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2000
Volume 21, Issue 12
  • ISSN: 1570-1786
  • E-ISSN:

Abstract

Our current work's primary goal is to create novel heterogeneous gallium sulfide (GaS) nanocatalysts and investigate their catalytic activity in the synthesis of 3,3-(arylmethylene)-bis-(4- hydroxycoumarin) derivatives without use of solvent. FT-IR, XRD, SEM, and EDX analysis characterized the synthesized gallium sulfide (GaS) nanomaterial catalysts. This method's main benefits are its short reaction time, solvent-free conditions, extremely mild reaction conditions, good product yield, and, most importantly, its ability to recover catalysts after at least four runs.

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/content/journals/loc/10.2174/0115701786303227240422140153
2024-12-01
2024-10-10
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