AI Article Synopsis

  • ZnO/rGO nanocomposites are created using a simple one-pot technique, with varying amounts of graphene oxide (GO) affecting the nanoparticle shape and defect properties.
  • The presence of optimal defects in ZnO/rGO increases its surface area and enhances its ability to separate electron-hole pairs, making it suitable for photodetection and photocatalytic uses.
  • The ZnO/rGO composite showed significantly improved photosensitivity (from 1.51 to 3.94) and better photocatalytic activity for methylene blue degradation compared to pure ZnO, highlighting its potential in various applications.

Article Abstract

Zinc oxide/reduced graphene oxide nanocomposites (ZnO/rGO) are synthesized via a simple one-pot solvothermal technique. The nanoparticle-nanorod turnability was achieved with the increase in GO additive, which was necessary to control the defect formation. The optimal defect in ZnO/rGO not only increased ZnO/rGO surface and carrier concentration, but also provided the alternative carrier pathway assisted with rGO sheet for electron-hole separation and prolonging carrier recombination. These properties are ideal for photodetection and photocatalytic applications. For photosensing properties, ZnO/rGO shows the improvement of photosensitivity compared with pristine ZnO from 1.51 (ZnO) to 3.94 (ZnO/rGO (20%)). Additionally, applying bending strain on ZnO/rGO enhances its photosensitivity even further, as high as 124% at r = 12.5 mm, due to improved surface area and induced negative piezoelectric charge from piezoelectric effect. Moreover, the photocatalytic activity with methylene blue (MB) was studied. It was observed that the rate of MB degradation was higher in presence of ZnO/rGO than pristine ZnO. Therefore, ZnO/rGO became a promising materials for different applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6835891PMC
http://dx.doi.org/10.3390/nano9101441DOI Listing

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