User:Dhea Patel/Notebook/Experimental Biological Chemistry Notebook/2012/11/27
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< User:Dhea Patel | Notebook | Experimental Biological Chemistry Notebook | 2012 | 11(Difference between revisions)
Current revision (09:32, 6 December 2012) (view source) (→Data/Observations) |
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==Data/Observations== | ==Data/Observations== | ||
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| + | '''UV-VIS''' | ||
[[Image:UV-Vis_Spectra_of_AuADA_11142012.JPG]] | [[Image:UV-Vis_Spectra_of_AuADA_11142012.JPG]] | ||
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*There was a direct relationship between the absorbance and the mole ratio of Au:HRP. As the mole ratio increased, the absorbance increased. | *There was a direct relationship between the absorbance and the mole ratio of Au:HRP. As the mole ratio increased, the absorbance increased. | ||
*The 130 AuHRP solution contained 1 mL less of H2O due to an error during preparation of the solution, which may account for the similarity in absorbance peake for 130 and 140 mole ratio Au:HRP solutions. | *The 130 AuHRP solution contained 1 mL less of H2O due to an error during preparation of the solution, which may account for the similarity in absorbance peake for 130 and 140 mole ratio Au:HRP solutions. | ||
| + | |||
| + | [[Image:Absorbance_at_525nm_versus_60_to_150_Mole_Ratio_of_AuHRP_samples.jpg]] | ||
| + | *This graph plots the absorbance values at 525nm (where the peak was detected) against the mole ratios of the AuHRP solutions. | ||
| + | *This graph better displays the direct relationship between peak absorbance and mole ratio. | ||
[[Image:UV-Vis_Spectra_of_AuADA.JPG]] | [[Image:UV-Vis_Spectra_of_AuADA.JPG]] | ||
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*The ADA used in these solutions was pre-dialysis, so the ADA was in elution buffer containing high levels of imidazole, which may have interfered with the AuNP formation. | *The ADA used in these solutions was pre-dialysis, so the ADA was in elution buffer containing high levels of imidazole, which may have interfered with the AuNP formation. | ||
| - | + | '''AAS''' | |
{| {{table}} | {| {{table}} | ||
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| 150||0.2473||14.6754 | | 150||0.2473||14.6754 | ||
|} | |} | ||
| - | *This table lists the absorbance of each sample and its concentration in ppm. | + | *This table lists the absorbance of each AuHRP sample and its Au concentration in ppm. |
| + | |||
| + | [[Image:Au_HRP_gold.png|550px]] | ||
| + | *This graph plots the concentration of gold, in ppm, in the AuHRP solutions against the Au:HRP mole ratios. This confirms the results from the UV-vis that showed the direct relationship between the concentration of gold and the mole ratio of Au:HRP in the solutions. However, because the concentration of gold is being measured in ppm and the concentration of gold was the variable when making the solutions, the %difference concentration needs to be plotted against the mole ratio. | ||
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| + | |||
| + | {| {{table}} | ||
| + | | align="center" style="background:#f0f0f0;"|'''Au/ADA samples''' | ||
| + | | align="center" style="background:#f0f0f0;"|'''Absorbance(Abs.)''' | ||
| + | | align="center" style="background:#f0f0f0;"|'''Concentration[ppm]''' | ||
| + | |- | ||
| + | | 60||0.0417||1.1021 | ||
| + | |- | ||
| + | | 70||0.0571||2.1188 | ||
| + | |- | ||
| + | | 80||0.0605||2.3432 | ||
| + | |- | ||
| + | | 90||0.0761||3.3731 | ||
| + | |- | ||
| + | | 100||0.1041||5.2261 | ||
| + | |- | ||
| + | | 110||0.0828||3.8154 | ||
| + | |- | ||
| + | | 120||0.0854||3.9871 | ||
| + | |- | ||
| + | | 130||0.102||5.083 | ||
| + | |- | ||
| + | | 140||0.112||5.7431 | ||
| + | |- | ||
| + | | 150||0.116||6.0072 | ||
| + | |} | ||
| + | *This table lists the absorbance of each AuADA sample and its Au concentration in ppm. | ||
| + | |||
| + | [[Image:Au_ADA_gold.png|550px]] | ||
| + | *This graph plots the concentration of gold, in ppm, in the AuADA solutions against the Au:ADA mole ratios. | ||
| + | *There is an outlier peak at 100 Au:ADA, with a concentration of 5.2261ppm. | ||
| + | |||
<!-- ##### DO NOT edit below this line unless you know what you are doing. ##### --> | <!-- ##### DO NOT edit below this line unless you know what you are doing. ##### --> | ||
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Objective
DescriptionAnalyzing AuHRP and AuADA Mixtures
"Preparing AuADA solutions"
"Resuspension of Protein Fibers in Tris Buffer"
Data/ObservationsUV-VIS
AAS
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