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Exploring the Chemical Structures and Phototochemical Properties of Graphene Oxide Derivatives by Laser Desorption/Ionization Time-of-Flight Mass Spectrometry to Develop an Efficient Platform for Mass Spectrometric Analysis. | LitMetric

AI Article Synopsis

  • The study uses Laser desorption/ionization time-of-flight mass spectrometry (LDI-TOF-MS) to analyze the chemical structure and photochemical properties of two types of graphene oxide (GO) derivatives: synthesized by modified Brodie's method (BGO) and Hummers' method (HGO).
  • Results show that BGO has superior photochemical stability and energy absorption compared to HGO, making it more effective during analysis of small molecules and synthetic polymers.
  • The findings highlight LDI-TOF-MS as a valuable tool for characterizing various carbon materials, showcasing its analytical potential in examining the differences in photochemical properties between GO derivatives.

Article Abstract

Laser desorption/ionization time-of-flight mass spectrometry (LDI-TOF-MS) analysis is harnessed to investigate the chemical structure and photochemical properties of two distinct graphene oxide (GO) derivatives simultaneously. The GO derivatives are synthesized with modified Brodie's method (BGO) and Hummers' method (HGO) and characterized by LDI-TOF-MS as well as conventional tools. A series of LDI-TOF-MS analyses reveal that BGO provides higher laser energy absorption, photochemical stability, and photothermal conversion property than HGO based on their fragmentation patterns and laser desorption/ionization behavior of a thermometer molecule. Based on these characteristics, BGO exhibits higher efficiency in the LDI-TOF-MS analysis of various small molecules and synthetic polymers than HGO. These different photochemical properties of BGO are derived from its large sp carbon domains compared to HGO. Based on our findings, the analytical potential of LDI-TOF-MS for GO derivatives is clearly demonstrated, which can be an efficient and unique characterization tool to explore both chemical structures and photochemical properties of various carbon materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713797PMC
http://dx.doi.org/10.1021/acsomega.2c05464DOI Listing

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