Team DNAbeans: Difference between revisions

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     <th><a href="www.ncsu.edu"><img src = "http://www.thesciencehouse.org/k-12-students/Summer%20Camp%20Logos/ncsuwolf.jpg" width="250"></a></th>
     <th><a href="http://www.ncsu.edu"><img src = "http://www.thesciencehouse.org/k-12-students/Summer%20Camp%20Logos/ncsuwolf.jpg" width="250"></a></th>
     <th><a href="http://www.mse.ncsu.edu/"><img src = "http://www.mse.ncsu.edu/public/images/mse-logo.png" width="625"></a></th>
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<h1>Team DNAbeans 2014</h1>
<div><h1>Team DNAbeans 2014</h1></div>


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     <th bgcolor="#CC0000"><center><font size="+2"><a href="http://openwetware.org/wiki/Team_DNAbeans"><span style="color:#FFFFFF">DNAbeans</span></a></font></center></th>
     <th bgcolor="#CC0000"><center><font size="+2"><a href="http://openwetware.org/wiki/Biomod/2014/DNAbeans"><span style="color:#FFFFFF">DNAbeans</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="BIOMODteam.html"><span style="color:#CC0000">Team</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMODteam.html"><span style="color:#CC0000">Team</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="DNAbeansProject.html"><span style="color:#CC0000">Project</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/DNAbeansProject.html"><span style="color:#CC0000">Project</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="BIOMODlabwork.html"><span style="color:#CC0000">Labwork</span></a></font></center></th>     
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMODlabwork.html"><span style="color:#CC0000">Labwork</span></a></font></center></th>     
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="BIOMOD2013"><span style="color:#CC0000">BIOMOD2013</span></a></font></center></th>
     <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMOD2013"><span style="color:#CC0000">BIOMOD2013</span></a></font></center></th>
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<h3> Please Hold While We Edit Our Website. Thank You. </h3>
<li><a href="BIOMODteam.html">Team</a>
<li><a href="DNAbeansProject.html">Project</a>
<li><a href="BIOMOD2013.html">BIOMOD2013</a>
<li><a href="BIOMODlabwork.html">Labwork</a>
<p>
<h2 align="center">An Introductory Film About DNAbeans</h2>


<div style="float:left;margin-right:15px;"><iframe width="320" height="160" src="https://www.youtube.com/watch?v=1--yEiFO8kw" frameborder="0" allowfullscreen></iframe></div>
<br><br>
Gold nanorods are a specific class of metallic nanoparticle created by anisotropically growing spherical gold nanoparticles. These nanorods are approximately 80nm long, and 20nm wide.  They are functionalized with citrate, which stabilizes them in solution. Gold nanorods are unique due to their unique optical and electronic propertiesThese properties are the result of surface plasmon resonances created by the oscillations of conduction band electrons in subwavelength metallic nanostructures. These surface plasmon resonances are particularly interesting in that two separate plasmon bands emerge when looking at the absorbance spectra of gold nanorods:  one for the shorter, transverse axis of the rods, and one for the longer, longitudinal axis.
 
<!--Welcome Page Info Below-->
<p style="line-height:200%; font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:145%"> <span style="font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:160%"> <em> Welcome </em> <br> </span>Welcome to the DNAbeans project page.  We are working to bring the properties of the nanoscale to the macroscale. On this page, below, you can find our video. Above are links to view our project, lab results, and SEM imagesFeel free to ask us any questions. Send us an email at teamdnabeans@gmail.com.
</p>
 
<div><h2>An Introductory Film About DNAbeans</h2></div>


<div style="float:LEFT;margin:0 15px 5px 0;">
<iframe width="420" height="315"
src="http://www.youtube.com/v/1--yEiFO8kw">
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<span id="edutext">
Our project deals with the functionalization and placement of gold nanoparticles in order to take advantage of plasmonic properties.  This is achieved by using DNA self-assembly by attaching a linker strand to the gold nanoparticles and complementary strands to the DNA origami.  This process is detailed in the video. 


</span>
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<p style="line-height:200%; font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:145%"> <span style="font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:160%"> <em> Goals, Hopes, and Aspirations </em> <br> </span>
The ultimate goal of Team DNAbeans is to develop novel macroscale arrangements of asymmetrical nanoscale particles.  We believe that this arrangement will produce novel properties that can be exploited in the realm of electronics and communication.  The close proximity of the gold nanorods and quantum dots will foster plasmonic resonance.  This macroscopic arrangement would also be a first as previous work has only focused on nanoscale ordering.  This macroscale ordering will open the doors to new processes and may yield new hardware to use in communications.  </p>
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Latest revision as of 20:49, 25 October 2014

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   <th><a href="http://www.ncsu.edu"><img src = "http://www.thesciencehouse.org/k-12-students/Summer%20Camp%20Logos/ncsuwolf.jpg" width="250"></a></th>
   <th><a href="http://www.mse.ncsu.edu/"><img src = "http://www.mse.ncsu.edu/public/images/mse-logo.png" width="625"></a></th>
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</table> <div><h1>Team DNAbeans 2014</h1></div>

<table border="0">

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   <tbody id="edutext" ><tr>
    <th bgcolor="#CC0000"><center><font size="+2"><a href="http://openwetware.org/wiki/Biomod/2014/DNAbeans"><span style="color:#FFFFFF">DNAbeans</span></a></font></center></th>
    <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMODteam.html"><span style="color:#CC0000">Team</span></a></font></center></th>
    <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/DNAbeansProject.html"><span style="color:#CC0000">Project</span></a></font></center></th>
    <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMODlabwork.html"><span style="color:#CC0000">Labwork</span></a></font></center></th>     
    <th bgcolor="#FFFFFF"><center><font size="+2"><a href="http://openwetware.org/wiki/BIOMOD2013"><span style="color:#CC0000">BIOMOD2013</span></a></font></center></th>
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<br><br>

<!--Welcome Page Info Below--> <p style="line-height:200%; font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:145%"> <span style="font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:160%"> <em> Welcome </em> <br> </span>Welcome to the DNAbeans project page. We are working to bring the properties of the nanoscale to the macroscale. On this page, below, you can find our video. Above are links to view our project, lab results, and SEM images. Feel free to ask us any questions. Send us an email at teamdnabeans@gmail.com. </p>

<div><h2>An Introductory Film About DNAbeans</h2></div>

<div style="float:LEFT;margin:0 15px 5px 0;"> <iframe width="420" height="315" src="http://www.youtube.com/v/1--yEiFO8kw"> </iframe>

       </div>

<span id="edutext"> Our project deals with the functionalization and placement of gold nanoparticles in order to take advantage of plasmonic properties. This is achieved by using DNA self-assembly by attaching a linker strand to the gold nanoparticles and complementary strands to the DNA origami. This process is detailed in the video.

</span> <br> <br> <p style="line-height:200%; font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:145%"> <span style="font-family: Century Gothic, sans-serif, Impact, Charcoal; font-size:160%"> <em> Goals, Hopes, and Aspirations </em> <br> </span> The ultimate goal of Team DNAbeans is to develop novel macroscale arrangements of asymmetrical nanoscale particles. We believe that this arrangement will produce novel properties that can be exploited in the realm of electronics and communication. The close proximity of the gold nanorods and quantum dots will foster plasmonic resonance. This macroscopic arrangement would also be a first as previous work has only focused on nanoscale ordering. This macroscale ordering will open the doors to new processes and may yield new hardware to use in communications. </p> <br> </p> </body>

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