Abstract

In this study, a new green synthesis method for two-dimensional (2D) copper nanosheets is developed using methylsulfonylmethane (DMSO2). The chemical composition and light absorption of 2D copper nanosheets are also studied. A new green method is mainly to utilize DMSO2, which is environmentally friendly enough to be considered a food-grade chemical, unlike the conventional method using toxic chemicals, such as ammonia and hydrazine (N2H4). With a reducing agent, the aggregation of uncertain copper products was produced in the absence of DMSO2, while 2D copper nanosheets were formed in the presence of DMSO2. The optimum concentration of DMSO2 as a surfactant was determined to be 2 M, resulting in large surface areas with regular edges. FTIR spectrum confirmed C–H bonding from DMSO2 used to synthesize 2D copper nanosheets. The light absorption peak was revealed at 800 nm in the UV–vis spectrum. This proposed new green method not only has a simpler process than the conventional methods, such as hydrothermal method and chemical bath deposition, but also substitutes toxic chemicals with DMSO2. 2D copper nanosheets can be used for various applications, including conductive filler or ink in the flexible electronics and laser photonics fields.

Highlights

  • This proposed new green method has a simpler process than the conventional methods, such as hydrothermal method and chemical bath deposition, and substitutes toxic chemicals with DMSO2 . 2D copper nanosheets can be used for various applications, including conductive filler or ink in the flexible electronics and laser photonics fields

  • The morphology and arrangement of 2D copper nanosheets were investigated by transmission electron microscopy (TEM, Tecnai F-20, FEI, Hillsboro, OR, USA) with 200 kV

  • The light absorption spectrum of 2D copper nanosheets was obtained by ultraviolet–visible spectroscopy (UV–Vis, Evolution 260 BIO, Thermo Fisher, Hillsboro, OR, USA)

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Summary

Materials

For the synthesis of 2D copper nanosheets, copper sulfate (CuSO4 ) was utilized as the copper precursor.

Characterization
The Formation of 2D Copper Nanosheets
UV–Vis Study
Conclusions
Full Text
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