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Angewandte Chemie (International ed.), ISSN 1433-7851, 2019, Volume 58, Issue 30, pp. 10225 - 10229
While copper nitrosyl complexes are implicated in numerous biological systems, isolable examples remain limited... 
copper | nitrite reduction | nitrosyl | reductive nitrosylation | electronic structure | Copper compounds | Nitric oxide | Thiols | Amines | Chlorides | X-ray diffraction | Coordination compounds | Dichlorides | Copper | Nucleophiles | Alcohols
Journal Article
Dalton Transactions, ISSN 1477-9226, 5/2012, Volume 41, Issue 24, pp. 7327 - 7339
Ruthenium complexes including nitrosyl or nitrite complexes are particularly interesting because they can not only scavenge but also release nitric oxide in a controlled manner, regulating the NO-level in vivo... 
ENERGY-PARTITIONING ANALYSIS | OPTICAL DISPERSION | POLYATOMIC-MOLECULES | DEGENERATE ELECTRONIC STATES | RELAXING FACTOR | TRANSPARENT MOLECULAR SYSTEMS | NITRIC-OXIDE DONORS | CYCLAM COMPLEXES | TRANSITION-METAL NITROSYL | THERAPEUTIC APPROACH | CHEMISTRY, INORGANIC & NUCLEAR | Nitrosyls | Surgical implants | Reduction | Electronic structure | Ruthenium | Ligands | Biological | Bonding
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 2014, Volume 136, Issue 36, pp. 12560 - 12563
.... However, the fleeting nature of HNO requires the design of donor molecules. Metal nitrosyl (MNO) complexes could serve as potential HNO donors... 
LIGANDS | NITROXYL HNO | NITRIC-OXIDE SYNTHASE | PORPHYRINS | BIOLOGY | CHEMISTRY | POROUS ORGANIC HOSTS | COBALT(III) | NITROSYL COMPLEXES | CHEMISTRY, MULTIDISCIPLINARY | Protons | Stoichiometry | Chemical reactions | Structure | Analysis
Journal Article
Journal Article
Journal of the American Chemical Society, ISSN 0002-7863, 1900, Volume 137, Issue 13, pp. 4284 - 4287
New CoIII–nitrosyl complexes bearing N-tetramethylated cyclam (TMC) ligands, [(12-TMC)­CoIII(NO)]2+ (1) and [(13-TMC)­CoIII(NO)]2+ (2), were synthesized via... 
OXYGEN | COBALT NITROSYL COMPLEXES | PEROXYNITRITE | CHEMISTRY | REACTIVITY | INTERMEDIATE | COPPER | TYROSINE NITRATION | CHEMISTRY, MULTIDISCIPLINARY | NITRIC-OXIDE DIOXYGENASE | AQUEOUS-SOLUTION | Models, Molecular | Molecular Conformation | Cobalt - chemistry | Nitrogen Oxides - chemistry | Superoxides - chemistry
Journal Article
Chemistry : a European journal, ISSN 0947-6539, 2016, Volume 22, Issue 8, pp. 2801 - 2811
...–arene complexes, namely [(η6‐p‐cym)Ru(bpy)(m‐CCH‐Py)][(PF)6]2 (1) and [(η6‐p‐cym)Ru(bpm)(m‐CCH‐Py)][(PF)6]2 (2; p‐cym=p‐cymene, bpy=2,2′‐bipyridine, bpm=2,2′‐bipyrimidine, and m‐CCH‐Py=3‐ethynylpyridine), is described and discussed... 
ruthenium | upconversion | nanoparticles | near-infrared radiation | photoactivation | MOLECULAR CALCULATIONS | PHOTODYNAMIC THERAPY | CHEMISTRY, MULTIDISCIPLINARY | DELIVERY | UP-CONVERSION LUMINESCENCE | VISIBLE-LIGHT | RUTHENIUM NITROSYLS | EXCITATION-ENERGIES | DNA | DENSITY-FUNCTIONAL THEORY | METAL-COMPLEXES | Nanoparticles | Analysis | Phosphonates | Ligands | Thulium | Photoactivation | Cymene | Guanosine | X-ray diffraction | Chemical synthesis | Deoxyribonucleic acid--DNA | Diffraction | Mathematical analysis | Guanosines | Esters | Excitation
Journal Article
Angewandte Chemie (International ed.), ISSN 1433-7851, 2018, Volume 57, Issue 41, pp. 13465 - 13469
A nonheme {FeNO}6 complex, [Fe(NO)(N3PyS)]2+, was synthesized by reversible, one... 
iron | sulfur | nonheme complexes | photolysis | nitrosyl ligands | Sulfur compounds | Photolysis | Sulfur | Analysis | Oxidation | Nuclear magnetic resonance--NMR | nonheme | nitrosyl
Journal Article
Chemistry : a European journal, ISSN 0947-6539, 2015, Volume 21, Issue 45, pp. 16035 - 16046
... of the {Fe(NO)2}10 DNIC [(NO)2Fe(S(CH2)2S)]2− (2) generates the dinuclear {Fe(NO)2}9–{Fe(NO)2}9 complex [(NO)2Fe(μ‐SC2H4S)2Fe(NO)2]2− (3) bridged by two terminal... 
chelates | dinitrosyl iron complexes | nitric oxide | bioinorganic chemistry | HYDROGEN GENERATION | X-RAY-ABSORPTION | K-EDGE | NITROSYL COMPLEXES | CHEMISTRY, MULTIDISCIPLINARY | WAVE-FUNCTIONS | (FE(NO)) DNICS | IRON COMPLEXES | NITRIC-OXIDE | SPECTROSCOPIC CHARACTERIZATION | CHEMICAL VALENCE | Ligands | Oxidation | Backbone | Chelating | Charge | Transformations | Bonding | Electrode potentials
Journal Article