Discover how Lhcb5 protein acts as a molecular sunscreen in plants, protecting them from excess light through chromophores and aggregation-dependent energy quenching.
Discover the antimicrobial crinane-type alkaloids found in Crinum latifolium bulbs and their potential to combat antibiotic resistance.
Discover how Dy³⁺ ions in zinc bismuth borate glasses are revolutionizing white light technology through advanced luminescent materials.
Explore the fascinating synthesis and characterization of nickel and copper complexes with the P-BrPAI ligand in modern coordination chemistry.
Discover how scientists are turning to plants to find new medicines and combat antibiotic resistance through cutting-edge phytopharmacology research.
Explore the structural and spectroscopic analysis of diethyl 3,3′-(ethane-1,2-diylbis(azanediyl))bis(but-2-enoate) and its significance in materials science.
Explore how atomic layer deposition (ALD) precursors are revolutionizing technology through atomic-scale precision in semiconductor manufacturing and materials science.
Discover the potent antibacterial cyclic hexapeptides from Streptomyces alboflavus 313 and their promising activity against MRSA and other resistant bacteria.
Explore the engineering of nitrogen-rich energetic salts through crystal growth, structural analysis, and computational chemistry for advanced materials.
Explore how molecular probes revolutionize temperature measurement in microfluidic devices through luminescent thermometry techniques and nanoparticle applications.