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Updated: May 18, 2026

Metal-Assisted Electrochemical Nanoimprinting of Porous and Solid Silicon Wafers
Published on: February 8, 2022
Submicron machining and biomolecule immobilization on porous silicon by electron beam
Dario Imbraguglio1, Andrea Mario Giovannozzi, Annalisa Nastro
1Thermodynamics Division, Istituto Nazionale di Ricerca Metrologica, Strada delle Cacce 91, Torino, 10135, Italy. d.imbraguglio@inrim.it.
Abstract:
Three-dimensional submicrometric structures and biomolecular patterns have been fabricated on a porous silicon film by an electron beam-based functionalization method. The immobilized proteins act as a passivation layer against material corrosion in aqueous solutions. The effects' dependence on the main parameters of the process (i.e., the electron beam dose, the biomolecule concentration, and the incubation time) has been demonstrated.

