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Retinal−Salinixanthin Interactions in Xanthorodopsin: A Circular Dichroism (CD) Spectroscopy Study with Artificial Pigments
American Chemical Society | 2009| -
What Can We Learn from Protein-Based Electron Transport Junctions?
Free accessAmerican Chemical Society | 2021| -
Light-Induced Conformational Alterations in Heliorhodopsin Triggered by the Retinal Excited State
Free accessAmerican Chemical Society | 2021| -
Protein conformational alterations induced by the retinal excited state in proton and sodium pumping rhodopsins
Royal Society of Chemistry | 2019| -
Correction to Retinal−Salinixanthin Interactions in Xanthorodopsin: A Circular Dichroism (CD) Spectroscopy Study with Artificial Pigments
American Chemical Society | 2009| -
Retinal β‑Ionone Ring–Salinixanthin Interactions in Xanthorhodopsin: A Study Using Artificial Pigments
American Chemical Society | 2013| -
Alteration of pKa of the bacteriorhodopsin protonated Schiff base. A study with model compounds
National licenceAmerican Chemical Society | 1986| -
Model compounds for the study of spectroscopic properties of visual pigments and bacteriorhodopsin
National licenceAmerican Chemical Society | 1985| -
Doping Human Serum Albumin with Retinoate Markedly Enhances Electron Transport Across the Protein
Free accessArXiv | 2012| -
Doping Human Serum Albumin with Retinoate Markedly Enhances Electron Transport across the Protein
American Chemical Society | 2012| -
Electron Transport via Cytochrome C on Si–H Surfaces: Roles of Fe and Heme
American Chemical Society | 2013| -
Solid-State Electron Transport across Azurin: From a Temperature-Independent to a Temperature-Activated Mechanism
American Chemical Society | 2011|
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