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Kvantovaya Elektronika, 2010, Volume 40, Number 11, Pages 986–1003 (Mi qe14446)  

This article is cited in 45 scientific papers (total in 45 papers)

Photonics and nanotechnology

Laser synthesis and modification of composite nanoparticles in liquids

N. V. Tarasenko, A. V. Butsen

B. I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, Minsk
References:
Abstract: The works devoted to the formation and modification of nanoparticles using laser ablation of solid targets in liquids are reviewed. Several approaches to implement laser ablation in liquids, aimed at synthesising nanoparticles of complex composition, are considered: direct laser ablation of a target of corresponding composition, laser ablation of a combined target composed of two different metals, laser irradiation of a mixture of two or more colloidal solutions, and laser ablation in reactive liquids. The properties of two-component bimetallic systems (Ag — Cu, Ag — Au), semiconductor nanocrystals (ZnO, CdSe), chalcopyrite nanoparticles, and doped oxide nanoparticles (ZnO:Ag, Gd2O2:Tb3+) formed as a result of single- and double-pulse laser ablation in different liquids (water, ethanol, acetone, solutions of polysaccharides) are discussed.
Received: 19.08.2010
Revised: 23.09.2010
English version:
Quantum Electronics, 2010, Volume 40, Issue 11, Pages 986–1003
DOI: https://doi.org/10.1070/QE2010v040n11ABEH014446
Bibliographic databases:
Document Type: Article
PACS: 52.38.Mf, 81.07.-b, 81.16.Mk
Language: Russian


Citation: N. V. Tarasenko, A. V. Butsen, “Laser synthesis and modification of composite nanoparticles in liquids”, Kvantovaya Elektronika, 40:11 (2010), 986–1003 [Quantum Electron., 40:11 (2010), 986–1003]
Linking options:
  • https://www.mathnet.ru/eng/qe14446
  • https://www.mathnet.ru/eng/qe/v40/i11/p986
  • This publication is cited in the following 45 articles:
    1. Pablo Carpio-Martínez, Víctor Fabián Ruiz, Miguel A Camacho-López, Víctor Sánchez-Mendieta, Alfredo R Vilchis-Nestor, Phys. Scr., 99:5 (2024), 055940  crossref
    2. Elham Mohebi, Shaghayegh AdibAmini, Amir Hossein Sari, Davoud Dorranian, Plasmonics, 19:1 (2024), 75  crossref
    3. Shaghayegh AdibAmini, Amir Hossein Sari, Davoud Dorranian, SN Appl. Sci., 5:4 (2023)  crossref
    4. Natalie Tarasenka, Vladislav Kornev, Andrei Ramanenka, Ruibin Li, Nikolai Tarasenko, Heliyon, 8:6 (2022), e09554  crossref
    5. N. A. Bosak, A. N. Chumakov, M. V. Bushinsky, G. M. Chobot, L. V. Baran, A. A. Shevchenok, V. V. Malyutina-Bronskaya, A. A. Ivanov, Ž. prikl. spektrosk. (Minsk), 89:5 (2022), 657  crossref
    6. N. A. Bosak, A. N. Chumakov, M. V. Bushinsky, G. M. Chobot, L. V. Baran, A. A. Shevchenok, V. V. Malyutina-Bronskaya, A. A. Ivanov, J Appl Spectrosc, 89:5 (2022), 865  crossref
    7. Tarasenka N., Shustava E., Butsen A., Kuchmizhak A.A., Pashayan S., Kulinich S.A., Tarasenko N., Appl. Surf. Sci., 554 (2021), 149570  crossref  isi  scopus
    8. Kiris V.V., Butsen V A., Ershov-Pavlov E.A., Nedelko I M., Nevar A.A., Int. J. Nanosci., 18:3-4, SI (2019), 1940022  crossref  isi  scopus
    9. Tarasenko N., Kiris V., Tarasenka N., Nevar A., Kuzmanovic M., Rankovic P.P., Savovic J., Trtica M., Int. J. Nanosci., 18:3-4, SI (2019), 1940048  crossref  isi
    10. Singh R., Soni R.K., Noble Metal-Metal Oxide Hybrid Nanoparticles: Fundamentals and Applications, Micro & Nano Technologies, eds. Mohapatra S., Nguyen T., NguyenTri P., Elsevier Science Bv, 2019, 195–238  crossref  isi
    11. Chemin A., Lam J., Laurens G., Trichard F., Motto-Ros V., Ledoux G., Jary V., Laguta V., Nikl M., Dujardin Ch., Amans D., Nanoscale Adv., 1:10 (2019), 3963–3972  crossref  isi  scopus
    12. Krstulovic N., Salamon K., Budimlija O., Kovac J., Dasovic J., Umek P., Capan I., Appl. Surf. Sci., 440 (2018), 916–925  crossref  isi  scopus
    13. Levchenko I., Bazaka K., Baranov O., Sankaran R.M., Nomine A., Belmonte T., Xu Sh., Appl. Phys. Rev., 5:2 (2018), 021103  crossref  isi  scopus
    14. Shih Ch.-Yu. Wu Ch. Wu H. Shugaev M.V. Zhigilei L.V., Pulsed Laser Ablation: Advances and Applications in Nanoparticles and Nanostructuring Thin Films, ed. Mihailescu I. Caricato A., Pan Stanford Publishing Pte Ltd, 2018, 425–470  isi
    15. Dougherty A., Harper C., Iskandar F., Arif I., Dougherty G., J. Sci., 3:4 (2018), 419–427  crossref  isi  scopus
    16. Schlemmer W., Fischer W., Zankel A., Vukusic T., Filipic G., Jurov A., Blazeka D., Goessler W., Bauer W., Spirk S., Krstulovic N., Materials, 11:12 (2018), 2412  crossref  isi  scopus
    17. Zhang D. Goekce B. Barcikowski S., Chem. Rev., 117:5 (2017), 3990–4103  crossref  isi  scopus
    18. Shih Ch.-Yu., Wu Ch., Shugaev M.V., Zhigilei L.V., J. Colloid Interface Sci., 489:SI (2017), 3–17  crossref  isi  elib  scopus
    19. Amans D., Diouf M., Lam J., Ledoux G., Dujardin Ch., J. Colloid Interface Sci., 489:SI (2017), 114–125  crossref  isi  elib  scopus
    20. Tarasenka N.N., Nevar A.A., Butsen A.V., Tarasenko N.V., Velusamy T., Chakrabarti S., Mariotti D., Kabbara H., Nomine A., Belmonte T., Proceedings of the 2017 IEEE 7Th International Conference Nanomaterials: Application & Properties (Nap), Proceedings of the International Conference Nanomaterials-Applications and Properties, eds. Pogrebnjak A., Novosad V., Zukowski P., Protsenko S., Shabelnyk Y., IEEE, 2017, UNSP 01NNPT05  isi
    Citing articles in Google Scholar: Russian citations, English citations
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    Квантовая электроника Quantum Electronics
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