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Swift tuning from spherical molybdenum microspheres to hierarchical molybdenum disulfide nanostructures by switching from solvothermal to hydrothermal synthesis route

机译:从溶剂热合成路线转换为水热合成路线从球形钼微球快速调整为分级二硫化钼纳米结构

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摘要

Herein, we report the synthesis of metallic molybdenum microspheres and hierarchical MoS2 nanostructures by facile template-free solvothermal and hydrothermal approach, respectively. The morphological transition of the Mo microspheres to hierarchical MoS2 nanoflower architectures is observed to be accomplished with change in solvent from ethylenediamine to water. The resultant marigold flower-like MoS2 nanostructures are few layers thick with poor crystallinity while spherical ball-like molybdenum microspheres exhibit better crystalline nature. This is the first report pertaining to the synthesis of Mo microspheres and MoS2 nanoflowers without using any surfactant, template or substrate in hydro/solvothermal regime. It is opined that such nanoarchitectures of MoS2 are useful candidates for energy related applications such as hydrogen evolution reaction, Li ion battery and pseudocapacitors. Inquisitively, metallic Mo can potentially act as catalyst as well as fairly economical Surface Enhanced Raman Spectroscopy (SERS) substrate in biosensor applications.
机译:本文中,我们报道了通过简便的无模板溶剂热法和水热法分别合成金属钼微球和分层MoS2纳米结构。观察到Mo微球向MoS2纳米级分子结构的形态转变是通过将溶剂从乙二胺变为水来实现的。所得的万寿菊花状MoS2纳米结构很少层厚,且结晶度较差,而球形钼微球则具有较好的结晶性。这是有关在水/溶剂热条件下不使用任何表面活性剂,模板或底物的合成Mo微球和MoS2纳米花的第一份报告。据认为,MoS 2的这种纳米结构是与能量有关的应用的有用候选物,例如氢析出反应,锂离子电池和伪电容器。令人怀疑的是,在生物传感器应用中,金属钼可能会充当催化剂以及相当经济的表面增强拉曼光谱(SERS)衬底。

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