User:Madeleine Y. Bee/Notebook/CHEM-572 2014S/2014/02/19

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*Myoglobin stock solution:
*Myoglobin stock solution:
**0.011g x (1 mol/17699g) x 0.010L = 0.0621mM
**0.011g x (1 mol/17699g) x 0.010L = 0.0621mM
-
*Volumes of Au, protein, and water for each test tube (from [February 11, 2014 User:Madeleine_Y._Bee/Notebook/CHEM-572_2014S/2014/02/11#New_Nanofibers:_Sample_Preparation]:
+
*Volumes of Au, protein, and water for each test tube (Myoglobin ratios from [http://openwetware.org/wiki/User:Madeleine_Y._Bee/Notebook/CHEM-572_2014S/2014/02/11#New_Nanofibers:_Sample_Preparation Febrary 11]):
**Final [Au]=0.5mM, 5mL total volume
**Final [Au]=0.5mM, 5mL total volume
**[[Image:2014_0211_myo_bsa_NPs.PNG]]
**[[Image:2014_0211_myo_bsa_NPs.PNG]]

Revision as of 12:41, 19 February 2014

Polydopamine Myoglobin Nanofibers Main project page
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February 19. 2014

Objectives

  • Finish polydopamine nanofiber scaffolds

Procedures

  • Polydopamine nanofibers
    • Put scaffold into 10mL test tube to conduct Myoglobin nanofiber procedure
    • Prepare nanofibers according to previously used procedure, with doubled concentration (0.5mM Au in final solution) making 100:1 and 60:1 ratios of gold:myoglobin

Sample Preparation

  • Au stock solution:
    • 0.011g x (1 mol/393.833g) x 0.010L = 2.793mM
  • Myoglobin stock solution:
    • 0.011g x (1 mol/17699g) x 0.010L = 0.0621mM
  • Volumes of Au, protein, and water for each test tube (Myoglobin ratios from Febrary 11):
    • Final [Au]=0.5mM, 5mL total volume
    • Image:2014_0211_myo_bsa_NPs.PNG


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