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The overlapping projects mainly consisted of biophysical analysis of protein protein interactions or the biologically inspired development of more efficient catalysis, green methodologies, and molecular machines.
Metabolons in nature have evolved to facilitate more efficient catalysis of multistep reactions through the co-localization of functionally related enzymes to cellular organelles or membrane structures.
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Although it may be more efficient for catalysis to keep the four active sites always in the open state, the (weak) intersubunit interactions and thermal fluctuations bring two subunits close enough to hinder ligand binding, as shown in Fig. 8. Fig. 7 B shows partially open (i.e., partially occluded) and fully open fractions computed from four BD runs.
Interestingly, mediatorless catalysis at electrodes obtained from oppositely charged particles is more efficient than mediated catalysis.
Additionally, we demonstrate that size and distribution effects are critical parameters for more efficient ORR and MOR catalysis.
This opens up new perspectives in the choice of the gold dispersant and in the development of more efficient, sustainable, viable gold catalysis.
These findings shed light on the importance of cluster dynamics during catalytic reaction and provide key guidelines for engineering more efficient metal oxide interfaces in catalysis.
In principle, a higher concentration of H2O2 would of course be more efficient, since in heterogeneous catalysis the H2O diluent can compete with H2O2 for active sites on the catalyst surface, and in homogeneous catalysis the rate of the oxidation step involving H2O2 is proportional to its concentration.
Although the difference is low, the in-plasma catalysis configuration seems to be more efficient compared to post-plasma catalysis.
This catalysis is considerably more efficient via this isozyme than for any of the class I isozymes (α, β and γ ADHs); and class III ADH (χ ADH) does not have any detectable catalytic activity towards these substrates at all [ 37].
Such studies would also provide a more precise delineation of the steric impediments to efficient catalysis.
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CEO of Professional Science Editing for Scientists @ prosciediting.com