Direct solid phase of oligonucleotides (ONs) requires high chemical stability of the support material. In this work, we investigate the passivation ability of porous oxidized silicon multilayered structures by two aminosilane compounds, APTES and APDMES, for the realization of a label-free ON optical biosensor.

Aminosilane-modified mesoporous oxidized silicon for in situ oligonucleotides synthesis and detection / Terracciano, Monica; Luca De, Stefano; Ivo, Rendina; Oliviero, Giorgia; Piccialli, Gennaro; Borbone, Nicola; Ilaria, Rea. - (2014), pp. 1-4. (Intervento presentato al convegno 2014 Fotonica AEIT Italian Conference on Photonics Technologies tenutosi a Capri, Naples, Italy nel 12-14 May 2014) [10.1109/Fotonica.2014.6843946].

Aminosilane-modified mesoporous oxidized silicon for in situ oligonucleotides synthesis and detection

TERRACCIANO, MONICA;OLIVIERO, GIORGIA;PICCIALLI, GENNARO;BORBONE, NICOLA;
2014

Abstract

Direct solid phase of oligonucleotides (ONs) requires high chemical stability of the support material. In this work, we investigate the passivation ability of porous oxidized silicon multilayered structures by two aminosilane compounds, APTES and APDMES, for the realization of a label-free ON optical biosensor.
2014
9788887237177
9788887237184
Aminosilane-modified mesoporous oxidized silicon for in situ oligonucleotides synthesis and detection / Terracciano, Monica; Luca De, Stefano; Ivo, Rendina; Oliviero, Giorgia; Piccialli, Gennaro; Borbone, Nicola; Ilaria, Rea. - (2014), pp. 1-4. (Intervento presentato al convegno 2014 Fotonica AEIT Italian Conference on Photonics Technologies tenutosi a Capri, Naples, Italy nel 12-14 May 2014) [10.1109/Fotonica.2014.6843946].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/592725
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