Résumé
When placed in a Hele-Shaw cell and submitted to a uniform magnetic field, a suspension of superparamagnetic particles self-organizes into a 2D array of columns with hexagonal order on short distances and glasslike order on long distances. Such arrays were usefully used for fast electrophoretic separation of long DNA molecules. Although self-assembled matrices have the advantages of simplicity and tunability, it is impossible to have the precisely controlled order and pore size obtainable in a microlithographic array. We address the latter challenge here. A magnetic nickel template is prepared on one cell surface by lift-off Under a uniform external field, the nickel dots create local magnetic field gradients that attracts the beads, imposing a predefined order. We demonstrate the ability to separate long DNA molecules with these matrices and achieve the first steps of studying the resolution of the DNA separation over a wide range of posts density.
| Titre traduit de la contribution | Magnetic beads self-organization on ni pattern: Application to long DNA electrophoresis |
|---|---|
| langue originale | Français |
| Pages (de - à) | 34-38 |
| Nombre de pages | 5 |
| journal | Houille Blanche |
| Numéro de publication | 6 |
| Les DOIs | |
| état | Publié - 1 déc. 2007 |
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