High photo-electrochemical activity of thylakoid-carbon nanotube composites for photosynthetic energy conversion

被引:164
作者
Calkins, Jessica O. [1 ]
Umasankar, Yogeswaran [1 ]
O'Neill, Hugh [2 ]
Ramasamy, Ramaraja P. [1 ]
机构
[1] Univ Georgia, Nanoscale Sci & Engn Ctr, Coll Engn, Nano Electrochem Lab, Athens, GA 30602 USA
[2] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
关键词
PHOTOINDUCED ELECTRON-TRANSFER; PHOTOSYSTEM-II; SOLAR-ENERGY; REACTION CENTERS; WATER; LIGHT; GOLD; GENERATION; REDUCTION; COMPLEXES;
D O I
10.1039/c3ee40634b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Spinach thylakoids were immobilized onto multiwalled carbon nanotubes using a molecular tethering chemistry. The resulting thylakoid-carbon nanotube composites showed high photo-electrochemical activity under illumination. Multiple membrane proteins have been observed to participate in direct electron transfer with the electrode, resulting in the generation of photocurrents, the first of its kind reported for natural photosynthetic systems. Upon inclusion of a mediator, the photo-activity was enhanced. The major contributor to the photocurrent was the light-induced water oxidation reaction at the photosystem II complex. The thylakoid-MWNT composite electrode yielded a maximum current density of 68 mA cm(-2) and a steady state current density of 38 mA cm(-2), which are two orders of magnitude larger than previously reported for similar systems. The high electrochemical activity of the thylakoid-MWNT composites has significant implications for both photosynthetic energy conversion and photofuel production applications. A fuel cell type photosynthetic electrochemical cell developed using a thylakoid-MWNT composite anode and laccase cathode produced a maximum power density of 5.3 mW cm(-2), comparable to that of enzymatic fuel cells. The carbon based nanostructured electrode has the potential to serve as an excellent immobilization support for photosynthetic electrochemistry based on the molecular tethering approach as demonstrated in this work.
引用
收藏
页码:1891 / 1900
页数:10
相关论文
共 60 条
  • [1] Photocatalytic Degradation of 1,4-Benzoquinone in Aqueous ZnO Dispersions
    Abdollahi, Yadollah
    Abdullah, Abdul H.
    Gaya, Umar I.
    Ahmadzadeh, Saeid
    Zakaria, Azmi
    Shameli, Kamyar
    Zainal, Zulkarnain
    Jahangirian, Hossein
    Yusof, Nor Azah
    [J]. JOURNAL OF THE BRAZILIAN CHEMICAL SOCIETY, 2012, 23 (02) : 236 - 240
  • [2] Photoactivity characteristics of a biodevice using primary photosynthetic reaction centers
    Abe, K
    Ishii, A
    Hirano, M
    Rusling, JF
    [J]. ELECTROANALYSIS, 2005, 17 (24) : 2266 - 2272
  • [3] Ahmed J, 2009, B KOREAN CHEM SOC, V30, P2195
  • [4] [Anonymous], 2002, Molecular Mechanisms of Photosynthesis
  • [5] Photo-induced electron transfer between photosystem 2 via cross-linked redox hydrogels
    Badura, Adrian
    Guschin, Dmitrii
    Esper, Berndt
    Kothe, Tim
    Neugebauer, Sebastian
    Schuhmann, Wolfgang
    Roegner, Matthias
    [J]. ELECTROANALYSIS, 2008, 20 (10) : 1043 - 1047
  • [6] Light-driven water splitting for (bio-)hydrogen production:: photosystern 2 as the central part of a bioelectrochemical device
    Badura, Adrian
    Esper, Berndt
    Ataka, Kenichi
    Grunwald, Christian
    Woell, Christof
    Kuhlmann, Juergen
    Heberle, Joachim
    Roegner, Matthias
    [J]. PHOTOCHEMISTRY AND PHOTOBIOLOGY, 2006, 82 (05) : 1385 - 1390
  • [7] Photosystem II: the engine of life
    Barber, J
    [J]. QUARTERLY REVIEWS OF BIOPHYSICS, 2003, 36 (01) : 71 - 89
  • [8] ARTIFICIAL PHOTOSYNTHESIS - SOLAR SPLITTING OF WATER TO HYDROGEN AND OXYGEN
    BARD, AJ
    FOX, MA
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 1995, 28 (03) : 141 - 145
  • [9] Baroli I, 1996, PLANTA, V198, P640, DOI 10.1007/BF00262653
  • [10] Bartlett P. N, 2008, BIOELECTROCHEMISTRY, DOI DOI 10.1002/9780470753842