Probing Wave Functions at Semiconductor Quantum-Dot Surfaces by Non-FRET Photoluminescence Quenching

被引:78
作者
Blaudeck, Thomas
Zenkevich, Eduard I.
Cichos, Frank
von Borczyskowski, Christian [1 ]
机构
[1] Tech Univ Chemnitz, Inst Phys, D-09107 Chemnitz, Germany
关键词
D O I
10.1021/jp8074817
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
Steady-state photoluminescence (PL) quenching of colloidal CdSe/ZnS and CdSe quantum dots (QDs) induced by functionalized porphyrin molecules was investigated for various QD sizes. The majority of the observed strong quenching of the QD photoluminescence can be assigned to neither Forster resonant energy transfer (FRET) nor photoinduced charge transfer between the QDs and the chromophore. Using the remaining small FRET efficiency to monitor the formation of QD/chromophore nanoassemblies, the major contribution to PL quenching was found to be proportional to the calculated quantum-confined exciton wave function at the QD surface. The quenching depends on the QD size and shell and is stronger for smaller quantum dots. Upon comparison of experimentally determined quenching rates and calculations of the exciton wave function, it was concluded that the attachment of only one chromophore induces a pertubation of the wave function that is accompanied by a strong increase of the radiationless decay rate.
引用
收藏
页码:20251 / 20257
页数:7
相关论文
共 46 条
[1]   Semiconductor clusters, nanocrystals, and quantum dots [J].
Alivisatos, AP .
SCIENCE, 1996, 271 (5251) :933-937
[2]   Imaging single quantum dots in three-dimensional photonic crystals [J].
Barth, Michael ;
Schuster, Roman ;
Gruber, Achim ;
Cichos, Frank .
PHYSICAL REVIEW LETTERS, 2006, 96 (24)
[3]   Quantum dot bioconjugates for ultrasensitive nonisotopic detection [J].
Chan, WCW ;
Nie, SM .
SCIENCE, 1998, 281 (5385) :2016-2018
[4]   Relationship between single quantum-dot intermittency and fluorescence intensity decays from collections of dots [J].
Chung, IH ;
Bawendi, MG .
PHYSICAL REVIEW B, 2004, 70 (16) :1-5
[5]   Power-law intermittency of single emitters [J].
Cichos, F. ;
von Borczyskowski, C. ;
Orrit, M. .
CURRENT OPINION IN COLLOID & INTERFACE SCIENCE, 2007, 12 (06) :272-284
[6]   Emission intermittency in silicon nanocrystals [J].
Cichos, F ;
Martin, J ;
von Borczyskowski, C .
PHYSICAL REVIEW B, 2004, 70 (11) :115314-1
[7]   (CdSe)ZnS core-shell quantum dots: Synthesis and characterization of a size series of highly luminescent nanocrystallites [J].
Dabbousi, BO ;
RodriguezViejo, J ;
Mikulec, FV ;
Heine, JR ;
Mattoussi, H ;
Ober, R ;
Jensen, KF ;
Bawendi, MG .
JOURNAL OF PHYSICAL CHEMISTRY B, 1997, 101 (46) :9463-9475
[8]   Color-selective semiconductor nanocrystal laser [J].
Eisler, HJ ;
Sundar, VC ;
Bawendi, MG ;
Walsh, M ;
Smith, HI ;
Klimov, V .
APPLIED PHYSICS LETTERS, 2002, 80 (24) :4614-4616
[9]  
Gaponenko S.V., 1998, OPTICAL PROPERTIES S
[10]   Set of secondary emission standards for calibration of the spectral responsivity in emission spectroscopy [J].
Gardecki, JA ;
Maroncelli, M .
APPLIED SPECTROSCOPY, 1998, 52 (09) :1179-1189