Metal-enhanced superoxide generation: A consequence of plasmon-enhanced triplet yields

被引:11
|
作者
Zhang, Yongxia
Aslan, Kadir
Previte, Michael J. R.
Geddes, Chris D.
机构
[1] Univ Maryland, Inst Biotechnol, Inst Flourescence, Ctr Med Biotechnol, Baltimore, MD 21201 USA
[2] Univ Maryland, Inst Biotechnol, Inst Flourescence, Lab Adv Med Plasmon, Baltimore, MD 21201 USA
关键词
D O I
10.1063/1.2753718
中图分类号
O59 [应用物理学];
学科分类号
摘要
The authors report significant enhancements in the generation of superoxide for fluorophores in close proximity to silver nanoparticles. A distance dependence study of the fluorophores from the metallic nanostructures, combined with carefully chosen control samples, confirms that the enhancements in superoxide generation are due to plasmon-enhanced triplet yields, a consequence of the distance dependent sensitizer extent of excitation. This observation strongly agrees with current models developed by the authors. Given that the generation of superoxide and other oxygen species is important for many chemical and biological applications, then we believe that our findings are likely to fuel a wealth of oxygen-based plasmon-enhanced triplet assays. (C) 2007 American Institute of Physics.
引用
收藏
页数:3
相关论文
共 50 条
  • [21] Efficient Photocatalysis of Composite Films Based on Plasmon-Enhanced Triplet-Triplet Annihilation
    Fang, Jiaojiao
    Zhou, Cihui
    Chen, Yukai
    Fang, Liang
    Wang, Wei
    Zhu, Cheng
    Ni, Yaru
    Lu, Chunhua
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (01) : 717 - 726
  • [22] Diffractive coupling and plasmon-enhanced photocurrent generation in silicon
    Uhrenfeldt, C.
    Villesen, T. F.
    Johansen, B.
    Jung, J.
    Pedersen, T. G.
    Larsen, A. Nylandsted
    OPTICS EXPRESS, 2013, 21 (18): : A774 - A785
  • [23] Plasmon-enhanced optical trapping of individual metal nanorods
    Pelton, Matthew
    Liu, Mingzhao
    Toussaint, Kimani C., Jr.
    Kim, Hee Y.
    Smith, Glenna
    Pesic, Jelena
    Guyot-Sionnest, Philippe
    Scherer, Norbert F.
    OPTICAL TRAPPING AND OPTICAL MICROMANIPULATION IV, 2007, 6644
  • [24] Metal/Semiconductor Hybrid Nanostructures for Plasmon-Enhanced Applications
    Jiang, Ruibin
    Li, Benxia
    Fang, Caihong
    Wang, Jianfang
    ADVANCED MATERIALS, 2014, 26 (31) : 5274 - 5309
  • [25] Plasmon-enhanced second harmonic generation in semiconductor quantum dots close to metal nanoparticles
    Jais, Pablo M.
    von Bilderling, Catalina
    Bragas, Andrea V.
    PAPERS IN PHYSICS, 2011, 3 : 030002 - 1
  • [26] Plasmon-enhanced chemical reactions
    Xiao, Manda
    Jiang, Ruibin
    Wang, Feng
    Fang, Caihong
    Wang, Jianfang
    Yu, Jimmy C.
    JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (19) : 5790 - 5805
  • [27] Plasmon-enhanced Bragg diffraction
    Epstein, Itai
    Dolev, Ido
    Bar-Lev, Doron
    Arie, Ady
    PHYSICAL REVIEW B, 2012, 86 (20):
  • [28] Plasmon-enhanced triplet-triplet annihilation upconversion of post-modified polymeric acceptors
    Westbrook, Emily G.
    Zhang, Peng
    DALTON TRANSACTIONS, 2018, 47 (26) : 8638 - 8645
  • [29] Plasmon-enhanced photodetection in nanostructures
    Bao, Yanjun
    Fang, Zheyu
    NANOTECHNOLOGY REVIEWS, 2015, 4 (04) : 325 - 336
  • [30] Plasmon-Enhanced Expansion Microscopy
    Rathi, Priya
    Gupta, Prashant
    Debnath, Avishek
    Baldi, Harsh
    Wang, Yixuan
    Gupta, Rohit
    Raman, Baranidharan
    Singamaneni, Srikanth
    NANO LETTERS, 2023, 23 (12) : 5654 - 5662