Page last updated: 2024-08-22

iridium and quinoxalines

iridium has been researched along with quinoxalines in 8 studies

Research

Studies (8)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's2 (25.00)29.6817
2010's6 (75.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Chung, CK; Lo, KK; Zhu, N1
Chan, AS; Fan, B; Fan, QH; Lam, KH; Tang, W; Wang, J; Xu, L; Zhou, Z1
Cheung, MS; Lam, YW; Li, SP; Lo, KK; Or, IW; Zhang, KY; Zhu, N1
Cheng, CH; Fan, CH; Su, TH; Sun, P1
Ayad, T; Berhal, F; Cartigny, D; GenĂȘt, JP; Mashima, K; Nagano, T; Ohshima, T; Phansavath, P; Ratovelomanana-Vidal, V1
Iimuro, A; Kita, Y; Mashima, K; Nagano, T; Ohshima, T; Schwenk, R; Togni, A1
Crole, DA; Hallett, AJ; Langdon-Jones, EE; Platts, JA; Pope, SJ; Routledge, JD; Ward, BD1
Hille, T; Irrgang, T; Kempe, R1

Other Studies

8 other study(ies) available for iridium and quinoxalines

ArticleYear
Nucleic acid intercalators and avidin probes derived from luminescent cyclometalated iridium(III)-dipyridoquinoxaline and -dipyridophenazine complexes.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2006, Feb-01, Volume: 12, Issue:5

    Topics: Avidin; Azo Compounds; Crystallography, X-Ray; DNA; Fluorescent Dyes; Intercalating Agents; Iridium; Molecular Probes; Organometallic Compounds; Phenazines; Quinoxalines; Spectrometry, Fluorescence

2006
Asymmetric hydrogenation of quinoxalines with diphosphinite ligands: a practical synthesis of enantioenriched, substituted tetrahydroquinoxalines.
    Angewandte Chemie (International ed. in English), 2009, Volume: 48, Issue:48

    Topics: Catalysis; Hydrogenation; Iridium; Ligands; Models, Molecular; Molecular Structure; Phosphines; Quinoxalines; Stereoisomerism

2009
Structure, photophysical and electrochemical properties, biomolecular interactions, and intracellular uptake of luminescent cyclometalated iridium(III) dipyridoquinoxaline complexes.
    Inorganic chemistry, 2010, Mar-01, Volume: 49, Issue:5

    Topics: Absorption; Animals; Biological Transport; Cattle; Crystallography, X-Ray; DNA; Dogs; Electrochemistry; HeLa Cells; Humans; Hydrophobic and Hydrophilic Interactions; Intracellular Space; Iridium; Luminescent Agents; Organometallic Compounds; Proteins; Quinoxalines; RNA

2010
Host and dopant materials for idealized deep-red organic electrophosphorescence devices.
    Advanced materials (Deerfield Beach, Fla.), 2011, Jul-12, Volume: 23, Issue:26

    Topics: Coordination Complexes; Iridium; Luminescent Agents; Quantum Theory; Quinoxalines; Spectrometry, Fluorescence

2011
General asymmetric hydrogenation of 2-alkyl- and 2-aryl-substituted quinoxaline derivatives catalyzed by iridium-difluorphos: unusual halide effect and synthetic application.
    The Journal of organic chemistry, 2012, May-18, Volume: 77, Issue:10

    Topics: Catalysis; Cholesterol Ester Transfer Proteins; Hydrocarbons, Fluorinated; Hydrogenation; Iridium; Molecular Structure; Organometallic Compounds; Quinoxalines; Stereoisomerism

2012
Additive effects of amines on asymmetric hydrogenation of quinoxalines catalyzed by chiral iridium complexes.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2012, Sep-10, Volume: 18, Issue:37

    Topics: Amines; Catalysis; Hydrogenation; Iridium; Molecular Structure; Organometallic Compounds; Quinoxalines

2012
Using substituted cyclometalated quinoxaline ligands to finely tune the luminescence properties of iridium(III) complexes.
    Inorganic chemistry, 2013, Jan-07, Volume: 52, Issue:1

    Topics: Iridium; Ligands; Luminescence; Models, Molecular; Molecular Structure; Organometallic Compounds; Quantum Theory; Quinoxalines

2013
The synthesis of benzimidazoles and quinoxalines from aromatic diamines and alcohols by iridium-catalyzed acceptorless dehydrogenative alkylation.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2014, May-05, Volume: 20, Issue:19

    Topics: Alcohols; Alkylation; Benzimidazoles; Catalysis; Diamines; Hydrogenation; Iridium; Molecular Structure; Quinoxalines

2014