Electron transfer from a biotinylated electron donor to photochemically generated Ru(III) complexes covalently anchored to streptavidin is demonstrated by means of time-resolved laser spectroscopy. Through site-selective mutagenesis, a single cysteine residue was engineered at four different positions on streptavidin, and a Ru(II) tris-diimine complex was then bioconjugated to the exposed cysteines. A biotinylated triarylamine electron donor was added to the Ru(II)-modified streptavidins to afford dyads localized within a streptavidin host. The resulting systems were subjected to electron transfer studies. In some of the explored mutants, the phototriggered electron transfer between triarylamine and Ru(III) is complete within 10 ns, thus hi...
NOTICE: This is the peer reviewed version of the following article: Mosquera, J., Sánchez M. I., Mas...
Since its discovery in 1844, ruthenium has solidified its position as the most widely used transitio...
Photo-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpected...
A rigid rod-like organic molecular ensemble comprised of a triarylamine electron donor, a 2,2′-bipyr...
Ruthenium polypyridyl complexes which can sensitise the photo-oxidation of nucleic acids and other b...
Species integrity is warranted by the information that is carried by DNA. The diversity allowed by N...
A molecular pentad comprised of a central multielectron donor and two flanking photosensitizer-accep...
The synthesis of new dinuclear complexes containing linked RuII(dppz) and ReI(dppz) moieties is repo...
Stereoselectively labelled isotopomers of NAD(P)H are highly relevant for mechanistic studies of enz...
BACKGROUND: In order to perform selective CH functionalization upon visible light irradiation, Ru(II...
Recent advances in bioorthogonal catalysis promise to deliver new chemical tools for performing chem...
The unique photophysical properties of Ru(ii) polypyridyl complexes make them very attractive candid...
The development of photosynthetic systems is a growing field in chemistry with significant environme...
Since its discovery in 1844, ruthenium has solidified its position as the most widely used transitio...
Ruthenium(ii) and iridium(iii) bis(terpyridine) complexes were prepared with maleimide functionaliti...
NOTICE: This is the peer reviewed version of the following article: Mosquera, J., Sánchez M. I., Mas...
Since its discovery in 1844, ruthenium has solidified its position as the most widely used transitio...
Photo-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpected...
A rigid rod-like organic molecular ensemble comprised of a triarylamine electron donor, a 2,2′-bipyr...
Ruthenium polypyridyl complexes which can sensitise the photo-oxidation of nucleic acids and other b...
Species integrity is warranted by the information that is carried by DNA. The diversity allowed by N...
A molecular pentad comprised of a central multielectron donor and two flanking photosensitizer-accep...
The synthesis of new dinuclear complexes containing linked RuII(dppz) and ReI(dppz) moieties is repo...
Stereoselectively labelled isotopomers of NAD(P)H are highly relevant for mechanistic studies of enz...
BACKGROUND: In order to perform selective CH functionalization upon visible light irradiation, Ru(II...
Recent advances in bioorthogonal catalysis promise to deliver new chemical tools for performing chem...
The unique photophysical properties of Ru(ii) polypyridyl complexes make them very attractive candid...
The development of photosynthetic systems is a growing field in chemistry with significant environme...
Since its discovery in 1844, ruthenium has solidified its position as the most widely used transitio...
Ruthenium(ii) and iridium(iii) bis(terpyridine) complexes were prepared with maleimide functionaliti...
NOTICE: This is the peer reviewed version of the following article: Mosquera, J., Sánchez M. I., Mas...
Since its discovery in 1844, ruthenium has solidified its position as the most widely used transitio...
Photo-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpected...