Semiconductor Physics, Quantum Electronics and Optoelectronics, 9 (4) P. 017-020 (2006).


References

1. F. Robert, C. and R.E. Smalley, Probing C60 // Science(Washington, DC, US) 242(4881), p. 1017-1022 (1988).
https://doi.org/10.1126/science.242.4881.1017
2. J.H. Weaver, J.L. Martins, T. Komeda, Y. Chen, T.R. Ohno, G.H. Kroll, N.Troullier, R.E. Haufler, R.E. Smalley, Electronic structure of solid C60: Experiment and theory // Phys. Rev. Lett. 66(13), p. 1741-1744 (1991).
https://doi.org/10.1103/PhysRevLett.66.1741
3. H. Hoppe, N.S. Sariciftci, Organic solar cells: on overview // J. Mater. Res. 9,p.1924 (2004).
https://doi.org/10.1557/JMR.2004.0252
4. G. Yu, J. Gao, J.C. Hummelen, F. Wudi, A.J. Heeger, Polymer photovoltaic cells: Enhanced efficiences via a network internal donor-acceptor heterojunctions // Science(Washington, DC, US) 270, p. 1789-1791 (1995).
https://doi.org/10.1126/science.270.5243.1789
5. A.A. Zakhidov, H. Araki, K. Tada, K. Yoshino, Fullerene-conducting polymer composites: Intrinsic
6. charge transfer processes and doping effects // Synth. Met. 77, p. 127-137 (1996).
https://doi.org/10.1016/0379-6779(96)80074-9
7. C. Schlebusch, B. Kessler, S. Cramm, W. Eberhardt, Organic photoconductors and C60 // Synth. Met. 77(1-3), p. 151-154 (1996).
https://doi.org/10.1016/0379-6779(96)80077-4
8. M. Al-Ibrahim, H.-K. Roth, U. Zhokhavets, G. Gobsch, St. Sensfuss, Flexible large area polymer solar cells based on poly(3-hexyl-thiophene)/fullerene // Sol. Energy Mater. & Solar Cells 85(1), p. 13-20 (2005).
https://doi.org/10.1016/j.solmat.2004.03.001
9. D. Zhu, Y. Li, S. Wang, Z. Shi, C. Du, S. Xiao, H. Fang, Y. Zhou, Design, synthesis and properties of functional materials based on fullerene // Synth. Met.133-134, p. 679-683 (2003).
https://doi.org/10.1016/S0379-6779(02)00361-2
10. H. Hoppe, N. Arnold, D. Meissner, N.S. Sariciftci, Modeling of optical absorption in conjugated polymerfullerene bulk-heterojunction plastic solar cells // Thin Solid Films 451-452, p. 589-592 (2004).
https://doi.org/10.1016/j.tsf.2003.11.173
11. I. Riedel, V. Dyakonov, Influence of electronic transport properties of polymer-fullerene blends on the performance of bulk heterojunction photovoltaic devices // Physica status solidi (a) 201(6), p. 1332-1341 (2004).
https://doi.org/10.1002/pssa.200404333
12. T.W. Ebbesen, P.M. Ajayan, Large-scale synthesis of carbon nanotubes // Nature 358, p. 220-222 (1992).
https://doi.org/10.1038/358220a0
13. N. Koprinarov, M. Marinov, G. Pchelarov, M. Konstantinova, R. Stefanov, Nanocarbons formed under ac arc discharge // J. Phys. Chem. 99, p. 2042-2047 (1995).
https://doi.org/10.1021/j100007a040
14. St. Kanev, Z. Nenova, K. Ivanova, S. Koynov, Characterization of a-Si:H films via analysis of multiple photocurrent spectra // Sol. Energy Mater. Sol. Cells 36, p. 277-287 (1995).
https://doi.org/10.1016/0927-0248(94)00179-0
15. E. Radeva, V. Georgiev, L. Spasov, St. Kanev, N. Koprinarov, Humidity adsorptive properties of thin fullerene layers studied by means of quartz micro-balance // Sens. Actuators B 2, p. 11-13 (1997).
https://doi.org/10.1016/S0925-4005(97)80306-1
16. G. Pchelarov, I. Topalova, N. Koprinarov, M. Konstantinova, R. Stefanov, Investigation of soption by an electrode deposit // Carbon 35, p. 755-738 (1997).
https://doi.org/10.1016/S0008-6223(97)00031-6