance the gravimetric and areal capacities, a 3D trilayer design is proposed that has MoSe2 as the TMDC sandwiched in-between an inner carbon nanotube (CNT) core and an outer carbon layer to form a CNT/MoSe2/C framework. The CNT core creates interconnected pathways for the e(-)/Na+ conduction, while the conductive inert carbon layer not only protects the corrosive environment between the electrolyte and MoSe2 but also is fully tunable for an optimized Na+ storage. This unique heterostructure is synthesized via a solvothermal-carbonization approach. Due to annealing under a confined structural configuration, MoSe2 interlayer spaces are expanded to facilitate a faster Na+ diffusion. It is shown that an approximate to 3 nm thick carbon layer yielded an optimized anode for a sodium-ion battery. The 3D porosity of the heterostructure remains intact after an intense densification process to produce a high areal capacity of 4.0 mAh cm(-2) and a high mass loading of 13.9 mg cm(-2) with a gravimetric capacity of 347 mAh g(-1) at 500 mA g(-1) after 500 cycles.
机译:具有嵌入式过渡金属二甲基甲基物(TMDC)的独立式复合结构,因为活性材料在高级电极的开发中具有高度吸引力的能量存储装置。大多数3D电极包括涉及核心壳组合的双层设计。为了进一步提高重量和面积能力,提出了一种具有MOSE2的3D三层设计,其作为夹在内碳纳米管(CNT)核和外碳层之间夹在内碳纳米管(CNT)核和外碳层中以形成CNT / MOSE2 / C框架。 CNT核心为E( - )/ Na +传导产生互连的途径,而导电惰性碳层不仅可以保护电解质和MOSE2之间的腐蚀性环境,而且对于优化的NA +储存也是完全可调的。通过溶剂热碳化方法合成这种独特的异质结构。由于在狭窄的结构配置下的退火,扩展了MOSE2层间空间以促进更快的Na +扩散。结果表明,对于钠离子电池,近似为3nm厚的碳层得到了优化的阳极。异质结构的3D孔隙率在强烈的致密化过程后保持完整,以产生4.0mahcm(-2)的高面积容量,并具有347mAhg( - - 4)重量容量为347mahg( - )的重量容量为13.9mg cm(-2)( - ) 1)500次循环后500mA g(-1)。

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