International audienceDesigning systems that merge the advantages of heterogeneous catalysis, enzymology, and molecular catalysis represents the next major goal for sustainable chemistry. Cross-linked enzyme crystals display most of these essential assets (well-designed mesoporous support, protein selectivity, and molecular recognition of substrates). Nevertheless, a lack of reaction diversity, particularly in the field of oxidation, remains a constraint for their increased use in the field. Here, thanks to the design of cross-linked artificial nonheme iron oxygenase crystals, we filled this gap by developing biobased heterogeneous catalysts capable of oxidizing carbon-carbon double bonds. First, reductive O2 activation induces selective ox...
Metalloenzymes catalyze reactions that are among the “holy grails” of modern chemical research and d...
AbstractOxygenases are ubiquitous enzymes that catalyze the introduction of one or two oxygen atoms ...
International audienceArtificial metalloenzymes broadens the scope of possibilities for catalysis at...
International audienceDesigning systems that merge the advantages of heterogeneous catalysis, enzymo...
Designing systems that merge the advantages of heterogeneous catalysis, enzymology, and molecular ca...
International audiencePerforming a heterogeneous catalysis with proteins is still a challenge. Herei...
Depuis la révolution industrielle, la chimie ne cesse de prospérer en développant des procédés de pl...
Since the industrial revolution, chemistry has continually thriven by developing new efficient proce...
International audienceThe principle of enzyme mimics has been raised to its pinnacle by the design o...
Selective oxidation reactions are important transformations for the production of fine chemicals. Ho...
Many efforts are being made in the design and engineering of metalloenzymes with catalytic propertie...
International audienceO2, which is abundant and environmentally benign, is the ideal green oxidant f...
Developing highly efficient biomimetic catalysts that directly use O2 as the terminal oxidant to deh...
This PhD thesis describes research in the field of biocatalysis. We use enzymes, i.e. proteins that ...
Recognizing Nature's unique ability to perform challenging oxygenation reactions with exquisite sele...
Metalloenzymes catalyze reactions that are among the “holy grails” of modern chemical research and d...
AbstractOxygenases are ubiquitous enzymes that catalyze the introduction of one or two oxygen atoms ...
International audienceArtificial metalloenzymes broadens the scope of possibilities for catalysis at...
International audienceDesigning systems that merge the advantages of heterogeneous catalysis, enzymo...
Designing systems that merge the advantages of heterogeneous catalysis, enzymology, and molecular ca...
International audiencePerforming a heterogeneous catalysis with proteins is still a challenge. Herei...
Depuis la révolution industrielle, la chimie ne cesse de prospérer en développant des procédés de pl...
Since the industrial revolution, chemistry has continually thriven by developing new efficient proce...
International audienceThe principle of enzyme mimics has been raised to its pinnacle by the design o...
Selective oxidation reactions are important transformations for the production of fine chemicals. Ho...
Many efforts are being made in the design and engineering of metalloenzymes with catalytic propertie...
International audienceO2, which is abundant and environmentally benign, is the ideal green oxidant f...
Developing highly efficient biomimetic catalysts that directly use O2 as the terminal oxidant to deh...
This PhD thesis describes research in the field of biocatalysis. We use enzymes, i.e. proteins that ...
Recognizing Nature's unique ability to perform challenging oxygenation reactions with exquisite sele...
Metalloenzymes catalyze reactions that are among the “holy grails” of modern chemical research and d...
AbstractOxygenases are ubiquitous enzymes that catalyze the introduction of one or two oxygen atoms ...
International audienceArtificial metalloenzymes broadens the scope of possibilities for catalysis at...