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Near-Infrared Absorption Properties of Neutral Bis(1,2-dithiolene) Platinum(II) Complexes Using Density Functional Theory

Author(s)
Luong, Xuan-HoangPham, Nguyet N. T.An, Kyoung-LyongLee, Seong UkKim, Shi SurkPark, Jong S.Lee, Seung Geol
Issued Date
2022-05
DOI
10.3390/nano12101704
URI
https://scholarworks.unist.ac.kr/handle/201301/81699
Citation
NANOMATERIALS, v.12, no.10, pp.1704
Abstract
Small metal complexes are highly interesting for bioimaging because of their excellent near-infrared (NIR) absorption properties. In this study, neutral complexes of platinum(II) connected to two monoreduced 1,3-diisopropylimidazoline-2,4,5-trithione ligands-namely, [Pt(iPr(2)timdt)(2)]-were investigated. Theoretical studies using the density functional theory (DFT) and GW-BSE approximation verified the effects of the geometry of the isopropyl moieties on the NIR absorption spectra. The calculated absorption spectra showed excellent correspondence with the experimental results. The geometry of the isopropyl groups considerably influenced the electronic structures of the metal complexes, which altered the absorption profiles of the respective geometries, as demonstrated in this research.
Publisher
MDPI
ISSN
2079-4991
Keyword (Author)
platinum complexdithiolene complexNIRdensity functional theoryGW-BSE approximation
Keyword
TOTAL-ENERGY CALCULATIONSDITHIOLENE COMPLEXESOPTICAL-SPECTRAMETAL-COMPLEXESNIUREAS

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