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A hydrogenase mimic or bio-mimetic is an enzyme mimic of hydrogenases. One of the more interesting applications of hydrogenases is to produce hydrogen
Hydrogenase_mimic
Class of enzymes that catalyse the reversible oxidation of molecular hydrogen
A hydrogenase is an enzyme that catalyses the reversible oxidation of molecular hydrogen (H2), as shown below: Hydrogen oxidation (1) is coupled to the
Hydrogenase
Topics referred to by the same term
to: Hydrogenase (NAD+, ferredoxin) Hydrogenase (acceptor) Hydrogenase maturation protease family Hydrogenase mimic This disambiguation page lists articles
Hydrogenase_(disambiguation)
Type of hydrogenase
confused with [NiFeSe] hydrogenase found in many Bacteria, a subclass of NiFe hydrogenase [NiFe] hydrogenase is a type of hydrogenase, which is an oxidative
NiFe_hydrogenase
American inorganic chemist
developed synthetic models of hydrogenase enzyme active sites, particularly iron- and nickel-based organometallic complexes that mimic biological hydrogen metabolism
Marcetta_Y._Darensbourg
Chemical compound
(CH3)2S2 → 3 [Fe(CO)3SCH3]2 + 6 CO. These complexes are studied as hydrogenase mimics. Fe3(CO)12 is hazardous as a source of carbon monoxide. Solid samples
Triiron_dodecacarbonyl
German chemist and biophysicist
well known for his work on bacterial photosynthetic reaction centres, hydrogenase enzymes, and the oxygen-evolving complex using a variety of biophysical
Wolfgang_Lubitz
Chemical compound
structure with six terminal CO ligands. The complex is a precursor to hydrogenase mimics. It is prepared by the reaction of 1,3-propanedithiol with triiron
Diiron propanedithiolate hexacarbonyl
Diiron_propanedithiolate_hexacarbonyl
monooxygenase (MMO) or the oxidation and production of hydrogen by hydrogenase. "Functional" enzyme mimics or bioinspired catalysts are designed with characteristics
Enzyme_mimic
Artificial process that uses sunlight energy to drive chemical synthesis
hydrogen-oxidizing (uptake) hydrogenase. One way of forcing these organisms to produce hydrogen is then to annihilate uptake hydrogenase activity. This has been
Artificial_photosynthesis
Chemical compound
Dietmar Seyferth, Fe2(μ-S2)(CO)6 is commonly used to make mimics of the H-cluster in [FeFe]-hydrogenase. Much of the reactivity of Fe2(μ-S2)(CO)6 proceeds through
Disulfidobis(tricarbonyliron)
Study of the role of metals in biology
as intermediates. Bioorganometallic enzymes and proteins include the hydrogenases, FeMoco in nitrogenase, and methylcobalamin. These naturally occurring
Bioinorganic_chemistry
Indian chemist
photosynthesis as proposed by R. M. Willstätter one-hundred years ago and modeled hydrogenase captioned as better than nature. The rare reaction of a Cu(II) complex
Sabyasachi_Sarkar
Protein family
(2022). "Second and Outer Coordination Sphere Effects in Nitrogenase, Hydrogenase, Formate Dehydrogenase, and CO Dehydrogenase". Chemical Reviews. 122
Formate_dehydrogenase
Coordination complexes of transition metals and metal ions with carbon monoxide ligands
emanations from the sewage sludge of municipal treatment plants. The hydrogenase enzymes contain CO bound to iron. It is thought that the CO stabilizes
Metal_carbonyl
Species of bacteria
oxygen, but at lower concentration than in the atmosphere. It contains a hydrogenase that can produce energy by oxidizing molecular hydrogen (H2) made by
Helicobacter_pylori
Overview of the events of 2023 in science
to be three times more efficient than existing methods. A bacterial hydrogenase enzyme, Huc, for biohydrogen energy from the air is reported. The first
January–March_2023_in_science
bioethics and potential bottlenecks and limits of nonbio-AI. A bacterial hydrogenase enzyme, Huc, for biohydrogen energy from the air is reported. A study
Timeline_of_biotechnology
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