Encapsulation of sub-site analogues of the [FeFe]-hydrogenase enzymes in supramolecular structures has been shown to dramatically increase their catalytic ability, but the molecular basis for this enhancement remains unclear. We report the results of experiments employing infrared absorption, ultrafast infrared pump-probe and 2D-IR spectroscopy to investigate the molecular environment of Fe2(pdt)(CO)6 (pdt: propanedithiolate) [1] encapsulated in the dispersed alkane phase of a heptane-dodecyltrimethylammonium bromide-water microemulsion. It is demonstrated that 1 is partitioned between two molecular environments, one that closely resembles bulk heptane solution and a second that features direct hydrogen-bonding interactions with water molec...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
Hydrogenase enzymes are nature’s catalysts for hydrogen production and uptake. Understanding how the...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
Encapsulation of subsite analogues of the [FeFe]-hydrogenase enzymes in supramolecular structures ha...
Encapsulation of sub-site analogues of the [FeFe]-hydrogenase enzymes in supramolecular structures h...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (mu-S(CH2)(3)S)Fe-2(CO)(4)...
A [FeFe]-hydrogenase model compound (µ-S(CH2)3S)Fe2(CO)4(PMe3)2 [1] has been encapsulated in a Low M...
Over the past two decades, the bioinorganic chemistry of hydrogenases has attracted much interest fr...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (µ-S(CH2)3S)Fe2(CO)4(PMe3)...
[FeFe] hydrogenases rare Nature’s best H2-processing catalysts, and one of the best candidates to sa...
The unique active site of [FeFe]-hydrogenase has inspired over 300 small molecule models derived fro...
The enzyme hydrogenase isolated from the sulphate reducing anaerobic bacterium Desulfovibrio gigas w...
Ultrafast two-dimensional infrared (2D-IR) spectroscopy of Escherichia coli Hyd-1 (EcHyd-1) reveals ...
[FeFe]-hydrogenase enzymes employ a unique organometallic cofactor for efficient and reversible hydr...
[FeFe] hydrogenases are highly efficient catalysts for reversible dihydrogen evolution. H2 turnover ...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
Hydrogenase enzymes are nature’s catalysts for hydrogen production and uptake. Understanding how the...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
Encapsulation of subsite analogues of the [FeFe]-hydrogenase enzymes in supramolecular structures ha...
Encapsulation of sub-site analogues of the [FeFe]-hydrogenase enzymes in supramolecular structures h...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (mu-S(CH2)(3)S)Fe-2(CO)(4)...
A [FeFe]-hydrogenase model compound (µ-S(CH2)3S)Fe2(CO)4(PMe3)2 [1] has been encapsulated in a Low M...
Over the past two decades, the bioinorganic chemistry of hydrogenases has attracted much interest fr...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (µ-S(CH2)3S)Fe2(CO)4(PMe3)...
[FeFe] hydrogenases rare Nature’s best H2-processing catalysts, and one of the best candidates to sa...
The unique active site of [FeFe]-hydrogenase has inspired over 300 small molecule models derived fro...
The enzyme hydrogenase isolated from the sulphate reducing anaerobic bacterium Desulfovibrio gigas w...
Ultrafast two-dimensional infrared (2D-IR) spectroscopy of Escherichia coli Hyd-1 (EcHyd-1) reveals ...
[FeFe]-hydrogenase enzymes employ a unique organometallic cofactor for efficient and reversible hydr...
[FeFe] hydrogenases are highly efficient catalysts for reversible dihydrogen evolution. H2 turnover ...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
Hydrogenase enzymes are nature’s catalysts for hydrogen production and uptake. Understanding how the...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...