2022
Revealing the Structure of Single Cobalt Sites in Carbon Nitride for Photocatalytic CO2 Reduction
Huang P, Huang J, Li J, Pham T, Zhang L, He J, Brudvig G, Deskins N, Frenkel A, Li G. Revealing the Structure of Single Cobalt Sites in Carbon Nitride for Photocatalytic CO2 Reduction. The Journal Of Physical Chemistry C 2022, 126: 8596-8604. DOI: 10.1021/acs.jpcc.2c01216.Peer-Reviewed Original ResearchPhotocatalytic CO2 reductionSingle CO2CO2 reductionCarbon nitrideX-ray absorption spectroscopyCo-N bond lengthsImproved catalytic propertiesSingle Cobalt SitesMode of coordinationMore edge sitesGraphitic carbon nitrideObserved enhancement effectMetal centerCatalytic propertiesC3N4 materialsAbsorption spectroscopyBond lengthsSpectroscopic toolsPhotocatalytic propertiesExcellent activityCobalt sitesEdge sitesC3N4 flakesBinding energiesLight absorption
2019
Biocatalytic Reversal of Advanced Glycation End Product Modification
Kim NY, Goddard TN, Sohn S, Spiegel DA, Crawford J. Biocatalytic Reversal of Advanced Glycation End Product Modification. ChemBioChem 2019, 20: 2402-2410. PMID: 31013547, PMCID: PMC6768434, DOI: 10.1002/cbic.201900158.Peer-Reviewed Original ResearchConceptsImproved catalytic propertiesCondensation of sugarsLysine structureStructural homology analysisCatalytic propertiesSite-directed mutagenesisLead catalystFree amino acid formAcid formEnzyme variantsMaillard reactionHomology analysisCausal agentAuthentic ligandMolecular levelAdvanced glycation end product modificationAmino acid formMnmCLack of toolsAdvanced glycation end productsCatalystPeptidomimeticsLigandsVariantsMolecules
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