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Use of Luminescence Modulation in a New Series of Mixed Lanthanide Metal-Organic Frameworks for Selective Firearm Ammunition Marking. | LitMetric

Use of Luminescence Modulation in a New Series of Mixed Lanthanide Metal-Organic Frameworks for Selective Firearm Ammunition Marking.

ACS Omega

Grupo de Química de Coordenação e Espectroscopia de Lantanídeos (GQCEL), Instituto de Química, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ 20550-013, Brazil.

Published: December 2024

AI Article Synopsis

  • Metal-organic frameworks (MOFs), particularly mixed lanthanide MOFs (m-LnMOFs), are complex compounds that combine different lanthanide ions for tunable luminescence across the visible spectrum.
  • Researchers have developed a new series of m-LnMOFs using 1,2,4,5-benzenetetracarboxylic acid, with detailed characterization and photophysical studies conducted.
  • These m-LnMOFs have high thermal stability and multicolored emissions, making them useful as selective ammunition markers for forensic identification and improving ammunition trade regulation.

Article Abstract

Metal-organic frameworks (MOFs) are coordination polymers that can generally be described by secondary building units (SBUs). These include lanthanide MOFs, specifically mixed lanthanide MOFs (m-LnMOFs), encompassing coordination polymers formed by two or more different Ln ions. These compounds have been the subject of study by inorganic chemists worldwide, mainly due to the possibility of obtaining long-awaited tunable luminescence, i.e., compounds that emit luminescence in various visible spectrum regions. A wide range of emission color scan be obtained by inserting different Eu, Tb, and Gd ion molar fractions in m-LnMOFs, which can also be adjusted by choosing the Ln ion or its amount in each network. This study presents a new series of m-LnMOFs supported by 1,2,4,5-benzenetetracarboxylic acid (Hbtec). These compounds were completely characterized in their solid state through different analytical and spectroscopic techniques, and an in-depth photophysical study was conducted. Due to their high thermal stability and multicolored emissions, these complexes were applied, for the first time, as selective ammunition markers, allowing for the unequivocal identification of the type of weapon used in forensic scenarios and the promotion of stricter ammunition trade control.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11683623PMC
http://dx.doi.org/10.1021/acsomega.4c08401DOI Listing

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