THIOACETAMIDE SOLUTION IN TRIBUTYLPHOSPHATE AS A SULFUR PRECURSOR FOR THE SYNTHESIS OF MONODISPERSE LEAD SULPHIDE QUANTUM DOTS
- Авторлар: Dyomkin D.V1, Galushko A.A1, Pevtsov D.N1,2
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Мекемелер:
- Moscow Institute of Physics and Technology
- Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry RAS
- Шығарылым: Том 59, № 6 (2025)
- Беттер: 467-470
- Бөлім: КРАТКИЕ СООБЩЕНИЯ НАНОДИСПЕРСНЫЕ СИСТЕМЫ И МАТЕРИАЛЫ
- URL: https://journals.rcsi.science/0023-1193/article/view/355988
- DOI: https://doi.org/10.7868/S3034543X25060126
- ID: 355988
Дәйексөз келтіру
Аннотация
Негізгі сөздер
Авторлар туралы
D. Dyomkin
Moscow Institute of Physics and Technology
Email: dyomkin.dv@phystech.edu
Dolgoprudny, Russia
A. Galushko
Moscow Institute of Physics and TechnologyDolgoprudny, Russia
D. Pevtsov
Moscow Institute of Physics and Technology; Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry RASDolgoprudny, Russia; Chernogolovka, Russia
Әдебиет тізімі
- Lu K. et al. Efficient PbS quantum dot solar cells employing a conventional structure // Journal of Materials Chemistry A. 2017. Т. 5. №. 45. С. 23960–23966.
- Zhang X. et al. Stability enhancement of PbS quantum dots by site-selective surface passivation for near-infrared LED application // Nano Research. 2021. Т. 14. С. 628–634.
- Пономаренко В.П., Попов В.С., Панков М.А. и др. Неохлаждаемый матричный фотосенсор 640.512 с расширенной областью чувствительности 0.4-2.0 мкм на основе коллоидных квантовых точек ККТ PbS cо слоем из p-NiOx, блокирующим электроны // Прикладная физика. 2025. № 2. С. 12–20. https://doi.org/10.51368/1996-0948-2025-2-12-20
- Пономаренко В.П., Попов В.С., Панков М.А. и др. Неохлаждаемый матричный фотосенсор 640.512 для области спектра 0,4-2,0 мкм из коллоидных квантовых точек ККТ PbS с транспортным слоем для дырок на основе ККТ p-PbS-EDT // Прикладная физика. 2025. № 1. С. 45–54. https://doi.org/10.51368/1996-0948-2025-1-45-54
- Thomson, Jordan W., et al. From sulfur-amine solutions to metal sulfide nanocrystals: peering into the oleylamine – sulfur black box // Journal of the American Chemical Society. 2011. № 133.13. С. 5036–5041.
- Liu, Jincheng, et al. Size-tunable near-infrared PbS nanoparticles synthesized from lead carboxylate and sulfurwith oleylamine as stabilizer // Nanotechnology. 2008. № 19.34. С. 345602.
- Tilluck, Ryan W, et al. Rapid and facile synthesis of high-quality, oleate-capped PbS nanocrystals // RSC Advances. 2016. № 6.85. С. 81780–81788.
- Mauritz V., Crisp R. W. Unravelling the intricacies of solvents and sulfur sources in colloidal synthesis of metal sulfide semiconductor nanocrystals // Journal of Materials Chemistry C. 2024.
- He H., Mei S., Chen Z., Liu S., Wen Z., Cui Z., Yang D., Zhang W., Xie F., Yang B., Guo R. and Xing G. Thioacetamide-ligand-mediated synthesis of CsPbBr3–CsPbBr3 homostructured nanocrystals with enhanced stability // J. Mater. Chem. 2021. № 9. С. 11349–11357.
- Dong C. et al. Long-wavelength lead sulfide quantum dots sensing up to 2600 nm for short-wavelength infrared photodetectors // ACS applied materials & interfaces. 2019. Т. 11. № 47. С. 44451–44457.
- Moreels, Iwan, et al. Size-dependent optical properties of colloidal PbS quantum dots // ACS nano. 2009. № 3.10. С. 3023–3030.
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