110 resultats trouvés
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A μ-oxo diiron complex of a new binucleating tetrapyridyl ligand.,
, Inorganica Chim. Acta, Volume 282, Number 2, p.243–246, (1998)
Visible-Light-Driven Generation of High-Valent Oxo-Bridged Dinuclear and Tetranuclear Manganese Terpyridine Entities Linked to Photoactive Ruthenium Units of Relevance to Photosystem II.,
, Eur. J. Inorg. Chem., Volume 2012, Number 33, p.5485–5499, (2012)
Visible Light-Driven Electron Transfer from a Dye-Sensitized p-Type NiO Photocathode to a Molecular Catalyst in Solution: Toward NiO-Based Photoelectrochemical Devices for Solar Hydrogen Production.,
, J. Phys. Chem. C, Volume 119, Number 11, p.5806–5818, (2015)
An unusual stable mononuclear MnIII bis-terpyridine complex exhibiting Jahn-Teller compression: electrochemical synthesis, physical characterisation and theoretical study.,
, Chem. - A Eur. J., Volume 15, Number 4, p.980–988, (2009)
Understanding the Zero-Field Splitting of Mononuclear Manganese(II) Complexes from Combined EPR Spectroscopy and Quantum Chemistry.,
, Appl. Magn. Reson., Volume 37, Number 1-4, p.229–245, (2009)
Two New Terpyridine Dimanganese Complexes: A Manganese(III,III) Complex with a Single Unsupported Oxo Bridge and a Manganese(III,IV) Complex with a Dioxo Bridge. Synthesis, Structure, and Redox Properties.,
, Inorg. Chem., Volume 41, Number 6, p.1404–1411, (2002)
Trinuclear Terpyridine Frustrated Spin System with a MnIV3O4 Core: Synthesis, Physical Characterization, and Quantum Chemical Modeling of Its Magnetic Properties.,
, Inorg. Chem., Volume 48, Number 21, p.10281–10288, (2009)
Tetranuclear polypyridyl complexes of RuII and FeII: Synthesis, electrochemical, photophysical and photochemical behaviour.,
, Eur. J. Inorg. Chem., Number 16, p.3320–3330, (2005)
Tetranuclear polybipyridyl complexes of RuII and MnII, their electro- and photoinduced transformation into di-$μ$-oxo MnIIIMnIV hexanuclear complexes.,
, Dalt. Trans., Number 48, p.5691–5702, (2006)
Systematic Theoretical Study of the Zero-Field Splitting in Coordination Complexes of Mn(III). Density Functional Theory versus Multireference Wave Function Approaches.,
, J. Phys. Chem. A, Volume 114, Number 39, p.10750–10758, (2010)
Synthesis, structure, spectroscopy and reactivity of new heterotrinuclear water oxidation catalysts.,
, Chem. Sci., Volume 7, Number 5, p.3304–3312, (2016)
Synthesis, Characterization, and Photocatalytic H2-Evolving Activity of a Family of [Co(N4Py)(X)]n+ Complexes in Aqueous Solution.,
, Inorg. Chem., Volume 55, Number 9, p.4564–4581, (2016)
Synthesis and structural characterization of five-, six-, and seven-coordinate mononuclear manganese(II) complexes with N-tridentate ligands.,
, Inorganica Chim. Acta, Volume 357, Number 12, p.3430–3436, (2004)
Synthesis and properties of trinuclear polypyridyl complexes Ru(II)-Co(II)-Ru(II) and Ru(II)-Co(III)-Ru(II): Their photoinduced interconversion.,
, Inorganica Chim. Acta, Volume 363, Number 1, p.234–242, (2009)
{{Synthesis and characterization of a new kind of Mn2III,IV $μ$-oxo complex: [Mn2O2(terpy)2(H2O)2](NO3)3·6 H2O,
, New J. Chem., Volume 23, Number 4, p.351–354, (1999)
Sulfide oxidation by hydrogen peroxide catalyzed by iron complexes: two metal centers are better than one.,
, Chem. - A Eur. J., Volume 8, Number 5, p.1196–1204, (2002)
Structural, spectroscopic and redox properties of a mononuclear CoII thiolate complex - the reactivity toward S-alkylation: an experimental and theoretical study.,
, Dalt. Trans., Volume 41, Number 40, p.12586–12594, (2012)
Structural Characterization and Electronic Properties Determination by High-Field and High-Frequency EPR of a Series of Five-Coordinated Mn(II) Complexes.,
, Inorg. Chem., Volume 43, Number 20, p.6455–6463, (2004)
Spectroelectrochemical behavior of poly(3-octylthiophene): application to electrochromic windows with polyaniline and iridium oxide.,
, J. Appl. Electrochem., Volume 24, Number 1, p.72–77, (1994)
Seven Reversible Redox Processes in a Self-Assembled Cobalt Pentanuclear Bis(triple-stranded helicate): Structural, Spectroscopic, and Magnetic Characterizations in the CoICoII4, CoII5, and CoII3CoIII2 Redox States,
, Inorganic Chemistry, Volume 59, p.9196-9205, (2020)
Self-Assembled Heterometallic Complexes by Incorporation of Calcium or Strontium Ion into a Manganese(II) 12-Metallacrown-3 Framework Supported by a Tripodal Ligand with Pyridine-Carboxylate Motifs: Stability in Their Manganese(III) Oxidized Form,
, Inorganic Chemistry, Volume 60, p.7922-7936, (2021)
[RhIII(dmbpy)2Cl2]+ as a Highly Efficient Catalyst for Visible-Light-Driven Hydrogen Production in Pure Water: Comparison with Other Rhodium Catalysts.,
, Chem. - A Eur. J., Volume 19, Number 2, p.782–792, (2013)
Reversible Apical Coordination of Imidazole between the Ni(III) and Ni(II) Oxidation States of a Dithiolate Complex: A Process Related to the Ni Superoxide Dismutase.,
, Inorg. Chem., Volume 49, Number 14, p.6399–6401, (2010)
Redox-induced $μ$-acetato and $μ$-oxo core interconversions in dinuclear manganese tris(2-pyridylmethyl)amine (tpa) complexes: isolation and characterization of [Mn2III($μ$-O)($μ$-O2CCH3)(tpa)2]3+.,
, Eur. J. Inorg. Chem., Number 20, p.3179–3187, (2007)
Recent results on polyanilines, electrochemistry, EPR-substituted derivatives, applications, displays, etc.,
, Synth. Met., Volume 43, Number 1-2, p.2847–2852, (1991)
Photoredox vs. energy transfer in a Ru(ii)-Fe(ii) supramolecular complex built with an heteroditopic bipyridine-terpyridine ligand.,
, Dalt. Trans., Number 5, p.658–666, (2008)
Photo-induced redox catalysis for proton reduction to hydrogen with homogeneous molecular systems using rhodium-based catalysts.,
, Coord. Chem. Rev., Volume 304-305, p.20–37, (2015)
Photoinduced oxidation of [Mn(L)3]2+ and [Mn2O2(L)4]3+ (L = 2,2'-bipyridine and 4,4'-dimethyl-2,2'-bipyridine) with the [Ru(bpy)3]2+/-aryl diazonium salt system.,
, Phys. Chem. Chem. Phys., Volume 7, Number 1, p.202–210, (2005)
Photoinduced energy and electron transfer processes in heteropolynuclear polypyridyl complexes of Ru(II) and Fe(II).,
, Phys. Chem. Chem. Phys., Volume 5, Number 12, p.2520–2527, (2003)
Photoinduced Catalysis of Redox Reactions. Turnover Numbers, Turnover Frequency, and Limiting Processes: Kinetic Analysis and Application to Light-Driven Hydrogen Production,
, ACS Catalysis, Volume 12, p.6246-6254, (2022)
Photochemical reactivity of [RuII(L)(CO)2Cl2] and [Me4N] [RuII(L)(CO)Cl3] (L = 2,2'-bipyridine or 4,4'-di(isopropoxycarbonyl)-2,2'-bipyridine) in acetonitrile and the redox properties of the resulting new complexes.,
, J. Organomet. Chem., Volume 444, Number 1-2, p.191–198, (1993)
Origin of the Zero-Field Splitting in Mononuclear Octahedral Dihalide MnII Complexes: An Investigation by Multifrequency High-Field Electron Paramagnetic Resonance and Density Functional Theory.,
, Inorg. Chem., Volume 46, Number 12, p.4905–4916, (2007)
Organometallic color chemistry: studies on [FcCH=CHC5H4NCH2C6H4(tBu)]X (X = BPh4-, ClO4-).,
, J. Organomet. Chem., Volume 608, Number 1-2, p.146–152, (2000)
A novel dimanganese(II) complex with two chloride bridges - A two-electron oxidation system.,
, Eur. J. Inorg. Chem., Number 1, p.69–72, (2001)
Nickel oxide-polypyrrole nanocomposite electrode materials for electrocatalytic water oxidation.,
, Catal. Sci. Technol., Volume 8, Number 16, p.4030–4043, (2018)
New Linear High-Valent Tetranuclear Manganese-Oxo Cluster Relevant to the Oxygen-Evolving Complex of Photosystem II with Oxo, Hydroxo, and Aqua Coordinated to a Single Mn(IV).,
, Inorg. Chem., Volume 44, Number 25, p.9567–9573, (2005)
Multireversible Redox Processes in Pentanuclear Bis(Triple-Helical) Manganese Complexes Featuring an Oxo-Centered triangular \MnII2MnIII($μ$3-O)\}5+ or \MnIIMnIII2($μ$3-O)\}6+ Core Wrapped by Two \MnII2(bpp)3\}-.},
, Inorg. Chem., Volume 50, Number 17, p.8427–8436, (2011)
Multireversible Redox Processes in a Self-Assembled Nickel Pentanuclear Bis(Triple-stranded Helicate): Structural and Spectroscopic Characterizations in the NiII5 and NiINiII4 Redox States,
, ChemElectroChem, Volume 8, p.2912-2920, (2021)
Multifrequency high-field EPR investigation of a mononuclear manganese(iv) complex.,
, Chem. Commun. (Cambridge, United Kingdom), Number 19, p.2715–2717, (2009)
A multifrequency high-field EPR (9-285GHz) investigation of a series of dichloride mononuclear penta-coordinated Mn(II) complexes.,
, Inorganica Chim. Acta, Volume 359, Number 5, p.1541–1548, (2006)
Mononuclear MnIII and MnIV Bis-terpyridine Complexes: Electrochemical Formation and Spectroscopic Characterizations.,
, Inorg. Chem., Volume 48, Number 7, p.3125–3131, (2009)
Mn(II) complexes containing the polypyridylic chiral ligand (-)-pineno[5,6]bipyridine. Catalysts for oxidation reactions.,
, Dalt. Trans., Number 38, p.8117–8126, (2009)
Manganese(II) based oxidation of alkanes: generation of a high valent binuclear catalyst in situ.,
, J. Chem. Soc. Chem. Commun., Number 16, p.1885–1886, (1994)
Manganese-calcium/strontium heterometallic compounds and their relevance for the oxygen-evolving center of photosystem II.,
, Coord. Chem. Rev., Volume 319, p.1–24, (2016)
Manganese K-Edge X-Ray Absorption Spectroscopy as a Probe of the Metal-Ligand Interactions in Coordination Compounds.,
, Inorg. Chem., Volume 51, Number 1, p.680–687, (2012)
Manganese K$\beta$ X-ray Emission Spectroscopy As a Probe of Metal-Ligand Interactions.,
, Inorg. Chem., Volume 50, Number 17, p.8397–8409, (2011)
Manganese: inorganic & coordination chemistry.},
, Encycl. Inorg. Bioinorg. Chem., (2011)
Long-Lived Charge Separated State in NiO-Based p-Type Dye-Sensitized Solar Cells with Simple Cyclometalated Iridium Complexes.,
, J. Phys. Chem. Lett., Volume 5, Number 13, p.2254–2258, (2014)
Investigation of the Zero-Field Splitting in Six- and Seven-Coordinate Mononuclear MnII Complexes with N/O-Based Ligands by Combining EPR Spectroscopy and Quantum Chemistry.,
, Eur. J. Inorg. Chem., Number 23, p.3658–3665, (2010)
Investigation of a neat versus magnetically diluted powdered mononuclear MnII complex by high-field and high-frequency EPR spectroscopy.,
, Eur. J. Inorg. Chem., Number 19, p.3880–3886, (2004)
Intramolecular Electron Transfers Thwart Bistability in a Pentanuclear Iron Complex.,
, Inorg. Chem., Volume 55, Number 18, p.9178–9186, (2016)
Influence of Mixed Thiolate/Thioether versus Dithiolate Coordination on the Accessibility of the Uncommon +I and +III Oxidation States for the Nickel Ion: An Experimental and Computational Study.,
, Inorg. Chem., Volume 50, Number 8, p.3707–3716, (2011)
Hybrid photoanodes for water oxidation combining a molecular photosensitizer with a metal oxide oxygen-evolving catalyst,
, Sustainable Energy Fuels, Volume 4, p.31-49, (2020)
How Accurately Can Extended X-ray Absorption Spectra Be Predicted from First Principles? Implications for Modeling the Oxygen-Evolving Complex in Photosystem II.,
, J. Am. Chem. Soc., Volume 137, Number 40, p.12815–12834, (2015)
High-spin chloro mononuclear MnIII complexes: a multifrequency high-field EPR study.,
, ChemPhysChem, Volume 6, Number 3, p.541–546, (2005)
High-Frequency EPR Study of a New Mononuclear Manganese(III) Complex: [(terpy)Mn(N3)3] (terpy = 2,2':6',2''-Terpyridine).,
, Inorg. Chem., Volume 40, Number 7, p.1698–1703, (2001)
A High-Frequency and High-Field EPR Study of New Azide and Fluoride Mononuclear Mn(III) Complexes.,
, J. Am. Chem. Soc., Volume 125, Number 40, p.12337–12344, (2003)
High-field EPR investigation of a series of mononuclear Mn(II) complexes doped into Zn(II) hosts.,
, Polyhedron, Volume 26, Number 18, p.5243–5249, (2007)
A Fully Delocalized Mixed-Valence Bis-$μ$(Thiolato) Dicopper Complex: A Structural and Functional Model of the Biological CuA Center.,
, Angew. Chemie, Int. Ed., Volume 50, Number 25, p.5662–5666, S5662/1–S5662/16, (2011)
Formation of Polymeric [\Ru0(bpy)(CO)2\}n] Films by Electrochemical Reduction of [Ru(bpy)2(CO)2](PF6)2: Its Implication in CO2 Electrocatalytic Reduction.},
, Inorg. Chem., Volume 33, Number 19, p.4410–4412, (1994)
Factors influencing mononuclear versus multinuclear coordination in a series of potentially hexadentate acyclic N6 ligands: the roles of flexibility and chelate ring size.,
, Dalt. Trans., Volume 40, Number 45, p.12075–12082, (2011)
Experimental and Computational Investigation of Thiolate Alkylation in NiII and ZnII Complexes: Role of the Metal on the Sulfur Nucleophilicity.,
, Inorg. Chem., Volume 50, Number 20, p.10047–10055, (2011)
Excited-state spectroscopic investigations of multinuclear complexes based on [Ru(bpy)3]2+ moieties connected to 2,2'-bipyridine and 2,2';6',2''-terpyridine ligands.,
, Dalt. Trans., Volume 42, Number 47, p.16527–16537, (2013)
EPR and magnetic properties of [Mn($μ$-Cl)2(bpy)]n: An unusual ferromagnetic interaction in a Mn(II) chloro-bridged polymer.,
, Inorganica Chim. Acta, Volume 358, Number 15, p.4459–4465, (2005)
Electrophotocatalysis: Cyclic Voltammetry as an Analytical Tool,
, The Journal of Physical Chemistry Letters, Volume 11, p.6097-6104, (2020)
Electrodes modified by polymeric films containing oxo manganese clusters.,
, J. Electroanal. Chem., Volume 391, Number 1-2, p.211–214, (1995)
Electrochemistry of cis-diaquo ruthenium(II) complexes with substituted 2,2'-bipyridine ligands in a non-coordinating solvent. Application to the elaboration of corresponding functionalized polypyrrole films.,
, J. Electroanal. Chem., Volume 410, Number 1, p.21–29, (1996)
Electrochemical properties of [MnIII(terpy)(N3)3] (terpy = 2,2':6',2''-terpyridine) in CH3CN. Electrogeneration of dimanganese(II) di-$μ$-azido and dimanganese(IV) di-$μ$-oxo complexes.,
, J. Electroanal. Chem., Volume 506, Number 2, p.99–105, (2001)
Electrochemical properties of [FeIII(L)2Cl2][PF6] and [Fe2III,IIIO(L)4Cl2][PF6]2 [L = 2,2'-bipyridine (bpy) and 4,4'-dimethyl-2,2'-bipyridine (dmbpy)]. Crystal structures of the dmbpy derivatives.,
, New J. Chem., Volume 23, Number 7, p.785–790, (1999)
Electrochemical Properties of a Rhodium(III) Mono-Terpyridyl Complex and Use as a Catalyst for Light-Driven Hydrogen Evolution in Water,
, Molecules, Volume 27, (2022)
Electrochemical preparation and properties of poly-cis-[\RuIII(L)2(OH2)\}2O]4+ (L=pyrrole-substituted-2,2'-bipyridine) modified electrodes. Their electroinduced transformations into poly-cis-[RuII(L)2(H2O)2]2+ and poly-cis-[RuII(L)2(CH3CN)2]2+ films,
, J. Electroanal. Chem., Volume 520, Number 1-2, p.150–156, (2002)
Electrochemical Generation and Spectroscopic Characterization of the Key Rhodium(III) Hydride Intermediates of Rhodium Poly(bipyridyl) H2-Evolving Catalysts,
, Inorganic Chemistry, Volume 57, p.11225-11239, (2018)
Electrochemical formation of bi- versus tetranuclear $μ$-oxo terpyridine manganese complexes in CH3CN. Influence of the terpyridine substituents.,
, Inorganica Chim. Acta, Volume 374, Number 1, p.187–196, (2011)
Electrochemical elaboration of thin films of poly[RuII(L)(CO)2Cl2] (L = 4-(2-pyrrol-1-ylethyl)-4'-methyl-2,2'-bipyridine or 4,4'-bis((3-pyrrol-1-ylpropyloxy)carbonyl)-2,2'-bipyridine): photochemical properties and photoimaging.,
, J. Phys. Chem., Volume 97, Number 22, p.5973–5979, (1993)
Electrochemical characterization of [RuII(bpy)(CO)2Cl2] (bpy = 2,2'-bipyridine). Isolation of a new complex: [RuII(bpy)(CO)Cl2][Me4N].,
, J. Electroanal. Chem. Interfacial Electrochem., Volume 319, Number 1-2, p.347–353, (1991)
Electrochemical behaviour of interaction between Fe2+ with bisbipyridyl ligands in CH3CN. Application to an easy electrochemical procedure for tailoring films of Fe(bpy)32+ like cores (bpy = 2,2'-bipyridine).,
, New J. Chem., Volume 32, Number 7, p.1117–1123, (2008)
Electrochemical behavior of [RuII(L)(CO)2Cl2], [RuII(L)(CO)Cl3][Me4N] and [RuII(L)(CO)2(CH3CN)2][CF3SO3]2 complexes (L = 2,2'-bipyridine or 4,4'-isopropoxycarbonyl-2,2'-bipyridine).,
, J. Electroanal. Chem., Volume 350, Number 1-2, p.43–55, (1993)
Electrochemical and Chemical Formation of [Mn4IVO5(terpy)4(H2O)2]6+, in Relation with the Photosystem II Oxygen-Evolving Center Model [Mn2III,IVO2(terpy)2(H2O)2]3+.,
, J. Am. Chem. Soc., Volume 127, Number 39, p.13694–13704, (2005)
Electrocatalytic reduction of CO2 in water on a polymeric [\Ru0(bpy)(CO)2\}n] (bpy = 2,2'-bipyridine) complex immobilized on carbon electrodes.},
, J. Chem. Soc. Chem. Commun., Number 2, p.189–191, (1994)
Electrocatalytic Reduction of Carbon Dioxide with Mono(bipyridine)carbonylruthenium Complexes in Solution or as Polymeric Thin Films.,
, Inorg. Chem., Volume 33, Number 13, p.2961–2967, (1994)
Electro- and Photoinduced Formation and Transformation of Oxido-Bridged Multinuclear Mn Complexes.,
, Eur. J. Inorg. Chem., Number 14, p.2025–2046, (2009)
An efficient RuII-RhIII-RuII polypyridyl photocatalyst for visible-light-driven hydrogen production in aqueous solution.,
, Angew. Chemie, Int. Ed., Volume 53, Number 6, p.1654–1658, (2014)
Efficient photocatalytic hydrogen production in water using a cobalt(III) tetraaza-macrocyclic catalyst: electrochemical generation of the low-valent Co(I) species and its reactivity toward proton reduction.,
, Phys. Chem. Chem. Phys., Volume 15, Number 40, p.17544–17552, (2013)
Efficient and limiting reactions in aqueous light-induced hydrogen evolution systems using molecular catalysts and quantum dots.,
, J. Am. Chem. Soc., Volume 136, Number 21, p.7655–7661, (2014)
An easy electrochemical procedure for tailoring thin films containing the [Fe(bpy)2(CH3CN)2]2+ and/or [Fe(bpy)3]2+-like cores (bpy=2,2'-bipyridine). Application to the design of a modified electrode with a supramolecular structure.,
, Electrochem. commun., Volume 3, Number 12, p.686–691, (2001)
Di($μ$-oxo) Binuclear Manganese(III,IV) Poly(bipyridyl) Complexes Bearing Four Ruthenium(II) Photoactive Units: Synthesis, Characterization, and Photoinduced Electron-Transfer Properties.,
, Inorg. Chem., Volume 46, Number 7, p.2735–2743, (2007)
A Dinuclear Manganese(II) Complex with the \Mn2($μ$-O2CCH3)3\}+ Core: Synthesis, Structure, Characterization, Electroinduced Transformation, and Catalase-like Activity.},
, Inorg. Chem., Volume 41, Number 7, p.1795–1806, (2002)
Definition of magneto-structural correlations for the MnII ion.,
, Chem. - A Eur. J., Volume 14, Number 21, p.6498–6509, (2008)
A copper thiolate centre for electron transfer: mononuclear vs. dinuclear complexes.,
, Dalt. Trans., Volume 41, Number 11, p.3130–3133, (2012)
A computational mechanistic investigation of hydrogen production in water using the [RhIII(dmbpy)2Cl2]+/[RuII(bpy)3]2+/ascorbic acid photocatalytic system.,
, Phys. Chem. Chem. Phys., Volume 17, Number 16, p.10497–10509, (2015)
A combined high-field EPR and quantum chemical study on a weakly ferromagnetically coupled dinuclear Mn(III) complex. A complete analysis of the EPR spectrum beyond the strong coupling limit.,
, Phys. Chem. Chem. Phys., Volume 15, Number 1, p.223–234, (2013)
Cobalt(III) tetraaza-macrocyclic complexes as efficient catalyst for photoinduced hydrogen production in water: Theoretical investigation of the electronic structure of the reduced species and mechanistic insight.,
, J. Photochem. Photobiol. B Biol., Volume 152, Number Part{\_}A, p.82–94, (2015)
Cobalt(II) Pentaaza-Macrocyclic Schiff Base Complex as Catalyst for Light-Driven Hydrogen Evolution in Water: Electrochemical Generation and Theoretical Investigation of the One-Electron Reduced Species,
, Inorganic Chemistry, Volume 58, p.9043-9056, (2019)
A cobalt oxide–polypyrrole nanocomposite as an efficient and stable electrode material for electrocatalytic water oxidation,
, Sustainable Energy & Fuels, Volume 5, Issue 18, (2021)
A cobalt oxide–polypyrrole nanocomposite as an efficient and stable electrode material for electrocatalytic water oxidation,
, Sustainable Energy Fuels, Volume 5, p.4710-4723, (2021)
{{Chemical and electrochemical generation of [Fe(bpy)2(S)2]2+ (bpy = 2,2'-bipyridine,
, New J. Chem., Volume 24, Number 6, p.455–461, (2000)
Challenging the [Ru(bpy)3]2+ Photosensitizer with a Triazatriangulenium Robust Organic Dye for Visible-Light-Driven Hydrogen Production in Water.,
, ACS Catal., Volume 8, Number 5, p.3792–3802, (2018)
Challenging the [Ru(bpy)3]2+ Photosensitizer with a Triazatriangulenium Robust Organic Dye for Visible-Light-Driven Hydrogen Production in Water,
, ACS Catalysis, Volume 8, p.3792-3802, (2018)
Catalytic light-triggered reduction promoted by a dithienylethene derivative,
, Chemistry – A European Journal, Volume 26, (2020)
Catalytic activity of chloro and triflate manganese(II) complexes in epoxidation reactions. Reusable catalytic systems for alkene epoxidation.,
, Eur. J. Inorg. Chem., Volume 2014, Number 16, p.2663–2670, (2014)
Carboxylate ligands drastically enhance the rates of oxo exchange and hydrogen peroxide disproportionation by oxo manganese compounds of potential biological significance.,
, Chem. - A Eur. J., Volume 14, Number 10, p.3013–3025, (2008)
Carbon dioxide-reducing cathode.,
, Number GB 1997-7923, (1997)
Calcium and heterometallic manganese-calcium complexes supported by tripodal pyridine-carboxylate ligands: structural, EPR and theoretical investigations.,
, Dalt. Trans., Volume 44, Number 28, p.12757–12770, (2015)
Cadmium-free CuInS2/ZnS quantum dots as efficient and robust photosensitizers in combination with a molecular catalyst for visible light-driven H2 production in water,
, Energy Environ. Sci., (2018)
Ca K-Edge XAS as a Probe of Calcium Centers in Complex Systems.,
, Inorg. Chem., Volume 54, Number 4, p.1283–1292, (2015)
Biologically relevant mono- and di-nuclear manganese II/III/IV complexes of mononegative pentadentate ligands.,
, Dalt. Trans., Number 9, p.1765–1772, (2003)
A Bio-Inspired Switch Based on Cobalt(II) Disulfide/Cobalt(III) Thiolate Interconversion.,
, Angew. Chemie, Int. Ed., Volume 53, Number 21, p.5318–5321, (2014)
Binuclear Manganese Compounds of Potential Biological Significance. Part 2. Mechanistic Study of Hydrogen Peroxide Disproportionation by Dimanganese Complexes: The Two Oxygen Atoms of the Peroxide End up in a Dioxo Intermediate.,
, Inorg. Chem., Volume 42, Number 16, p.4817–4827, (2003)
Alternated bimetallic [Ru-M] (M = Fe2+, Zn2+) coordination polymers based on [Ru(bpy)3]2+ units connected to bis-terpyridine ligands: synthesis, electrochemistry and photophysics in solution or in thin film on electrodes.,
, J. Mater. Chem. C Mater. Opt. Electron. Devices, Volume 2, Number 46, p.9824–9835, (2014)