Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/8652
Title: Role of Ligand on Photophysical Properties of Nanoclusters with fcc Kernel: A Case Study of Ag14(SC6H4X)12(PPh3)8 (X = F, Cl, Br)
Authors: Nair, Akhil S.
Pathak, Biswarup
Keywords: Electronic structure;Excited states;Ligands;Luminescence;Silver;Case-studies;Electronic.structure;Face-centred cubic;Halide atoms;Halogen atoms;Photophysical properties;Silver nanoclusters;Structure-property correlation;Thiolate ligands;Transient absorption spectra;Nanoclusters
Issue Date: 2021
Publisher: American Chemical Society
Citation: Das, A. K., Mekkat, R., Maity, S., Nair, A. S., Bhandary, S., Bhowal, R., . . . Mandal, S. (2021). Role of ligand on photophysical properties of nanoclusters with fcc kernel: A case study of Ag14(SC6H4X)12(PPh3)8 (X = F, cl, br). Inorganic Chemistry, 60(24), 19270-19277. doi:10.1021/acs.inorgchem.1c03083
Abstract: The structure–property correlation of a series of silver nanoclusters (NCs) is essential to understand the origin of photophysical properties. Here, we report a series of face-centered cubic (fcc)-based silver NCs by varying the halogen atom in the thiolate ligand to investigate the influence of the halide atoms on the electronic structure. These are {Ag14(FBT)12(PPh3)8·(solvent)x} (NC-1), Ag14(CBT)12(PPh3)8 (NC-2), and Ag14(BBT)12(PPh3)8 (NC-3), where 4-fluorothiophenol (FBT), 4-chlorothiophenol (CBT), and 4-bromothiophenol (BBT) have been utilized as thiolate ligands, respectively. Interestingly, the optical and electrochemical bandgap values of these NCs nicely correlated with the electronic effect of the halides, which is governed by the intracluster and interclusters π–π interactions. These clusters are emissive at room temperature and the luminescence intensity increases with the lowering of temperature. The short lifetime data suggest that the emission is predominantly originating due to the interband relaxation (d → sp) of the Ag cores. Femtosecond transient absorption (TA) spectra revealed similar types of decay profiles for NC-2 and NC-3 and longer decay time for NC-2. The relaxation dominates the decay profile to the surface states and most of the excited-state energy dissipates via this process. This supports the molecular-like dynamics of these series of NCs with an fcc core. This overview shed light on an in-depth understanding of ligand’s role in luminescence and transient absorption spectra. © 2021 American Chemical Society
URI: https://doi.org/10.1021/acs.inorgchem.1c03083
https://dspace.iiti.ac.in/handle/123456789/8652
ISSN: 0020-1669
Type of Material: Journal Article
Appears in Collections:Department of Chemistry

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