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PMID: 40108225 Published · epublish English Journal Article

Differential evolution-optimized gold nanorods for enhanced photothermal conversion.

Scientific reports ·Vol. 15 ·No. 1 ·2025-03-19 ·页码 9543

Koulali A, Radomski P, Ziółkowski P, Petronella F, De Sio L, Mikielewicz D

Abstract

Noble metallic nanoparticles (NPs) have shown great potential in the field of sustainable energy. Gold nanorods (AuNRs), known for their size-dependent optical and electrical characteristics, are strong candidates for various applications, particularly in solar energy conversion. Additionally, AuNRs are well-established nanomaterials in precision medicine. In this paper, we optimize the shape and size of AuNRs to maximize light-to-heat conversion based on a validated theoretical model. Utilizing the Differential Evolution (DE) algorithm, a robust metaheuristic optimization approach, we calculated the optimal size and shape of AuNRs for selected wavelengths. The aspect ratio (AR), defined as the ratio of the diameter to the length of the AuNRs, was a key parameter in the optimization process. The optimization results reveal that for shorter wavelengths, near-spherical AuNRs (AR of 0.71 and 0.75) demonstrate the highest efficiency, while for longer wavelengths, more elongated AuNRs (AR of 0.24 and 0.17) outperform others. This study also includes Computational Fluid Dynamics (CFD) calculations to evaluate the impact of optimized AuNRs on heat generation in a real-world scenario. A case study is presented in which lasers of different wavelengths irradiate a borosilicate glass embedded with a slab of AuNRs at its center. The results, reported as temperature distributions and temperature evolution during irradiation, indicate that the optimized AuNRs significantly enhance heat generation across various laser wavelengths. Specifically, temperature increases were observed as follows: from 2.28 to [Formula: see text] at 465 nm, from 1.91 to [Formula: see text] at 532 nm, from 1.7 to [Formula: see text] at 640 nm, from 40 to [Formula: see text] at 808 nm, and from 0.94 to [Formula: see text] at 980 nm, respectively. These findings underscore the effectiveness of the optimization process in enhancing photothermal conversion.

Keywords
AuNRs CFD DE algorithm Optimization Photothermal conversion Sustainable energy
作者与单位
共 6 位作者,点击展开单位 / ORCID
Koulali Aimad
Faculty of Mechanical Engineering and Ship Technology, Institute of Energy, Gdańsk University of Technology, Narutowicza 11/12, 80-233, Gdańsk, Poland.
Radomski Piotr
Faculty of Mechanical Engineering and Ship Technology, Institute of Energy, Gdańsk University of Technology, Narutowicza 11/12, 80-233, Gdańsk, Poland.
Ziółkowski Paweł
Faculty of Mechanical Engineering and Ship Technology, Institute of Energy, Gdańsk University of Technology, Narutowicza 11/12, 80-233, Gdańsk, Poland. [email protected].
Petronella Francesca
Institute of Crystallography CNR-IC, Montelibretti Division, National Research Council of Italy, Area Territoriale di Ricerca di Roma 1 Strada Provinciale 35d, n. 9, 00010, Montelibretti, RM, Italy.
De Sio Luciano
Department of Medico-Surgical Sciences and Biotechnologies, Sapienza University of Rome, Corso della Repubblica 79, 04100, Latina, Italy.
Mikielewicz Dariusz
Faculty of Mechanical Engineering and Ship Technology, Institute of Energy, Gdańsk University of Technology, Narutowicza 11/12, 80-233, Gdańsk, Poland.
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2025-03-19
电子出版
2025-00-19
页码
9543
Language
English
Country/Region
England
NLM ID
101563288
基金资助
Narodowym Centrum Nauki · 2021/43/D/ST8/02504
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