AI Article Synopsis

  • Flower-like nanostructures of molybdenum disulphide (MoS) were synthesized using a hydrothermal method and doped with nitrogen via urea, which enhanced their electrochemical properties.
  • The structural analysis revealed a hexagonal MoS crystal structure, and lower urea concentrations led to the formation of MoO/MoO/MoS composites.
  • The nitrogen doping significantly improved the specific capacitance of MoS, achieving a maximum of about 129 F/g, which is nearly four times greater than that of the undoped MoS.

Article Abstract

Flower-like nanostructures of molybdenum disulphide (MoS) have been effectively synthesised by the hydrothermal method and further doped with nitrogen using varying concentrations of urea. The formed hierarchical nanostructures are characterised by spectroscopy as well as electrochemical techniques. The structural analysis confirms the formation of a hexagonal MoS crystal structure. The existence of MoO/MoO/MoS composites is also observed after heating MoS with a lower urea concentration. Surface morphological analysis of all the prepared compositions shows the appearance of flower-like nanostructures formed by the stacking of 20-80 nanosheets to create individual flower petals. Nitrogen doping shows enhancement in the specific capacitance of MoS due to an increase in the electronic conductivity. Furthermore, the specific capacitance is enhanced due to the formation of an MoO/MoO/MoS composite. The highest specific capacitance calculated from the charge-discharge curve for nitrogen-doped MoS prepared using 1 : 1 (MoS : urea) weight ratio is observed at around 129 (F g) at 2 (A g) specific current. The nitrogen-doped MoS demonstrates almost four-fold enhancement in specific capacitance than pristine nano-shaped MoS.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091326PMC
http://dx.doi.org/10.1039/c8ra06660dDOI Listing

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