Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization
Due to a variety of applications of nanoscaled materials, several researchers further investigate a joining between two nanostructures as a candidate for new potential applications. Here, the vertically joining between the nanotube with the nano-torus is investigated. Variational calculus is used to...
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th-mahidol.773832022-08-04T18:28:05Z Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization Panyada Sripaturad Duangkamon Baowan Mahidol University Ministry of Higher Education, Science, Research and Innovation Mathematics Physics and Astronomy Due to a variety of applications of nanoscaled materials, several researchers further investigate a joining between two nanostructures as a candidate for new potential applications. Here, the vertically joining between the nanotube with the nano-torus is investigated. Variational calculus is used to predict the joining curve between two nanostructures based on minimizing the elastic energy. Moreover, Willmore energy is also utilized to determine the join region especially for a three-dimensional structure. Since the surface of a catenoid is a minimizer obtained by the Willmore energy function, it is used to join two symmetric nanostructures. We find that these two approaches have less than 10% difference in the positions of the joining curves. These two methods might be used to design other hybrid nano-scaled structures. 2022-08-04T08:57:00Z 2022-08-04T08:57:00Z 2021-02-01 Article Zeitschrift fur Angewandte Mathematik und Physik. Vol.72, No.1 (2021) 10.1007/s00033-020-01451-0 00442275 2-s2.0-85099188426 https://repository.li.mahidol.ac.th/handle/123456789/77383 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85099188426&origin=inward |
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Mathematics Physics and Astronomy Panyada Sripaturad Duangkamon Baowan Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
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Due to a variety of applications of nanoscaled materials, several researchers further investigate a joining between two nanostructures as a candidate for new potential applications. Here, the vertically joining between the nanotube with the nano-torus is investigated. Variational calculus is used to predict the joining curve between two nanostructures based on minimizing the elastic energy. Moreover, Willmore energy is also utilized to determine the join region especially for a three-dimensional structure. Since the surface of a catenoid is a minimizer obtained by the Willmore energy function, it is used to join two symmetric nanostructures. We find that these two approaches have less than 10% difference in the positions of the joining curves. These two methods might be used to design other hybrid nano-scaled structures. |
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Mahidol University |
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Mahidol University Panyada Sripaturad Duangkamon Baowan |
format |
Article |
author |
Panyada Sripaturad Duangkamon Baowan |
author_sort |
Panyada Sripaturad |
title |
Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
title_short |
Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
title_full |
Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
title_fullStr |
Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
title_full_unstemmed |
Joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
title_sort |
joining curves between nano-torus and nanotube: mathematical approaches based on energy minimization |
publishDate |
2022 |
url |
https://repository.li.mahidol.ac.th/handle/123456789/77383 |
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1763496683605327872 |