PbS Quantum Dots in a Porous Matrix: Optical Characterization

被引:33
作者
Litvin, Aleksandr P. [1 ]
Parfenov, Peter S. [1 ]
Ushakova, Elena V. [1 ]
Fedorov, Anatoly V. [1 ]
Artemyev, Mikhail V. [2 ]
Prudnikau, Anatol V. [2 ]
Golubkov, Valery V. [3 ]
Baranov, Alexander V. [1 ]
机构
[1] Natl Res Univ Informat Technol Mech & Opt, St Petersburg 197101, Russia
[2] Belarusian State Univ, Inst Phys Chem Problems, Minsk 220030, BELARUS
[3] Russian Acad Sci, IV Grebenschikov Inst Silicate Chem, St Petersburg 199155, Russia
关键词
TIME-RESOLVED PHOTOLUMINESCENCE; ENERGY-TRANSFER; LUMINESCENCE; KINETICS; NANOCRYSTALS; SPECTROSCOPY; STATE; DECAY;
D O I
10.1021/jp402287b
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We propose simple and practical method for creation of quantum dot (QD) systems in a porous matrix. The commercial filter paper is soaked in the colloidal solution of PbS QDs in carbon tetrachloride followed by drying. The samples prepared by the method demonstrate linear dependencies of optical density and photoluminescence intensity on the QD concentration, excellent homogeneity, and reproducibility. A red-shift of QD photoluminescence spectrum after their infiltration into the matrix and energy transfer between QDs of different sizes indicate formation of the close-packed QD system. Optical properties and stability of the close-packed PbS quantum dot systems are investigated at room temperature in a wide range of QD sizes. A strong reduction of average QD photoluminescence lifetime from 435 to 55 ns with decreasing QD diameter from 3.0 to 7.4 nm has been found. A blue-shift of the photoluminescence spectra accompanied by increasing the photoluminescence lifetime observed for small and medium QDs with the sample storage indicates decreasing the QD size due to oxidation of their surface.
引用
收藏
页码:12318 / 12324
页数:7
相关论文
共 51 条
[1]   Picosecond energy transfer in quantum dot Langmuir-Blodgett nanoassemblies [J].
Achermann, M ;
Petruska, MA ;
Crooker, SA ;
Klimov, VI .
JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (50) :13782-13787
[2]   Multigram scale, solventless, and diffusion-controlled route to highly monodisperse PbS nanocrystals [J].
Cademartiri, L ;
Bertolotti, J ;
Sapienza, R ;
Wiersma, DS ;
von Freymann, G ;
Ozin, GA .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (02) :671-673
[3]   Size-dependent extinction coefficients of PbS quantum dots [J].
Cademartiri, Ludovico ;
Montanari, Erica ;
Calestani, Gianluca ;
Migliori, Andrea ;
Guagliardi, Antonietta ;
Ozin, Geoffrey A. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (31) :10337-10346
[4]   Quantum dots in biomedical applications: advances and challenges [J].
Cinteza, Ludmila Otilia .
JOURNAL OF NANOPHOTONICS, 2010, 4
[5]   Resonant energy transfer in PbS quantum dots [J].
Clark, Stephen W. ;
Harbold, Jeffrey M. ;
Wise, Frank W. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (20) :7302-7305
[6]   Near Infrared Emission from Monomodal and Bimodal PbS Nanocrystal Superlattices [J].
Corricelli, Michela ;
Enrichi, Francesco ;
Altamura, Davide ;
De Caro, Liberato ;
Giannini, Cinzia ;
Falqui, Andrea ;
Agostiano, Angela ;
Curri, M. Lucia ;
Striccoli, Marinella .
JOURNAL OF PHYSICAL CHEMISTRY C, 2012, 116 (10) :6143-6152
[7]   Broadband near-infrared luminescence and tunable optical amplification around 1.55 μm and 1.33 μm of PbS quantum dots in glasses [J].
Dong, Guoping ;
Wu, Botao ;
Zhang, Fangteng ;
Zhang, Liaolin ;
Peng, Mingying ;
Chen, Dongdan ;
Wu, E. ;
Qiu, Jianrong .
JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (38) :9335-9339
[8]   Optical properties of colloidal PbSe nanocrystals [J].
Du, H ;
Chen, CL ;
Krishnan, R ;
Krauss, TD ;
Harbold, JM ;
Wise, FW ;
Thomas, MG ;
Silcox, J .
NANO LETTERS, 2002, 2 (11) :1321-1324
[9]   Colloidal quantum dot solar cells [J].
Emin, Saim ;
Singh, Surya P. ;
Han, Liyuan ;
Satoh, Norifusa ;
Islam, Ashraful .
SOLAR ENERGY, 2011, 85 (06) :1264-1282
[10]   Highly efficient luminescence from a hybrid state found in strongly quantum confined PbS nanocrystals [J].
Fernée, MJ ;
Thomsen, E ;
Jensen, P ;
Rubinsztein-Dunlop, H .
NANOTECHNOLOGY, 2006, 17 (04) :956-962