Difference between revisions of "Team:ShanghaitechChina/Nanomaterials"

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             <img src="https://static.igem.org/mediawiki/2016/9/9b/T--ShanghaitechChina--DifferentQDs.png" style="width:60%;">
 
             <img src="https://static.igem.org/mediawiki/2016/9/9b/T--ShanghaitechChina--DifferentQDs.png" style="width:60%;">
 
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<figcaption >
<p><b>Figure 1.</b> Different types of QDs with varied size and chemistry show different colors under UV light</p>
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<p class="cap"><b>Figure 1.</b> Different types of QDs with varied size and chemistry show different colors under UV light</p>
 
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<img src="https://static.igem.org/mediawiki/2016/e/eb/T--ShanghaitechChina--fc.png" style="width:75%;">
 
<img src="https://static.igem.org/mediawiki/2016/e/eb/T--ShanghaitechChina--fc.png" style="width:75%;">
 
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<p><b>Figure 2.</b> The flow chart for synthesis and characterization of nanomaterials.</p>
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<p class="cap"><b>Figure 2.</b> The flow chart for synthesis and characterization of nanomaterials.</p>
 
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<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><b>Figure 3.</b>  Solutions of CdS nanoparticle seeds in TOP (left), CdS NRs in toluene (right)</p>
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<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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<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/0/0c/T--ShanghaitechChina--Ligand_exchange.png" style="width:35%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/0/0c/T--ShanghaitechChina--Ligand_exchange.png" style="width:35%;"><figcaption >
<p><b>Figure 4.</b>  Result of CdS NRs ligand exchange experiments. </p>
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<p class="cap"><b>Figure 4.</b>  Result of CdS NRs ligand exchange experiments. </p>
 
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<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/3/32/T--ShanghaitechChina--CdS-Results.jpg" style="width:100%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/3/32/T--ShanghaitechChina--CdS-Results.jpg" style="width:100%;"><figcaption >
<p><b>Figure 5.</b>  UV-Vis spectra of CdS seeds in TOP (A) and CdS nanorods in toluene (B);. Photoluminescence Spectrum of CdS nanorods in toluene (C). </p>
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<p class="cap"><b>Figure 5.</b>  UV-Vis spectra of CdS seeds in TOP (A) and CdS nanorods in toluene (B);. Photoluminescence Spectrum of CdS nanorods in toluene (C). </p>
 
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<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/1/18/T--ShanghaitechChina--TEM-image-CdS.jpg" style="width:75%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/1/18/T--ShanghaitechChina--TEM-image-CdS.jpg" style="width:75%;"><figcaption >
<p><b>Figure 6.</b>  TEM images of CdS NRs (A) and size distribution of CdS NRs (B). Note: 100 NRs in total were measured to determine the size distribution. The NRs thus measured have an average diameter of 3.93±0.57nm and average length of 66.81±6.74nm.</p>
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<p class="cap"><b>Figure 6.</b>  TEM images of CdS NRs (A) and size distribution of CdS NRs (B). Note: 100 NRs in total were measured to determine the size distribution. The NRs thus measured have an average diameter of 3.93±0.57nm and average length of 66.81±6.74nm.</p>
 
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<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/6/6a/T--ShanghaitechChina--CdSe-Result1.jpg" style="width:75%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/6/6a/T--ShanghaitechChina--CdSe-Result1.jpg" style="width:75%;"><figcaption >
<p><b>Figure 7.</b> Experimental set-up for synthesis of CdSe QDs (a) , synthesized NTA-capped CdSe in PBS solution (b) and PL of CdSe QDs in PBS under UV light (c, excitation wavelength 354 nm)  </p>
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<p class="cap"><b>Figure 7.</b> Experimental set-up for synthesis of CdSe QDs (a) , synthesized NTA-capped CdSe in PBS solution (b) and PL of CdSe QDs in PBS under UV light (c, excitation wavelength 354 nm)  </p>
 
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   <p>A ligand exchange experiment was performed and the result is shown in Figure 8.</p>
 
   <p>A ligand exchange experiment was performed and the result is shown in Figure 8.</p>
  
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/3/3c/T--ShanghaitechChina--CdSe-Result.jpg" style="width:75%;"><figcaption >
 
<center><div><p></p><img src="https://static.igem.org/mediawiki/2016/3/3c/T--ShanghaitechChina--CdSe-Result.jpg" style="width:75%;"><figcaption >
<p><b>Figure 8.</b> UV-Vis spectrum of CdSe QDs in CH<sub>2</sub>Cl<sub>2</sub> (a); PL spectrum of CdSe QDs in CH<sub>2</sub>Cl<sub>2</sub> (b)and The TEM image of CdSe QDs(c).  </p>
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<p class="cap"><b>Figure 8.</b> UV-Vis spectrum of CdSe QDs in CH<sub>2</sub>Cl<sub>2</sub> (a); PL spectrum of CdSe QDs in CH<sub>2</sub>Cl<sub>2</sub> (b)and The TEM image of CdSe QDs(c).  </p>
 
</figcaption><p></p></div> </center>
 
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Revision as of 18:04, 18 October 2016

igem2016:ShanghaiTech