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  4. Synthesis, Structure, and Optical Studies of Donor-Acceptor-Type Near-Infrared (NIR) Aza-Boron-Dipyrromethene (BODIPY) Dyes
 
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Synthesis, Structure, and Optical Studies of Donor-Acceptor-Type Near-Infrared (NIR) Aza-Boron-Dipyrromethene (BODIPY) Dyes

Source
Chemistry an Asian Journal
ISSN
18614728
Date Issued
2016-05-20
Author(s)
Balsukuri, Naresh
Lone, Mohsin Y.
Jha, Prakash C.
Mori, Shigeki
Gupta, Iti  
DOI
10.1002/asia.201600167
Volume
11
Issue
10
Abstract
Six donor-acceptor-type near-infrared (NIR) aza-boron-dipyrromethene (BODIPY) dyes and their corresponding aza-dipyrrins were designed and synthesized. The donor moieties at the 1,7-positions of the aza-BODIPY core were varied from naphthyl to N-phenylcarbazole to N-butylcarbazole. The 3,5-positions were also substituted with phenyl or thienyl groups in the aza-BODIPYs. Photophysical, electrochemical, and computational studies were carried out. The absorption and emission spectra of aza-BODIPYs were significantly redshifted (≈100 nm) relative to the parent tetraphenylaza-BODIPY. Fluorescence studies suggested effective energy transfer (up to 93 %) from donor groups to the aza-BODIPY core in all of the compounds under study. Time-dependent (TD)-DFT studies indicated effective electronic interactions between energy donor groups and aza-dipyrrin unit in all the aza-BODIPYs studied. The HOMO-LUMO gap (ΔE) calculated from cyclic voltammetry data was found to be lower for six aza-BODIPYs relative to their corresponding aza-dipyrrins. Donations accepted: Donor-acceptor-type near-infrared aza-BODIPYs were designed and synthesized. The presence of donor groups at the 1,7-position of the aza-BODIPYs caused significant bathochromic shifts in their absorption and emission maxima. Efficient energy transfer from donor moieties to the aza-BODIPY core was observed in all compounds studied.
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URI
https://d8.irins.org/handle/IITG2025/21904
Subjects
density functional calculations | donor-acceptor systems | dyes/pigments | energy transfer | X-ray diffraction
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