Difference between revisions of "Team:ShanghaitechChina/Nanomaterials"

 
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<a href="#Synthesis and Characterization">Synthesis and Characterization</a>
 
<a href="#Synthesis and Characterization">Synthesis and Characterization</a>
 
<ul>
 
<ul>
<li><a href="#Methods">Methods</a>
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<li font-size=14px"><a href="#Methods">Methods</a>
 
</li>
 
</li>
<li><a href="#Results">Results</a>
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<li font-size=14px"><a href="#Results">Results</a>
 
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<p><button type="button4" id="4"><b>Transmission Electron Microscope(TEM):</b></button></p><p id="x6" class="vis">
 
<p><button type="button4" id="4"><b>Transmission Electron Microscope(TEM):</b></button></p><p id="x6" class="vis">
Transmission Electron Microscope (TEM) was used to image the shapes and sizes of QDs and NRs. The 120KV TEM (National protein facility center, Shanghai, China) we used provides the resolution of around 0.2nm. The TEM sample<b id="Results"></b> of our lipophilic QDs and NRs solution is prepared by simply dropping 10 μL of the solution on to the copper grid.
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Transmission Electron Microscope (TEM) was used to image the shapes and sizes of QDs and NRs. The 120KV TEM (National protein facility center, Shanghai, China) we used provides the resolution of around 0.2nm. The TEM sample<b></b> of our lipophilic QDs and NRs solution is prepared by simply dropping 10 μL of the solution on to the copper grid.
 
</p>
 
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<p id="Results" style="margin-bottom:80px"></p>
 
<h3 class="bg"><b>Results</b></h3>
 
<h3 class="bg"><b>Results</b></h3>
 
<p class="bg"><b>Synthesis and Characterization of CdS Nanorods</b></p><p>
 
<p class="bg"><b>Synthesis and Characterization of CdS Nanorods</b></p><p>
 
We synthesized CdS nanorods following a procedure adapted from a previously published protocol[1]. The synthesis procedure mainly contains two steps: synthesis of CdS seeds, followed by growth of CdS nanorods using CdS nanoparticles as nuclei. </p><p></p>
 
We synthesized CdS nanorods following a procedure adapted from a previously published protocol[1]. The synthesis procedure mainly contains two steps: synthesis of CdS seeds, followed by growth of CdS nanorods using CdS nanoparticles as nuclei. </p><p></p>
<p></p>
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<a href="https://2016.igem.org/Team:ShanghaitechChina/Notebook#CdS">Click to see the procedure</a><p></p>
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/c/cf/T--ShanghaitechChina--CdS1.png" style="width:35%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/c/cf/T--ShanghaitechChina--CdS1.png" style="width:35%;"><figcaption >
 
<p class="cap"><b>Figure 3.</b>  Solutions of CdS nanoparticle seeds in TOP (left), CdS NRs in toluene (right)</p>
 
<p class="cap"><b>Figure 3.</b>  Solutions of CdS nanoparticle seeds in TOP (left), CdS NRs in toluene (right)</p>
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<p class="bg"><b>Synthesis and Characterization of CdSe QDs</b></p><p>
 
<p class="bg"><b>Synthesis and Characterization of CdSe QDs</b></p><p>
 
</p><p><p></p>
 
</p><p><p></p>
We followed a protocol from a previously published paper[2]. After synthesis, UV-Vis spectroscopy, PL spectroscopy and TEM were carried out to confirm the structures and features of CdSe QDs. The photoluminescence of CdSe QDs can be observed by naked eyes.</p>
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We followed a protocolfrom a previously published paper[2]. After synthesis, UV-Vis spectroscopy, PL spectroscopy and TEM were carried out to confirm the structures and features of CdSe QDs. The photoluminescence of CdSe QDs can be observed by naked eyes.</p>
 
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<p></p>
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<a href="https://2016.igem.org/Team:ShanghaitechChina/Notebook#CdSe">Click to see the procedure</a>
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<p></p>
  
  

Latest revision as of 21:07, 19 October 2016

igem2016:ShanghaiTech