User:Moira M. Esson/Notebook/CHEM-581/2013/02/27

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(Pressure tests)
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(Pressure tests)
 
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*All pressure tests were conducted following the general protocol described on [[User:Moira_M._Esson/Notebook/CHEM-581/2013/02/22|2013/02/22]].
*All pressure tests were conducted following the general protocol described on [[User:Moira_M._Esson/Notebook/CHEM-581/2013/02/22|2013/02/22]].
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Table 1. Pressure testing information for hydrogels using a bent pipette
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'''Table 1. Pressure testing information for hydrogels using a bent pipette'''
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| align="center" style="background:#f0f0f0;"|'''Sample Order'''
| align="center" style="background:#f0f0f0;"|'''Sample Order'''
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Figure 1. Image of bent pipette used for pressure testing
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  '''Figure 1. Image of bent pipette used for pressure testing'''
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[[Image:Bent pipette 2 27 13.jpg]]
[[Image:Bent pipette 2 27 13.jpg]]
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Figure 2. Fluorescence of all NaMT hydrogel ssmples
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  '''Figure 2. Fluorescence of all NaMT hydrogel ssmples'''
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Figure 3. Fluorescence of all Lamponite hydrogel samples
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Figure 4. Fluorescence of all hydrogel samples
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[[Image:Fluorescence of Rhodamine 6G obtained from pressure tests of NaMT clay containing hydrogels using a bent pipette.png]]
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  '''Figure 3. Fluorescence of all Lamponite hydrogel samples'''
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[[Image:Fluorescence of Rhodamine 6G collected after pressure testing(bent pipette) on hydrogels with Lamponite clay.png]]
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  '''Figure 4. Fluorescence of all hydrogel samples'''
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[[Image:Bent pipette pressure testing.png]]
[[Image:Bent pipette pressure testing.png]]
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*'''Correction''': The x-axis should be labeled wavelength(nm). The image will be corrected.

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Objectives

  1. Perform pressure tests on all prepared hydrogels using a bent pipette.
  2. Run fluorescence on the samples obtained from the pressure tests.


Pressure tests

  • Pressure tests were performed on all hydrogels prepared with Rhodamine 6G added.
  • After the sheer pressure test conducted on 2013/02/22, it was determined that a bent pipette and an unmodified pipette would be used to conduct the pressure tests. Each hydrogel will have at least two pressure tests conducted with the hydrogel: one with a bent pipette and the other with an unmodified pipette.
  • All pressure tests were conducted following the general protocol described on 2013/02/22.


Table 1. Pressure testing information for hydrogels using a bent pipette

Sample Order PVOH vs. Clay Ratio PVOH Type Clay Selection Amount of Hydrogel Used (g)
190:10146K110% CEC NaMT w/ DMHXLBR0.1084
290:10130KNaMT0.1044
350:50146K110% CEC NaMT0.1092
490:10130K110% CEC Laponite0.1050
550:50130KNaMT0.1050
690:10130KLaponite0.1015
750:50146K110% CEC Laponite0.1080
850:50130KLaponite0.1036
990:10130K110% CEC NaMT0.1011
1050:50130K110% CEC Laponite0.1036
1190:10130K110% CEC NaMT0.1011
1290:10146KLaponite0.1026
1350:50130K50% CEC NaMT Bu3HdP+0.1052
1450:50146KLaponite0.1045
1590:10130K50% CEC NaMT Bu3HdP+0.1145


 Figure 1. Image of bent pipette used for pressure testing


Image:Bent pipette 2 27 13.jpg

 Figure 2. Fluorescence of all NaMT hydrogel ssmples


Image:Fluorescence of Rhodamine 6G obtained from pressure tests of NaMT clay containing hydrogels using a bent pipette.png

 Figure 3. Fluorescence of all Lamponite hydrogel samples


Image:Fluorescence of Rhodamine 6G collected after pressure testing(bent pipette) on hydrogels with Lamponite clay.png

 Figure 4. Fluorescence of all hydrogel samples


Image:Bent pipette pressure testing.png

  • Correction: The x-axis should be labeled wavelength(nm). The image will be corrected.



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