The remarkable emissive properties of cyclic triimidazole (TT), showing crystallization-induced emissive behavior and, in particular, room temperature phosphorescence (RTP), are here combined with its versatility in assembling coordination compounds. A series of Ag(I) coordination polymers (CPs), comprising a 1D chain ([Ag(TT)I]n, 1-Ag) and 3D networks ([Ag(TT)Cl]n, 2-Ag, and [Ag3(TT)4]n(NO3)3n·6nH2O, 3-Ag), have been synthesized and their photophysical behavior thoroughly investigated. They show both fluorescence and multiple RTPs, all simultaneously activated but varied in intensity by changing the excitation energy. Based on DFT/TDDFT calculations and analysis of the X-ray crystal structures, the origin of the different phosphorescences has been ascribed to H-aggregation of the ligand (in 1-Ag and 2-Ag), intermolecular electronic coupling by an extrinsic heavy-atom effect (in 1-Ag) and ligand-centered emissive states (in all three compounds). Comparison with isostructural 1-Cu and 2-Cu CPs reveals that, different from the Ag(I) analogues, non-thermally equilibrated XMLCT and ligand-centered emissive states are active. The isostructural Ag(I) and Cu(I) compounds show comparable emission efficiency, while the phosphorescence lifetimes are longer for the former (ms regime) than the latter (micro-s regime). A Quantum Theory of Atoms In Molecules (QTAIM) topological analysis of electron density allows the interpretation of the different nature of the emissive states of Ag(I) and Cu(I) compounds on the basis of larger shell-shared character of the Cu-N bond with respect to the Ag-N one.

Ag(I) and Cu(I) cyclic-triimidazole coordination polymers: Revealing different deactivation channels for multiple room temperature phosphorescences

Lucenti E;Forni A
;
Marinotto D;Botta C;
2021

Abstract

The remarkable emissive properties of cyclic triimidazole (TT), showing crystallization-induced emissive behavior and, in particular, room temperature phosphorescence (RTP), are here combined with its versatility in assembling coordination compounds. A series of Ag(I) coordination polymers (CPs), comprising a 1D chain ([Ag(TT)I]n, 1-Ag) and 3D networks ([Ag(TT)Cl]n, 2-Ag, and [Ag3(TT)4]n(NO3)3n·6nH2O, 3-Ag), have been synthesized and their photophysical behavior thoroughly investigated. They show both fluorescence and multiple RTPs, all simultaneously activated but varied in intensity by changing the excitation energy. Based on DFT/TDDFT calculations and analysis of the X-ray crystal structures, the origin of the different phosphorescences has been ascribed to H-aggregation of the ligand (in 1-Ag and 2-Ag), intermolecular electronic coupling by an extrinsic heavy-atom effect (in 1-Ag) and ligand-centered emissive states (in all three compounds). Comparison with isostructural 1-Cu and 2-Cu CPs reveals that, different from the Ag(I) analogues, non-thermally equilibrated XMLCT and ligand-centered emissive states are active. The isostructural Ag(I) and Cu(I) compounds show comparable emission efficiency, while the phosphorescence lifetimes are longer for the former (ms regime) than the latter (micro-s regime). A Quantum Theory of Atoms In Molecules (QTAIM) topological analysis of electron density allows the interpretation of the different nature of the emissive states of Ag(I) and Cu(I) compounds on the basis of larger shell-shared character of the Cu-N bond with respect to the Ag-N one.
2021
Istituto di Scienze e Tecnologie Chimiche "Giulio Natta" - SCITEC
Istituto di Scienze e Tecnologie Chimiche "Giulio Natta" - SCITEC - Sede Secondaria Milano - Via C. Golgi
Coordination polymers
Room temperature phosphorescence
H-aggregation
DFT and TDDFT calculations
Quantum Theory of Atoms In Molecules (QTAIM)
File in questo prodotto:
File Dimensione Formato  
Inorg. Chem. Front. 2021, p.1312.pdf

solo utenti autorizzati

Descrizione: Articolo pubblicato
Tipologia: Versione Editoriale (PDF)
Licenza: NON PUBBLICO - Accesso privato/ristretto
Dimensione 2.24 MB
Formato Adobe PDF
2.24 MB Adobe PDF   Visualizza/Apri   Richiedi una copia
Inorg. Chem. Front. 2021, p.1312 - SI.pdf

accesso aperto

Descrizione: Supplementary Information
Tipologia: Altro materiale allegato
Licenza: Altro tipo di licenza
Dimensione 4.18 MB
Formato Adobe PDF
4.18 MB Adobe PDF Visualizza/Apri
InorgChemFront+2021+8+1312-1323+AM.pdf

Open Access dal 20/12/2021

Descrizione: versione accettata dell'articolo
Tipologia: Documento in Post-print
Licenza: Altro tipo di licenza
Dimensione 1.72 MB
Formato Adobe PDF
1.72 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/420948
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 21
  • ???jsp.display-item.citation.isi??? 19
social impact