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Luana de Brito Anton,Andrea I Silverman,Jennifer N Apell Luana de Brito Anton
Predicting the environmental fate of anthropogenic chemicals remains a top priority for scientists and regulators; however, these efforts are hindered by the complexity of environmental systems. For example, in aquatic photodegradation, mul...
Megan Woods,Frank A F Winiberg,Charles R Markus et al. Megan Woods et al.
OH+NO is an important termolecular association reaction in the troposphere and stratosphere that influences the atmospheric ozone budget. In this study, rate coefficients for the reaction of OH + NO + M → HONO + M were measured under condi...
Nozomu Tsuruoka,Takuya Sadakane,Rika Hayashi et al. Nozomu Tsuruoka et al.
The flavin adenine dinucleotide-dependent glucose dehydrogenase (FAD-GDH) from Aspergillus species require suitable redox mediators to transfer electrons from the enzyme to the electrode surface for the application of bioelectrical devices....
Jordy Bouwman,Fabien Goulay,Stephen R Leone et al. Jordy Bouwman et al.
The reactions of the ethynyl radical (C(2)H) with ethene (C(2)H(4)) and propene (C(3)H(6)) are studied under low temperature conditions (79 K) in a pulsed Laval nozzle apparatus. Ethynyl radicals are formed by 193 nm photolysis of acetylene...
Victor Okhonin,Maxim Berezovski,Sergey N Krylov Victor Okhonin
We introduce sweeping capillary electrophoresis (SweepCE), a non-stopped-flow method for directly measuring the bimolecular rate constant of complex formation, and demonstrate its use for studying protein-DNA interaction. The capillary is p...
Konrad Swiderski,Andrew McLean,Charles M Gordon et al. Konrad Swiderski et al.
The bimolecular rate constant for solvent displacement, k(2), from [(C(6)H(6))Cr(CO)(2)Solv] by an incoming ligand has been determined in the room temperature ionic liquid, [bmim][PF(6)], and is compared to that for the same process in cycl...
Andrew J McLean,Mark J Muldoon,Charles M Gordon et al. Andrew J McLean et al.
The temperature dependence of the bimolecular rate constants for a diffusion controlled reaction involving neutral reactants have been directly determined in five commonly used ionic liquids over the temperature range 5-70 degrees C.