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Photoactive film by covalent immobilization of a bacterial photosynthetic protein on reduced graphene oxide surface
Published online by Cambridge University Press: 05 February 2015
Abstract
Covalent functionalization of reduced graphene oxide (rGO) with the photosynthetic reaction center (RC) from Rhodobacter sphaeroides R26 via click chemistry reaction has been performed. The hybrid system was characterized by flash photolysis and infrared spectroscopy and the RC was found to retain its photoactivity and structural integrity. The strategy is applicable for the fabrication of hybrid bio-electronic devices capable of absorbing and converting solar energy.
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- MRS Online Proceedings Library (OPL) , Volume 1717: Symposium A – Organic Bioelectronics , 2015 , mrsf14-1717-a03-01
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- Copyright © Materials Research Society 2015
References
REFERENCES
Blankenship, R. E., Molecular Mechanisms of Photosynthesis. (Blackwell Science Ltd., Oxford, 2002).CrossRefGoogle Scholar
Maróti, P. and Trotta, M., in CRC Handbook of Organic Photochemistry and Photobiology, Third Edition - Two Volume Set (CRC Press, 2012), pp. 1289–1324.CrossRefGoogle Scholar
Gunther, D., LeBlanc, G., Prasai, D., Zhang, J. R., Cliffel, D. E., Bolotin, K. I. and Jennings, G. K., Langmuir
29(13), 4177–4180 (2013).CrossRefGoogle Scholar
Darby, E., LeBlanc, G., Gizzie, E. A., Winter, K. M., Jennings, G. K. and Cliffel, D. E., Langmuir
30(29), 8990–8994 (2014).CrossRefGoogle Scholar
Dorogi, M., Bálint, Z., Miko, C., Vileno, B., Milas, M., Hernádi, K., Forro, L., Váró, G. and Nagy, L., J Phys Chem B
110(43), 21473–21479 (2006).CrossRefGoogle Scholar
Milano, F., Tangorra, R. R., Hassan Omar, O., Ragni, R., Operamolla, A., Agostiano, A., Farinola, G. M. and Trotta, M., Angewandte Chemie
124(44), 11181–11185 (2012).CrossRefGoogle Scholar
, C. Low, T. J., Walsh, F. C., Chakrabarti, M. H., Hashim, M. A. and Hussain, M. A., Carbon
54, 1–21 (2013).CrossRefGoogle Scholar
, M. Stowell, H. B., McPhillips, T. M., Rees, D. C., Soltis, S. M., Abresch, E. and Feher, G., Science
276 (5313), 812–816 (1997).CrossRefGoogle Scholar
Zuccon, S., Zuppella, P., Cristofani, M., Silvestrini, S., Corso, A. J., Maggini, M. and Pelizzo, M. G., Journal of Optics
16(5) (2014).CrossRefGoogle Scholar
Salice, P., Fabris, E., Sartorio, C., Fenaroli, D., Figa, V., Casaletto, M. P., Cataldo, S., Pignataro, B. and Menna, E., Carbon
74, 73–82 (2014).CrossRefGoogle Scholar
Isaacson, R. A., Lendzian, F., Abresch, E. C., Lubitz, W. and Feher, G., Biophys J
69(2), 311–322. (1995).CrossRefGoogle Scholar
Hermanson, G. T., Bioconjugate Techniques, 2nd Edition ed. (Academic Press, London, UK, 2008).Google Scholar
Guascito, M. R., Chirizzi, D., Malitesta, C., Giotta, L., Mastrogiacomo, D., Valli, L. and Stabili, L., Biopolymers
101(5), 461–470 (2014).CrossRefGoogle Scholar
Depalo, N., Comparelli, R., Striccoli, M., Curri, M. L., Fini, P., Giotta, L. and Agostiano, A., J Phys Chem B
110(35), 17388–17399 (2006).CrossRefGoogle Scholar
Agostiano, A., Milano, F. and Trotta, M., Eur J Biochem
262(2), 358–364 (1999).CrossRefGoogle Scholar
Iwaki, M., Andrianambinintsoa, S., Rich, P. and Breton, J., Spectrochim Acta A
58(7), 1523–1533 (2002).CrossRefGoogle Scholar
Mavelli, F., Trotta, M., Ciriaco, F., Agostiano, A., Giotta, L., Italiano, F. and Milano, F., Eur. Biophys. J., 1–15 (2014).Google Scholar
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