Photothermal Effects and Heat Conduction in Nanogranular Silicon Films

  • Bayan A Kurbanova
  • , Gauhar K Mussabek
  • , Viktor Y Timoshenko
  • , Vladimir Lysenko
  • , Zhandos N Utegulov

Результат исследованийрецензирование

7   !!Link opens in a new tab Цитирования (Scopus)

Аннотация

We present results on the photothermal (PT) and heat conductive properties of nanogranular silicon (Si) films synthesized by evaporation of colloidal droplets (drop-casting) of 100 ± 50 nm-sized crystalline Si nanoparticles (NP) deposited on glass substrates. Simulations of the absorbed light intensity and photo-induced temperature distribution across the Si NP films were carried out by using the Finite difference time domain (FDTD) and finite element mesh (FEM) modeling and the obtained data were compared with the local temperatures measured by micro-Raman spectroscopy and then was used for determining the heat conductivities k in the films of various thicknesses. The cubic-to-hexagonal phase transition in Si NP films caused by laser-induced heating was found to be heavily influenced by the film thickness and heat-conductive properties of glass substrate, on which the films were deposited. The k values in drop-casted Si nanogranular films were found to be in the range of lowest k of other types of nanostructurely voided Si films due to enhanced phonon scattering across inherently voided topology, weak NP-NP and NP-substrate interface bonding within nanogranular Si films.

Язык оригиналаEnglish
Номер статьи2379
ЖурналNanomaterials
Том11
Номер выпуска9
СостояниеPublished - сент. 13 2021

Финансирование

СпонсорыНомер спонсора
Kazakhstan Ministry of Education & ScienceAP05130446, BR05236454
Nazarbayev University FDCR110119FD4501
Physics Faculty of Kyiv National Taras Shevchenko University
Ministry of Education and Science of the Russian FederationFSWU-2020-0035

    ASJC Scopus subject areas

    • General Chemical Engineering
    • General Materials Science

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