User:Alexander Cvitan/Notebook/Experimental Biological Chemistry Lab/2014/01/14: Difference between revisions
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|style="background-color: #EEE"|[[Image:BDLlogo_notext_lr.png|128px]]<span style="font-size:22px;"> Biomaterials Design Lab</span> | |style="background-color: #EEE"|[[Image:BDLlogo_notext_lr.png|128px]]<span style="font-size:22px;"> Biomaterials Design Lab</span> | ||
|style="background-color: #F2F2F2" align="center"| | |style="background-color: #F2F2F2" align="center"|[[File:Report.png|frameless|link={{#sub:{{FULLPAGENAME}}|0|-11}}]][[{{#sub:{{FULLPAGENAME}}|0|-11}}|Main project page]]<br />{{#if:{{#lnpreventry:{{FULLPAGENAME}}}}|[[File:Resultset_previous.png|frameless|link={{#lnpreventry:{{FULLPAGENAME}}}}]][[{{#lnpreventry:{{FULLPAGENAME}}}}{{!}}Previous entry]] }}{{#if:{{#lnnextentry:{{FULLPAGENAME}}}}|[[{{#lnnextentry:{{FULLPAGENAME}}}}{{!}}Next entry]][[File:Resultset_next.png|frameless|link={{#lnnextentry:{{FULLPAGENAME}}}}]]}} | ||
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===Manipulation of Temperature=== | ===Manipulation of Temperature=== | ||
*We know that fibers are present in solution | *We know that fibers are present in solution at a temperature of 80 degrees Celsius after synthesis. | ||
* We don't know; however, | * We don't know; however, if the fibers would still be stable if the temperatures were increased closer to boiling. | ||
* One problematic thing about increasing the temperature in order to see if the fibers can withstand greater heat stress is the chance of loosing solvent. Perhaps refluxing the solutions after synthesis would allow us to answer this question without loosing solvent. | * One problematic thing about increasing the temperature in order to see if the fibers can withstand greater heat stress is the chance of loosing solvent. Perhaps refluxing the solutions after synthesis would allow us to answer this question without loosing solvent. | ||
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===Adding a new Water Miscible Solvent=== | ===Adding a new Water Miscible Solvent=== | ||
*Water has a dipole moment of 1.85D | |||
**Use Solvents with varying dipole moments that are still water miscible. | |||
***1,4 Dioxane- Dipole Moment .45D | |||
***Acetone- Dipole moment 2.88D | |||
***Dimethylformamide- Dipole moment 3.82D | |||
***Chloroform?- Dipole Moment 1.04D | |||
***DMSO- Dipole moment 3.96 | |||
===Manipulation of Light and Optics?=== | ===Manipulation of Light and Optics?=== | ||
*Microwave | |||
*IR | |||
*UV | |||
===Applying a Current?=== | ===Applying a Current?=== | ||
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==If something Works How Do We Get Fibers Again?== | |||
*Source with peptide linked AuNP used transition metal ions in order to cause aggregation. Article Found [[http://onlinelibrary.wiley.com/doi/10.1002/smll.200700920/full| Here.]] | |||
__NOTOC__ | __NOTOC__ |
Latest revision as of 23:38, 26 September 2017
Biomaterials Design Lab | Main project page Previous entry Next entry |
2nd Semester Project IdeaOverarching Goal
Variables that are of InterestRemoval of Gold Ions[Chelation]
Manipulation of Temperature
Manipulation of pH
Manipulation of Ionic Strength/ Add Different Cofactors
Adding a new Water Miscible Solvent
Manipulation of Light and Optics?
Applying a Current?Type of AuNP we plan to use to Test the Above Variables
More info on Lysozyme
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If something Works How Do We Get Fibers Again?
- Source with peptide linked AuNP used transition metal ions in order to cause aggregation. Article Found [Here.]