This article provides a comprehensive exploration of regioselective C-H functionalization via photobiocatalysis, a cutting-edge synthetic strategy that merges the precision of enzymes with the mild activation power of light.
This article provides a comprehensive analysis of photobiocatalytic cofactor regeneration, a cutting-edge field merging photocatalysis with enzymatic synthesis.
This article provides a comprehensive overview of whole-cell photobiocatalysis using Escherichia coli, tailored for researchers, scientists, and drug development professionals.
This article provides a comprehensive review of the substrate scope of fatty acid photodecarboxylase (FAP), a light-activated enzyme with transformative potential in green chemistry and biotechnology.
This article provides a comprehensive guide for researchers and scientists on designing, optimizing, and validating TiO2-based photobiocatalytic systems.
This article provides researchers, scientists, and drug development professionals with a comprehensive overview of the transformative advances in protein engineering for creating new photoenzyme functions.
This article provides a comprehensive analysis of biocatalysis utilizing electronically excited (photobiocatalytic) states, a cutting-edge field merging enzymatic precision with photochemical energy.
Photobiocatalytic systems, which merge the light-harvesting capabilities of photocatalysts with the specificity of biological enzymes or whole cells, represent a promising frontier for sustainable hydrogen (H2) production[citation:1][citation:5].
Light-driven biocatalysis represents a paradigm shift for sustainable chemical synthesis, leveraging sunlight to regenerate the essential electron donor NADPH and power highly selective enzymes.
This article provides a comprehensive analysis of photobiocatalysis as a transformative green chemistry strategy for researchers, scientists, and drug development professionals.