Mechanical properties of silicon nanowires with native oxide surface state
Author:
Funder
TÜBİTAK
Publisher
Elsevier BV
Reference57 articles.
1. Mesoscopic physics of nanomechanical systems;Bachtold;Rev. Modern Phys.,2022
2. Sub-5 nm gate length selenium nanowire transistors: Implications for nanoelectronics;Li;ACS Appl. Nano Mater.,2023
3. Nanowire-enabled bioelectronics;Zhang;Nano Today,2021
4. 1D semiconductor nanowires for energy conversion, harvesting and storage applications;Nehra;Nano Energy,2020
5. Piezoresistive nanowire-based electromechanical sensors;Alaca,2023
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