User:Monak

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(<font color='blue'>Wafer level nano-resolution pattern transfer</font color>)
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  - Design Rules -
  - Design Rules -
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* 2D DNA sheet of more or less arbitrary shape [[Media:2D_DNA_Origami_DesignGuideline.pdf| (click here)]]
* 2D DNA sheet of more or less arbitrary shape [[Media:2D_DNA_Origami_DesignGuideline.pdf| (click here)]]
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  - Individual project -
  - Individual project -
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To start from the very basics, produce a plane sheet, and a sheet that folds once. For double-checking possibilitiy, we included a step-height variation that should appear in the AFM image, and a correlation fluorescence dye.  
To start from the very basics, produce a plane sheet, and a sheet that folds once. For double-checking possibilitiy, we included a step-height variation that should appear in the AFM image, and a correlation fluorescence dye.  
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The plain sheet [[Media:1fold_small.pdf| (click here)]]
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The plain sheet [[image:1fold_small|left|thumb|200px| Plain sheet]]
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[[image:1fold_small|left|thumb|200px| Plain sheet]]
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The two folded sheet [[Media:2fold_small.pdf| (click here)]]
The two folded sheet [[Media:2fold_small.pdf| (click here)]]

Revision as of 07:55, 20 October 2006

- Design Rules -

To get it clear for myself (as a person without any prior knowledge about the steric hybridization properties of DNA), I tried to set up some simple, engineering point-of-view rules for designing a plain sheet of DNA.


- Individual project -

Smart materials from DNA

For example by self-assembly of folded and connected DNA sheets, which will change their physical properties with environmental changes, e.g. pH. (click here)

Wafer level nano-resolution pattern transfer

To start from the very basics, produce a plane sheet, and a sheet that folds once. For double-checking possibilitiy, we included a step-height variation that should appear in the AFM image, and a correlation fluorescence dye.

The plain sheet
File:1fold small
Plain sheet


The two folded sheet (click here)

Pattern transfer?? Lot's of different possibilities that we want to give a try. But first, we have to be able to produce the very basics. The story will be continued..!


- Personal information -


Mona J. K. Klein

e-mail: mona.klein@imtek.uni-freiburg.de

- Education -

Just graduated from the department of Microsystems Engineering.

Diploma-thesis (6-month compressed master's thesis) dealt with the fabrication of a solenoidal coil for MRI of cells.


[http://2006.igem.org/wiki/index.php/Freiburg_University_2006 Home]

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