Cu (I) complexes–Thermally activated delayed fluorescence. Photophysical approach and material design

R Czerwieniec, MJ Leitl, HHH Homeier… - Coordination Chemistry …, 2016 - Elsevier
Cu (I) complexes often show transitions of distinct metal-to-ligand charge transfer (MLCT)
character. This can lead to small energy separations between the lowest singlet S 1 and …

The triplet state of organo-transition metal compounds. Triplet harvesting and singlet harvesting for efficient OLEDs

H Yersin, AF Rausch, R Czerwieniec, T Hofbeck… - Coordination Chemistry …, 2011 - Elsevier
Based on a very comprehensive set of experimental data and on theoretical models, an
understanding of the triplet state properties of organo-transition metal compounds is worked …

Yellow/orange emissive heavy-metal complexes as phosphors in monochromatic and white organic light-emitting devices

C Fan, C Yang - Chemical Society Reviews, 2014 - pubs.rsc.org
Owing to the electron spin–orbit coupling (SOC) and fast intersystem crossing (ISC), heavy-
metal complexes (such as iridium (III), platinum (II) and osmium (II) complexes, etc.) are …

Switching on luminescence by the self-assembly of a platinum (II) complex into gelating nanofibers and electroluminescent films

CA Strassert, CH Chien, MDG Lopez… - Angewandte Chemie …, 2011 - ir.lib.nycu.edu.tw
Triplet emitters based on platinum (II) complexes have gained major attention in recent
times.[1] They can form aggregates or excimers, causing shifts in the emitted wavelengths …

Phosphorescence vs fluorescence in cyclometalated platinum (II) and iridium (III) complexes of (oligo) thienylpyridines

DN Kozhevnikov, VN Kozhevnikov… - Inorganic …, 2011 - ACS Publications
Two newly prepared oligothienylpyridines, 5-(2-pyridyl)-5′-dodecyl-2, 2′-bithiophene,
HL2, and 5-(2-pyridyl)-5′′-dodecyl-2, 2′: 5′, 2′′-ter-thiophene, HL3, bind to platinum …

Organometallic Pt (II) and Ir (III) triplet emitters for OLED applications and the role of spin–orbit coupling: a study based on high-resolution optical spectroscopy

AF Rausch, HHH Homeier, H Yersin - Photophysics of Organometallics, 2010 - Springer
High-resolution optical spectroscopy of organometallic triplet emitters reveals detailed
insights into the lowest triplet states and the corresponding electronic and vibronic …

Brightly luminescent Pt (II) pincer complexes with a sterically demanding carboranyl-phenylpyridine ligand: a new material class for diverse optoelectronic applications

AM Prokhorov, T Hofbeck, R Czerwieniec… - Journal of the …, 2014 - ACS Publications
A series of three Pt (II) complexes with a doubly cyclometalating terdentate ligand L1, L1H2=
3, 6-bis (p-anizolyl)-2-carboranyl-pyridine, and diethyl sulfide (1), triphenylphosphine (2) …

Extended ligand conjugation and dinuclearity as a route to efficient platinum-based near-infrared (NIR) triplet emitters and solution-processed NIR-OLEDs

MZ Shafikov, P Pander, AV Zaytsev… - Journal of Materials …, 2021 - pubs.rsc.org
Near infrared (NIR) emission from molecular materials is typically targeted by using more
extended conjugated systems compared to visible-emitting materials. But efficiencies …

Diarylethene-containing cyclometalated platinum (II) complexes: tunable photochromism via metal coordination and rational ligand design

JCH Chan, WH Lam, HL Wong, N Zhu… - Journal of the …, 2011 - ACS Publications
The synthesis, characterization, electrochemistry, photophysics and photochromic behavior
of a new class of cyclometalated platinum (II) complexes [Pt (C∧ N)(O∧ O)](1a–5a and 1b …

Comparative studies of photophysical and photochemical properties of solketal substituted platinum (II) and zinc (II) phthalocyanine sets

Y Zorlu, F Dumoulin, M Durmuş, V Ahsen - Tetrahedron, 2010 - Elsevier
A complete set of platinum (II) solketal substituted phthalocyanines has been synthesized
and characterized. To evaluate their potential as Type II photosensitizers for photodynamic …