Experimental verification of Forster energy transfer between semiconductor quantum dots

被引:80
|
作者
Kim, DaeGwi [1 ]
Okahara, Shinya [1 ]
Nakayama, Masaaki [1 ]
Shim, YongGu [2 ]
机构
[1] Osaka City Univ, Dept Appl Phys, Sumiyoshi Ku, Osaka 5588585, Japan
[2] Osaka Prefecture Univ, Dept Phys & Elect, Naka Ku, Osaka 5998531, Japan
关键词
D O I
10.1103/PhysRevB.78.153301
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In recent years, energy transfer (ET) using semiconductor quantum dots (QDs) is getting increased attention. However, it has been postulated that ET between QDs is based on the Forster model, which is a well-established model of ET mechanism in organic dye systems, without verification. In this work, we have investigated ET mechanism in colloidal CdS QDs measuring photoluminescence dynamics of a bilayer structure consisting of differently sized CdS QDs. In the bilayer structure, the distance between the monolayer of donor QDs and that of acceptor QDs was controlled precisely by a spacer layer that is layer-by-layer assembly of polyelectrolytes. The bilayer structure enabled us to systematically measure the spacer-layer dependence of photoluminescence dynamics reflecting the ET process between QDs. It is demonstrated that ET between the donor and acceptor QDs is conclusively dominated by the dipole-dipole interaction, which verifies the appropriateness of the Forster model.
引用
收藏
页数:4
相关论文
共 50 条
  • [1] Experimental verification of Forster energy transfer and quantum resonance between semiconductor quantum dots
    Kim, DaeGwi
    Lee, TaeGi
    Lee, Yong-Shin
    Watanabe, Taichi
    CURRENT APPLIED PHYSICS, 2018, 18 : S14 - S20
  • [2] Experimental verification of Forster energy transfer between semiconductor quantum dots (vol 78, art no 153301, 2008)
    Kim, DaeGwi
    Okahara, Shinya
    Nakayama, Masaaki
    Shim, YongGu
    PHYSICAL REVIEW B, 2008, 78 (23):
  • [3] Plasmon-enhanced Forster energy transfer between semiconductor quantum dots: multipole effects
    Su, Xiong-Rui
    Zhang, Wei
    Zhou, Li
    Peng, Xiao-Niu
    Wang, Qu-Quan
    OPTICS EXPRESS, 2010, 18 (07): : 6516 - 6521
  • [4] Nonradiative and radiative Forster energy transfer between quantum dots
    Poddubny, A. N.
    Rodina, A. V.
    JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS, 2016, 122 (03) : 531 - 538
  • [5] Complex Forster Energy Transfer Interactions between Semiconductor Quantum Dots and a Redox-Active Osmium Assembly
    Stewart, Michael H.
    Huston, Alan L.
    Scott, Amy M.
    Efros, Alexander L.
    Melinger, Joseph S.
    Gemmill, Kelly Boeneman
    Trammell, Scott A.
    Blanco-Canosa, Juan B.
    Dawson, Philip E.
    Medintz, Igor L.
    ACS NANO, 2012, 6 (06) : 5330 - 5347
  • [6] Quantum dots for Forster Resonance Energy Transfer FRET
    Dos Santos, Marcelina Cardoso
    Algar, W. Russ
    Medintz, Igor L.
    Hildebrandt, Niko
    TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2020, 125
  • [7] Semiconductor Quantum Dots as Forster Resonance Energy Transfer Donors for Intracellularly-Based Biosensors
    Field, Lauren D.
    Walper, Scott A.
    Susumu, Kimihiro
    Oh, Eunkeu
    Medintz, Igor L.
    Delehanty, James B.
    COLLOIDAL NANOPARTICLES FOR BIOMEDICAL APPLICATIONS XII, 2017, 10078
  • [8] Nonradiative Resonance Energy Transfer between Semiconductor Quantum Dots
    Samosvat, D. M.
    Chikalova-Luzina, O. P.
    Zegrya, G. G.
    JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS, 2015, 121 (01) : 76 - 95
  • [9] Nonradiative resonance energy transfer between semiconductor quantum dots
    D. M. Samosvat
    O. P. Chikalova-Luzina
    G. G. Zegrya
    Journal of Experimental and Theoretical Physics, 2015, 121 : 76 - 95
  • [10] Plasmon-Coupled Forster Resonance Energy Transfer between Silicon Quantum Dots
    Cao, Jiahao
    Zhang, Hanjie
    Liu, Xiangkai
    Zhou, Ning
    Pi, Xiaodong
    Li, Dongsheng
    Yang, Deren
    JOURNAL OF PHYSICAL CHEMISTRY C, 2019, 123 (38): : 23604 - 23609