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  4. Plasmon Chemistry On Ag Nanostars: Experimental And Theoretical Raman/Sers Study Of The Pesticide Thiacloprid Bond Cleavage By The Plasmon Deactivation Effect
 
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Plasmon Chemistry On Ag Nanostars: Experimental And Theoretical Raman/Sers Study Of The Pesticide Thiacloprid Bond Cleavage By The Plasmon Deactivation Effect

Journal
ACS Omega
Date Issued
2023-06-13
Author(s)
Freddy Celis
Andrés Aracena
Macarena García
Segura, Rodrigo  
Facultad de Ciencias  
Santiago Sanchez-Cortes
Patricio Leyton
DOI
10.1021/acsomega.3c01878
WoS ID
WOS:001008528300001
Abstract
Silver nanoparticles (AgNPs) were synthetized and employed in surface-enhanced Raman scattering measurements to study the chemical behavior when thiacloprid (Thia) interacts with the surface of Ag nanospheres (AgNSp) and Ag nanostars (AgNSt) upon excitation of the system with a 785 nm laser. Experimental results show that the deactivation of the localized surface plasmon resonance induces structural changes in Thia. When AgNSp are used, it is possible to observe a mesomeric effect in the cyanamide moiety. On the other hand, when AgNSt are employed, it promotes the cleavage of the methylene (-CH<sub>2</sub>-) bridge in Thia to produce two molecular fragments. To support these results, theoretical calculations based on topological parameters described by the atoms in molecules theory, Laplacian of the electron density at the bond critical point (∇<sup>2</sup>ρ BCP), Laplacian bond order, and bond dissociation energies were made, confirming that the bond cleavage is centered at the -CH<sub>2</sub>- bridge in Thia.
Subjects

Chemistry, Multidisci...

Chemical Engineering

Chemistry

OCDE Subjects

Natural Sciences::Phy...

Quartile (Date Issued)
Q2
License
acceso abierto

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