Non-conventional synthesis and photophysical studies of platinum(II) complexes with methylene bridged 2,2′-dipyridylamine derivatives
Bulatov, E., & Haukka, M. (2019). Non-conventional synthesis and photophysical studies of platinum(II) complexes with methylene bridged 2,2′-dipyridylamine derivatives. Dalton Transactions, 48(10), 3369-3379. https://doi.org/10.1039/C8DT03912G
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Dalton TransactionsDate
2019Copyright
© The Royal Society of Chemistry 2019
Methylene bridged 2,2′-dipyridylamine (dpa) derivatives and their metal complexes possess outstanding properties due to their inherent structural flexibility. Synthesis of such complexes typically involves derivatization of dpa followed by coordination on metals, and may not always be very efficient. In this work, an alternative synthetic approach, involving the derivatization step after – rather than prior to – coordination of dpa on metal center, is proposed and applied to synthesis of a number of platinum(II) complexes with substituted benzyldi(2-pyridyl)amines. Comparison with the more conventional synthetic route reveals greater efficiency and versatility of the proposed approach. The obtained complexes are not luminescent in solution at room temperature, but display blue phosphorescence emission (ca. 415 nm) with the lifetimes of μs order in glassy matrix at 77 K, with additional green (ca. 485 nm) and relatively long living (τ = 3.7 ms) emission in the case of iodine substituted derivative.
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Royal Society of ChemistryISSN Search the Publication Forum
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https://converis.jyu.fi/converis/portal/detail/Publication/28944765
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Research Council of FinlandFunding program(s)
Academy Project, AoFAdditional information about funding
E. B. and M. H. kindly acknowledge the financial support from the Academy of Finland (Proj. no. 295581). The authors would also like to acknowledge Elina Hautakangas for elemental analyses, Dr Elina Kalenius for mass spectrometry measurements, Dr Matti Tuikka for helping with X-ray analyses, and Dr Pasi Myllyperkiö and Dr Heikki Häkkänen for assisting with optical spectroscopy measurements.License
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