Page last updated: 2024-08-22

manganese and corrole

manganese has been researched along with corrole in 28 studies

Research

Studies (28)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's13 (46.43)29.6817
2010's11 (39.29)24.3611
2020's4 (14.29)2.80

Authors

AuthorsStudies
Ghosh, A; Steene, E1
Ghosh, A; Steene, E; Wondimagegn, T1
de Visser, SP; Gross, Z; Ogliaro, LF; Shaik, S1
Fox, JP; Goldberg, DP; Mandimutsira, BS; Ramdhanie, B; Todd, R; Wang, SH1
Gross, Z; Mahammed, A1
Harischandra, DN; Newcomb, M; Zhang, R1
Barbe, JM; Burdet, F; Frémond, L; Gros, CP; Guilard, R; Kadish, KM1
Abu-Omar, MM; Zdilla, MJ2
Gershman, Z; Goldberg, I; Gross, Z1
Abu-Omar, MM; Dexheimer, JL; Zdilla, MJ1
Akermark, B; Akermark, T; Gao, Y; Liu, J; Sun, L1
Chang, CK; Li, XY; Liu, HY; Xie, YT; Yam, F1
Fukuzumi, S; Han, Y; Lee, YM; Mariappan, M; Nam, W1
Abu-Omar, MM1
Iranzo, O1
Barbe, JM; Chen, P; El Ojaimi, M; Gros, CP; Guilard, R; Kadish, KM; Richard, P; Shen, J1
Deng, M; Ge, Y; Liu, Y; Tian, T; Wu, W; Xu, L; Yan, S; Zhai, Q; Zhou, X; Zhou, Y1
Gross, Z; Okun, Z1
Abu-Omar, MM; Fukuzumi, S; Jung, J; Liu, S; Ohkubo, K1
Alonso-Valenteen, F; Gray, HB; Gross, Z; Hanson, C; Harutyunyan, I; Hwang, JY; Ibrahim, A; Karapetyan, G; Marban, E; Medina-Kauwe, LK; Moats, R; Polo, R; Sims, JD; Sorasaenee, K; Taguiam, JM; Wagner, S1
Ka, WK; Malone, J; Ngo, FL; Ranburger, D; Zhang, R1
Dhuri, SN; Fukuzumi, S; Guo, M; Gupta, R; Lee, YM; Liu, HY; Nam, W; Ohta, T; Sarangi, R; Seo, MS; Wang, HH1
Akram, W; Cheng, F; Liao, YH; Liu, HY; Liu, ZY; Sun, YM; Ye, Y1
Gray, HB; Gross, Z; Khoury, S; Mahammed, A; Morales, M; Virgil, SC; Yadav, P1
Ghosh, A; Terner, J; Thomas, KE; Vazquez-Lima, H1
Lau, KC; Lau, TC; Lee, HK; Liang, R; Man, WL; Phillips, DL; Shi, H; Yiu, SM1
Ali, A; Chang, CK; Cheng, F; Liu, HY; Sun, YM; Wan, B; Wang, HH1

Reviews

3 review(s) available for manganese and corrole

ArticleYear
High-valent transition metal centers and noninnocent ligands in metalloporphyrins and related molecules: a broad overview based on quantum chemical calculations.
    Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry, 2001, Volume: 6, Issue:7

    Topics: Cations; Copper; Iron; Ligands; Manganese; Metalloporphyrins; Models, Chemical; Nickel; Peroxidase; Porphyrins; Quantum Theory

2001
High-valent iron and manganese complexes of corrole and porphyrin in atom transfer and dioxygen evolving catalysis.
    Dalton transactions (Cambridge, England : 2003), 2011, Apr-14, Volume: 40, Issue:14

    Topics: Catalysis; Iron; Manganese; Organometallic Compounds; Oxygen; Porphyrins

2011
Manganese complexes displaying superoxide dismutase activity: a balance between different factors.
    Bioorganic chemistry, 2011, Volume: 39, Issue:2

    Topics: Coordination Complexes; Ethylenediamines; Macrocyclic Compounds; Manganese; Oxidation-Reduction; Peptides; Porphyrins; Superoxide Dismutase

2011

Other Studies

25 other study(ies) available for manganese and corrole

ArticleYear
Resonance Raman spectroscopy and density functional theoretical calculations of manganese corroles. A parallelism between high-valent metallocorroles and metalloporphyrins, relevant to horseradish peroxidase and chloroperoxidase compound I and II intermed
    Journal of inorganic biochemistry, 2002, Jan-01, Volume: 88, Issue:1

    Topics: Chloride Peroxidase; Horseradish Peroxidase; Manganese; Metalloporphyrins; Models, Molecular; Molecular Structure; Oxidation-Reduction; Porphyrins; Spectrum Analysis, Raman

2002
What is the difference between the manganese porphyrin and corrole analogues of cytochrome P450's compound I?
    Chemistry (Weinheim an der Bergstrasse, Germany), 2001, Nov-19, Volume: 7, Issue:22

    Topics: Cytochrome P-450 Enzyme System; Manganese; Porphyrins

2001
Catalytic sulfoxidation and epoxidation with a Mn(III) triazacorrole: evidence for a "third oxidant" in high-valent porphyrinoid oxidations.
    Journal of the American Chemical Society, 2004, Jan-14, Volume: 126, Issue:1

    Topics: Epoxy Compounds; Manganese; Metalloporphyrins; Oxidation-Reduction; Oxygen Isotopes; Porphyrins; Sulfoxides

2004
Albumin-conjugated corrole metal complexes: extremely simple yet very efficient biomimetic oxidation systems.
    Journal of the American Chemical Society, 2005, Mar-09, Volume: 127, Issue:9

    Topics: Animals; Biomimetic Materials; Catalase; Humans; Hydrogen Peroxide; Iron Compounds; Manganese; Oxidation-Reduction; Oxygen; Porphyrins; Serum Albumin; Sheep; Swine

2005
Laser flash photolysis generation and kinetic studies of corrole-manganese(V)-oxo intermediates.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2005, Sep-19, Volume: 11, Issue:19

    Topics: Kinetics; Lasers; Magnetic Resonance Spectroscopy; Manganese; Photochemistry; Porphyrins; Spectrometry, Mass, Fast Atom Bombardment; Spectrophotometry, Ultraviolet

2005
Cobalt(IV) corroles as catalysts for the electroreduction of O2: reactions of heterobimetallic dyads containing a face-to-face linked Fe(III) or Mn(III) porphyrin.
    Journal of inorganic biochemistry, 2006, Volume: 100, Issue:4

    Topics: Binding Sites; Catalysis; Cobalt; Ferric Compounds; Manganese; Metalloporphyrins; Oxidation-Reduction; Oxygen; Porphyrins

2006
Mechanism of catalytic aziridination with manganese corrole: the often postulated high-valent Mn(V) imido is not the group transfer reagent.
    Journal of the American Chemical Society, 2006, Dec-27, Volume: 128, Issue:51

    Topics: Alkenes; Aziridines; Catalysis; Imides; Kinetics; Manganese; Molecular Structure; Organometallic Compounds; Oxidation-Reduction; Porphyrins; Quantum Theory; Time Factors

2006
DNA binding and catalytic properties of positively charged corroles.
    Angewandte Chemie (International ed. in English), 2007, Volume: 46, Issue:23

    Topics: Binding Sites; Catalysis; Crystallography, X-Ray; DNA; Manganese; Models, Molecular; Molecular Structure; Organometallic Compounds; Porphyrins; Stereoisomerism

2007
Hydrogen atom transfer reactions of imido manganese(V) corrole: one reaction with two mechanistic pathways.
    Journal of the American Chemical Society, 2007, Sep-19, Volume: 129, Issue:37

    Topics: Catalysis; Electron Spin Resonance Spectroscopy; Electrons; Hydrogen; Imides; Kinetics; Manganese; Organometallic Compounds; Porphyrins; Protons; Thermodynamics

2007
Manganese(III) corrole-oxidant adduct as the active intermediate in catalytic hydrogen atom transfer.
    Inorganic chemistry, 2008, Nov-17, Volume: 47, Issue:22

    Topics: Anthracenes; Catalysis; Cytochrome P-450 Enzyme System; Hydrogen; Manganese; Metalloporphyrins; Oxidants; Porphyrins

2008
Nucleophilic attack of hydroxide on a Mn(V) oxo complex: a model of the O-O bond formation in the oxygen evolving complex of photosystem II.
    Journal of the American Chemical Society, 2009, Jul-01, Volume: 131, Issue:25

    Topics: Hydroxides; Manganese; Models, Biological; Oxidation-Reduction; Oxygen; Photosystem II Protein Complex; Porphyrins; tert-Butylhydroperoxide; Water

2009
A bulky bis-pocket manganese(V)-oxo corrole complex: observation of oxygen atom transfer between triply bonded Mn(V)[triple bond]O and alkene.
    Journal of the American Chemical Society, 2009, Sep-16, Volume: 131, Issue:36

    Topics: Alkenes; Manganese; Molecular Structure; Oxygen; Porphyrins; Spectrum Analysis, Raman

2009
Manganese(V)-oxo corroles in hydride-transfer reactions.
    Chemical communications (Cambridge, England), 2010, Nov-21, Volume: 46, Issue:43

    Topics: Electron Transport; Hydrogen; Manganese; NAD; Oxidation-Reduction; Porphyrins

2010
Electrochemistry and spectroelectrochemistry of bismanganese porphyrin-corrole dyads.
    Inorganic chemistry, 2011, Apr-18, Volume: 50, Issue:8

    Topics: Electrochemistry; Manganese; Metalloporphyrins; Molecular Structure; Porphyrins; Spectrophotometry, Ultraviolet

2011
Site-specific recognition of guanosine by manganese(III) corroles in DNA non-duplex regions through active oxygen transfer.
    Chemistry (Weinheim an der Bergstrasse, Germany), 2011, Aug-01, Volume: 17, Issue:32

    Topics: Cations; DNA; DNA Cleavage; Guanosine; Manganese; Metalloporphyrins; Models, Molecular; Porphyrins; Reactive Oxygen Species

2011
Fine tuning the reactivity of corrole-based catalytic antioxidants.
    Inorganic chemistry, 2012, Aug-06, Volume: 51, Issue:15

    Topics: Antioxidants; Catalysis; Electrochemical Techniques; Kinetics; Manganese; Metalloporphyrins; Molecular Structure; Oxidation-Reduction; Peroxynitrous Acid; Porphyrins; Spectrum Analysis; Structure-Activity Relationship; Superoxide Dismutase; Thermodynamics; Tyrosine; Water

2012
Catalytic two-electron reduction of dioxygen by ferrocene derivatives with manganese(V) corroles.
    Inorganic chemistry, 2015, May-04, Volume: 54, Issue:9

    Topics: Catalysis; Electron Transport; Electrons; Ferrous Compounds; Hydrogen; Hydrogen Peroxide; Kinetics; Manganese; Metallocenes; Oxidation-Reduction; Oxygen; Porphyrins; Protons; Trifluoroacetic Acid

2015
A corrole nanobiologic elicits tissue-activated MRI contrast enhancement and tumor-targeted toxicity.
    Journal of controlled release : official journal of the Controlled Release Society, 2015, Nov-10, Volume: 217

    Topics: Animals; Antineoplastic Agents; Cell Line, Tumor; Cell Survival; Contrast Media; Female; Humans; Magnetic Resonance Imaging; Manganese; Mice, Nude; Neoplasms; Neuregulin-1; Porphyrins; Recombinant Fusion Proteins; Tissue Distribution; Tumor Burden

2015
Visible light-induced formation of corrole-manganese(V)-oxo complexes: Observation of multiple oxidation pathways.
    Journal of inorganic biochemistry, 2016, Volume: 163

    Topics: Manganese; Oxidation-Reduction; Porphyrins

2016
Dioxygen Activation and O-O Bond Formation Reactions by Manganese Corroles.
    Journal of the American Chemical Society, 2017, 11-08, Volume: 139, Issue:44

    Topics: Alkenes; Hydrogen; Kinetics; Manganese; Oxidation-Reduction; Oxygen; Porphyrins

2017
DNA interaction and photodynamic antitumor activity of transition metal mono-hydroxyl corrole.
    Bioorganic chemistry, 2019, Volume: 90

    Topics: Antineoplastic Agents; Apoptosis; Copper; DNA; Ferric Compounds; Humans; Hydroxyl Radical; Manganese; Membrane Potential, Mitochondrial; Mitochondria; Neoplasms; Photochemotherapy; Porphyrins; Tumor Cells, Cultured

2019
Enhanced Synthetic Access to Tris-CF
    Organic letters, 2020, 04-17, Volume: 22, Issue:8

    Topics: Gallium; Manganese; Molecular Structure; Organometallic Compounds; Porphyrins

2020
Structure-sensitive marker bands of metallocorroles: A resonance Raman study of manganese and gold corrole derivatives.
    Journal of inorganic biochemistry, 2022, Volume: 231

    Topics: Gold; Ions; Manganese; Porphyrins; Spectrum Analysis, Raman; Vibration

2022
Structure and Reactivity of One- and Two-Electron Oxidized Manganese(V) Nitrido Complexes Bearing a Bulky Corrole Ligand.
    Journal of the American Chemical Society, 2022, 05-04, Volume: 144, Issue:17

    Topics: Electrons; Ions; Ligands; Manganese; Porphyrins

2022
Manganese corrole catalyzed selective oxidation of styrene to benzaldehyde: sodium nitrite functions as an oxidant and cocatalyst.
    Organic & biomolecular chemistry, 2022, 10-12, Volume: 20, Issue:39

    Topics: Benzaldehydes; Catalysis; Manganese; Metalloporphyrins; Nitrogen; Oxidants; Oxidation-Reduction; Oxygen; Porphyrins; Sodium Nitrite; Styrene

2022
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