4.7 Article

Stepwise Access of Emissive Ir(III) Complexes Bearing a Multi-Dentate Heteroaromatic Chelate: Fundamentals and Applications

Journal

INORGANIC CHEMISTRY
Volume 61, Issue 10, Pages 4384-4393

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.1c03794

Keywords

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Funding

  1. Research Grant Council of Hong Kong, Hong Kong SAR [CityU 11300718]
  2. City University of Hong Kong, Hong Kong SAR [CityU 11300718]
  3. Hong Kong Research Grants Council [PolyU 123021/17P]
  4. Science, Technology, and Innovation Committee of Shenzhen Municipality [JCYJ20180306173720000]
  5. Environment and Conservation Fund [79/2020]
  6. Hong Kong Polytechnic University (G-YBYZ)
  7. Hong Kong Polytechnic University (ZVVU)

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A series of multi-dentate coordinated chelates LnH2, [Ir(Kappa 4-Ln)(mu-Cl)]2, and Ir(Kappa 4-Ln)(thd) with different coordination modes have been successfully designed and synthesized. The structures and properties of these complexes were investigated.
Three multi-dentate coordinated chelates LnH2(n=1,2, and 3), comprising a linked 1-(pyridin-2-yl)ethylbenzene and onepyrazolyl pyridine unit and showing either tridentate or tetradentate coordination modes, are successfully designed and synthesized.Dinuclear Ir(III) complexes [Ir(Kappa 4-Ln)(mu-Cl)]2bearing tetradentatecoordinated Kappa 4-Lnchelate (2a,n=1;2b,n=2;2c,n= 3) were nextobtained en route from the respective intermediate [Ir(Kappa 3-LnH)Cl(mu-Cl)]2bearing the tridentate coordinated Kappa 3-LnH chelate (1a,n=1;1b,n=2;1c,n= 3). Next, mononuclear Ir(III) complexes Ir(Kappa 4-Ln)(thd)(3a,n=1;3b,n=2;3c,n= 3) with the tetradentate chelate wereobtained upon treatment of2with 2,2,6,6-tetramethyl-3,5-heptane-dione (thd)H in the presence of K2CO3. Concurrently, methylation of2cin the presence of MeI andnBu4NCl afforded tridentate Ir(Kappa 3-L3HMe)Cl3(4) and, next, can be converted to tetradentate Ir(Kappa 4-L3Me)Cl2(5) by further cyclometalation and HCl elimination in refluxing diethylene glycol monoethyl ether solution. The Ir(III)complexes3a,4, and5were unambiguously identified using spectroscopic methods, together with single-crystal X-ray structura lanalyses on Ir(III) derivatives3a,4, and5. Their photophysical and ,electrochemical properties and device fabrication properties were also investigated and compared with results from theoretical studies.

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