Photo-oxidizing Ru II complexes and light: Targeting biomolecules via photoadditions (original) (raw)

Designing photoreactive Ruthenium(II) complexes for biomedical applications

Cecile Moucheron

2012

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Ruthenium (ii)[3+ 2+ 1] mixed ligand complexes: substituent effect on photolability, photooxidation of bases, photocytotoxicity and photonuclease activity

Sathyaraj G

Dalton Trans., 2012

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Photoinduced electron transfer between ruthenium complexes and nucleotides or DNA

Luc jacquet

Pure and Applied Chemistry, 1997

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Photophysics of Ru(II) Dyads Derived from Pyrenyl-Substitued Imidazo[4,5-f][1,10]Phenanthroline Ligands

Tariq Sainuddin

The journal of physical chemistry. A, 2015

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Aryl-Substituted Ruthenium(II) Complexes: A Strategy for Enhanced Photocleavage and Efficient DNA Binding

Edson Teixeira

Inorganic chemistry, 2017

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Synthesis and Photochemistry of Ru(II) Complexes Containing Phenanthroline-Based Ligands with Fused Pyrrole Rings

John Peter Paul Villegas

Inorganic Chemistry, 2002

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Synthesis and photophysical properties of ruthenium (II) complexes anchored to oligonucleotides

Pascal Dumy

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Influence of the Protonic State of an Imidazole-Containing Ligand on the Electrochemical and Photophysical Properties of a Ruthenium(II)–Polypyridine-Type Complex

Annamaria Quaranta, Fabien Lachaud, Winfried Leibl

Chemistry - A European Journal, 2007

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A Theoretical Investigation into the Photophysical Properties of Ruthenium Polypyridine-Type Complexes

Annamaria Quaranta, Winfried Leibl

Chemistry - A European Journal, 2006

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Photobiological Activity of Ru(II) Dyads Based on (Pyren-1-yl)ethynyl Derivatives of 1,10-Phenanthroline

Susan Monro

Inorganic Chemistry, 2010

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Photophysical, photochemical, and electrochemical properties of mononuclear and dinuclear ruthenium(II) complexes containing 2,2'-bipyridine and the 3,5-bis(pyridin-2-yl)-1,2,4-triazolate ion

Paola Ceroni

Inorganic Chemistry, 1989

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Synthesis, DNA-Binding and Photocleavage Studies of the Ruthenium(II) Complexes [Ru(phen)2(ppd)]2+ and [Ru(phen)(ppd)2]2+ (ppd=Pteridino[6,7-f] [1,10]phenanthroline-11,13(10H,12H)-dione, phen=1,10-Phenanthroline)

Vedavati G Puranik

Helvetica Chimica Acta, 2008

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A Tetranuclear Ruthenium(II) Complex Containing both Electron-Rich and Electron-Poor Bridging Ligands. Absorption Spectrum, Luminescence, Redox Behavior, and Intercomponent Energy Transfer

Gianfranco Denti

Inorganic Chemistry, 1996

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Intramolecular Electron Transfer from Mn or Ligand Phenolate to Photochemically Generated RuIII in Multinuclear Ru/Mn Complexes. Laser Flash Photolysis and EPR Studies on Photosystem II Models

Dirk Burdinski

Journal of the American Chemical Society, 1999

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Photochemical or Thermal Chelate Exchange in the Ruthenium Coordination Sphere of Complexes of the Ru(phen)2L Family (L = Diimine or Dinitrile Ligands)

Jean Pierre Sauvage

Inorganic Chemistry, 2002

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Photophysics of Dinuclear Ru(II) and Os(II) Complexes Based on the Tetrapyrido[3,2- a :2‘,3‘- c :3‘ ‘,2‘ ‘- h :2‘ ‘‘-3‘ ‘‘- j ]phenazine (tpphz) Bridging Ligand

Carlo Alberto Bignozzi

Inorganic Chemistry, 1999

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Synthesis and Photophysical Study of Ruthenium Complexes

Shyam Pokhrel

2015

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Photochemical reaction pathways of ruthenium(II) complexes. III. Metal-to-ligand charge-transfer excitation of the pentaamminepyridineruthenium(II) cation and related species

Donald Chaisson

Journal of the American Chemical Society, 1972

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DNA Photocleavage by a Supramolecular Ru(II)−Viologen Complex

Stefan Bossmann

Inorganic Chemistry, 2002

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Syntheses and Optical Properties of Azo-Functionalized Ruthenium Alkynyl Complexes

Mahbod Morshedi

ChemPlusChem, 2016

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Ruthenium(II) complexes of 3,6-bis(2-pyridyl)pyridazine: synthesis, characterization, and effect of the nonchromophoric ligands on the photophysical and photochemical properties

Gianfranco Denti

Inorganic Chemistry, 1989

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Redox, Spectroscopic, and Photophysical Properties of Ru-Pt Mixed-Metal Complexes Incorporating 4,7-Diphenyl-1,10-phenanthroline as Efficient DNA Binding and Photocleaving Agents

B. Winkel, Travis White

Inorganic Chemistry

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ROLE OF OXYGEN ON THE PHOTOINDUCED ELECTRON TRANSFERREACTIONS OF Ru(II) POLYPYRIDINE COMPLEXES WITH AROMATIC AMINES

Thangamuthu Rajendran

International Journal of Innovative Research in Science, Engineering and Technology, 2013

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Outer-sphere charge-transfer photochemistry of ruthenium(III) complexes: flash photolysis of Ru(NH3)5py3+/halide ion pairs

haim cohen

Inorganic Chemistry, 1984

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Tuning photophysical properties with ancillary ligands in Ru(II) mono-diimine complexes

Edward Rosenberg

Journal of Organometallic Chemistry, 2009

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Synthesis and Characterization of Ru(II) Complexes with π‐Expansive Imidazophen Ligands for the Photokilling of Human Melanoma Cells

Susan Monro

Photochemistry and Photobiology, 2020

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pH Control of photoreactivity of ruthenium(II) pyridyltriazole complexes: photoinduced linkage isomerism and photoanation

Renyi Wang

Journal of the American Chemical Society, 1992

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Axial ligand substitution and photoisomerization reactions in ruthenium (II) trans mixed-chelate complexes containing the ligands 1, 2-phenylenebis (dimethylarsine) and 2, 2′-bipyridine or 1, 10-phenanthroline

Simon Coles

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Photoinduced energy transfer between Re(I) and Ru(II) termini connected through a new exo-ditopic bis-phenanthroline ligand fused to a central macrocycle spacer: Synthesis, structure, and electrochemical and photophysical properties of a heterodinuclear complex

Harry Adams

Inorganica Chimica Acta, 2007

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Photoinduced ligand transformations in a ruthenium complex of dimethoxytetrapyridotetraazapentacene

David Boston

2010

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Enantiomeric Conformation Controls Rate and Yield of Photo-induced Electron Transfer in DNA Sensitized by Ru (II) Dipyridophenazine Complexes

Christine Cardin

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Photosubstitution Reactions of trans-Chloro(azine)(1,4,8,11-tetraazacyclotetradecane)ruthenium(II) Complexes1

Maristela Alves Silva

Inorganic Chemistry, 1997

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Intramolecular energy transfer in Ru(II)-Ru(II) and Ru(II)-Cr(III) polynuclear complexes

C. Chiorboli

Coordination Chemistry Reviews, 1990

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Near infra-red emitting Ru( ii ) complexes of tridentate ligands: electrochemical and photophysical consequences of a strong donor ligand with large bite angles

Sebastiano Campagna

Chem. Sci., 2014

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Synthesis, Structure, and Photophysical Properties of Novel Ruthenium(II) Carboxypyridine Type Complexes

Jerker Mårtensson

Inorganic Chemistry, 1997

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