Nanosecond laser-induced photomodification of gold nanostars of various sizes

Gold nanostars are one of the new types of nanoparticles with advantages such as plasmon resonance tunability and low toxicity. Therefore, gold nanostars are promising candidates for various biomedical applications including bioimaging, cell optoporation and plasmonic photothermal therapy (PTT) in N...

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Published in:Proceedings of SPIE Vol. 11458 : Saratov fall meeting 2019 : Laser physics, photonic technologies, and molecular modeling. P. 1145809-1-1145809-7
Other Authors: Kushneruk, Snezhana A., Simonenko, Andrey V., Akchurin, Georgy G., Akchurin, Garif G., Tuchin, Valery V., Khlebtsov, Nikolay G., Khanadeev, Vitaly A.
Format: Article
Language:English
Subjects:
Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000792110
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039 9 |a 202101211830  |b 100  |c 202101181707  |d VLOAD  |y 202101181652  |z Александр Эльверович Гилязов 
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245 1 0 |a Nanosecond laser-induced photomodification of gold nanostars of various sizes  |c V. A. Khanadeev, S. A. Kushneruk, A. V. Simonenko [et al.] 
336 |a Текст 
337 |a электронный 
504 |a Библиогр.: 12 назв. 
520 3 |a Gold nanostars are one of the new types of nanoparticles with advantages such as plasmon resonance tunability and low toxicity. Therefore, gold nanostars are promising candidates for various biomedical applications including bioimaging, cell optoporation and plasmonic photothermal therapy (PTT) in NIR I, II, and III optical transparency windows of biotissues. However, the stability and possible transformation of gold nanostars under laser irradiation still remains unexplored. In this work, we studied the photomodification of gold nanostars under the 1064-nm nanosecond pulsed laser irradiation by the transmission electron microscopy and spectrophotometry. The photostability of nanostars depends on their morphology and the plasmonic properties. Specifically, for large nanostars with a plasmon resonance at 950 nm remarkable changes occur at a threshold pulse energy of 5 μJ. At this threshold, a significant part of nanostars spikes melts and most of the nanostars start to transform into gold spheres. For higher pulse energies of about 50 μJ, all stars transform into spheres. For smaller gold stars with a plasmon resonance at 680 nm, the changes are less pronounced. Up to pulse energy of 50 μJ, they retain the shape of stars and have spikes on their surface. Moreover, the complete transformation of these stars into spheres does not occur up to pulse energy of about 150 μJ. The obtained results can be important for optimization of PTT treatment with gold nanostars and nanosecond laser irradiation. 
653 |a плазмонный резонанс 
653 |a нанозвезды 
653 |a импульсные лазеры 
653 |a Фотомодификация 
653 |a спектры экстинкции 
655 4 |a статьи в журналах  |9 879358 
700 1 |a Kushneruk, Snezhana A.  |9 508562 
700 1 |a Simonenko, Andrey V.  |9 508563 
700 1 |a Akchurin, Georgy G.  |9 508564 
700 1 |a Akchurin, Garif G.  |9 508565 
700 1 |a Tuchin, Valery V.  |9 78712 
700 1 |a Khlebtsov, Nikolay G.  |9 106606 
700 1 |a Khanadeev, Vitaly A.  |9 508566 
773 0 |t Proceedings of SPIE  |d 2020  |g Vol. 11458 : Saratov fall meeting 2019 : Laser physics, photonic technologies, and molecular modeling. P. 1145809-1-1145809-7  |x 0277-786X 
852 4 |a RU-ToGU 
856 4 |u http://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000792110 
856 |y Перейти в каталог НБ ТГУ  |u https://koha.lib.tsu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=476947 
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