User:Paul Rothenberg/Notebook/Pauls Notebook/2013/07/15: Difference between revisions
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==Reaction of OPD+H<sub>2</sub>O<sub>2</sub> in Isopropanol Suspension with Mb/Tris Catalyst== | ==Reaction of OPD+H<sub>2</sub>O<sub>2</sub> in Isopropanol Suspension with Mb/Tris Catalyst== | ||
We finished up the final trials of the reactions. | We finished up the final trials of the reactions, and set the control buffers to lyopholize. They were flash frozen using the acetone-dry ice bath at -78°C. | ||
<b>Graphs:</b> | <b>Graphs:</b> | ||
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[[Image:Mb_Tris_OPD_H2O2_Isopropanol_GRAPH_Trial3.png|750px]] | [[Image:Mb_Tris_OPD_H2O2_Isopropanol_GRAPH_Trial3.png|750px]] | ||
==Molar Absorptivity of 2,3 Diaminophenazine== | ==Molar Absorptivity of 2,3 Diaminophenazine== |
Revision as of 11:29, 15 July 2013
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Reaction of OPD+H2O2 in Isopropanol Suspension with Mb/Tris CatalystWe finished up the final trials of the reactions, and set the control buffers to lyopholize. They were flash frozen using the acetone-dry ice bath at -78°C. Graphs: Molar Absorptivity of 2,3 DiaminophenazineWe are now going to determine the molar absorptivity of 2,3 Diaminophenazine (DAPZ, to abbreviate it here). Procedure We started by making a 1mM solution in H2</subO, using 21.023 mg of 2,3 Diaminophenazine. It did not all dissolve in solution, so we added that to a 250 mL volumetric flask and added an additional 150 mL of water, making sure to dissolve any remaining solid in the previous flask.
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