@inproceedings{2ef27423edbc46a58a534f955ffe698d,
title = "Fabrication of Nanopores Using the Controlled Dielectric Breakdown Technique",
abstract = "Controlled dielectric breakdown is becoming the main solid-state nanopore fabrication technique worldwide. This paper presents the construction of a system for the fabrication of a single solid-state nanopore in a membrane using this technique. We include a basic introduction to nanopore theory. We also detail the building process of the low-cost equipment for nanopore fabrication, so that this paper can be used as a guide for building a similar system. Finally, we include the results of the creation of two nanopores and their characterization.",
keywords = "ACC, DAQ, DNA RNA sensor, controlled dielectric breakdown, fluidic cell, leakage current, silicon nitride, solid-state nanopores, transmembrane",
author = "Nagel Amaguayo and Ariana Musello and Pablo Lopez and Lionel Trojman and Procel, {Luis Miguel} and Jose Bustamante",
note = "Publisher Copyright: {\textcopyright} 2021 IEEE.; 3rd IEEE Latin America Electron Devices Conference, LAEDC 2021 ; Conference date: 19-04-2021 Through 21-04-2021",
year = "2021",
month = apr,
day = "19",
doi = "10.1109/LAEDC51812.2021.9437914",
language = "Ingl{\'e}s",
series = "LAEDC 2021 - IEEE Latin America Electron Devices Conference",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "LAEDC 2021 - IEEE Latin America Electron Devices Conference",
}