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Carbon dot-assisted hydrothermal synthesis of flower-like MoS2 nanospheres constructed by few-layered multiphase MoS2 nanosheets for supercapacitors

机译:由少量层次的多相MOS2纳米型为超级电容器构建的花样MOS2纳米球的碳点辅助水热合成

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Molybdenum disulfide (MoS _(2) ) has emerged as a promising electrode material for supercapacitors. Elaboration of MoS _(2) with desired structures, morphologies and compositions as well as fabrication of MoS _(2) -based hybrids are current research directions. Herein, we demonstrate engineering MoS _(2) with a multiphase structure including 2H and 1T phases as well as edge-rich nanospherical morphology via a hydrothermal route with the assistance of carbon dots (CDs) for the first time. The resultant MoS _(2) 3D nanospheres are formed through the self-assembly of MoS _(2) 2D nanosheets consisting of a few atomic layers stacked along the (002) direction with an enlarged interlayer spacing. The introduced CDs not only involve the growth of the few-layered multiphase MoS _(2) nanosheets but also mediate the formation of MoS _(2) nanospheres, whilst the residual CDs may intersperse onto the surfaces of MoS _(2) nanospheres. The novel MoS _(2) nanospheres-based electrode exhibits favorable electrochemical responses in an aqueous electrolyte, such as high specific capacitance (145 F g ~(?1) ), good rate capability and excellent cyclic stability (90% capacity retention after 2000 cycles) owing to enhanced ionic intercalation and improved electrical conductivity associated with the specific structures and morphologies. This work would pave a new pathway through the structural, morphological and compositional design for improving the electrochemical properties of transition metal dichalcogenides (TMDs) applicable as alternative energy storage materials.
机译:二硫化钼(MOS _(2))作为超级电容器的有希望的电极材料。具有所需的结构,形态和组合物的MOS _(2)以及MOS _(2)的混合的制造是当前的研究方向。在此,我们用多相结构向工程MOS _(2)展示,包括2H和1T相以及通过在碳点(CDS)的辅助下,通过水热路线富裕的纳米球形形貌。通过由沿(002)方向堆叠的少数原子层组成的MOS _(2)2D纳米片的自组装形成所得到的MOS _(2)3D纳米球。介绍的CD不仅涉及少数层的多相MOS _(2)纳米片的生长,而且还介导MOS _(2)纳米球的形成,而残留的CD可能散布在MOS _(2)纳米球的表面上。新型MOS _(2)基于基于纳米球的电极在水性电解质中表现出有利的电化学响应,例如高比电容(145 f g〜(α1)),良好的速率能力和优异的循环稳定性(2000年后90%的容量保留由于增强的离子嵌入和改善与特定结构和形态相关的电导率提高的电导率,循环。这项工作将通过结构,形态和组成设计铺平新的途径,用于改善可用作替代能量储存材料的过渡金属二甲硅藻(TMDS)的电化学性能。

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