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Measuring the complexity of micro and nanostructured surfaces

Authors :
Dimos Poulikakos
Abinash Tripathy
A. Arapis
Athanasios Milionis
Cheuk Wing Edmond Lam
V. Constantoudis
Evangelos Gogolides
Dimitrios Kontziampasis
Strgios, Logothetidis
Spyros, Kassavetis
Argiris, Laskarakis
Gravalidis, Christoforos
Source :
Materials today: proceedings, Materials Today: Proceedings, 54 (Part 1), International Conferences & Exhibition on Nanotechnologies, Organic Electronics & Nanomedicine – NANOTEXNOLOGY 2020
Publication Year :
2022
Publisher :
arXiv, 2022.

Abstract

Nanostructured surfaces usually exhibit complicated morphologies that cannot be described in terms of Euclidean geometry. Simultaneously, they do not constitute fully random noise fields to be characterized by simple stochastics and probability theory. In most cases, nanomorphologies consist of complicated mixtures of order and randomness, which should be described quantitatively if one aims to control their fabrication and properties. In this work, inspired by recent developments in complexity theory, we propose a method to measure nanomorphology complexity that is based on the deviation from the average symmetry of surfaces. We present the methodology for its calculation and the validation of its performance, using a series of synthetic surfaces where the proposed complexity measure obtains a maximum value at the most heterogeneous morphologies between the fully ordered and fully random cases. Additionally, we measure the complexity of experimental micro and nanostructured surfaces (polymeric and metallic), and demonstrate the usefulness of the proposed method in quantifying the impact of processing conditions on their morphologies. Finally, we hint on the relationship between the complexity measure and the functional properties of surfaces.<br />Comment: 13 pages, 13 figures. Materials Today: Proceedings, 2021

Details

Database :
OpenAIRE
Journal :
Materials today: proceedings, Materials Today: Proceedings, 54 (Part 1), International Conferences & Exhibition on Nanotechnologies, Organic Electronics & Nanomedicine – NANOTEXNOLOGY 2020
Accession number :
edsair.doi.dedup.....373241ad5be5ce3c4eb3b68ef7904d9a
Full Text :
https://doi.org/10.48550/arxiv.2202.00957