3 Percolation Toward Lateral Junctions
73
12. Sakai, K., Hiramoto, M.: Efficient organic p-i-n solar cells with very thick co-deposited i-layer
consisting of highly purified organic semiconductors. Mol. Cryst. Liq. Cryst. 491, 284–289
(2008)
13. Armin, A., Subbiah, J., Stolterfoht, M.,Shoaee, S., Xiao, Z., Lu, S., Jones, D. J., Meredith,
P.:Reduced recombination in high efficiency molecular nematic liquid crystalline: fullerene
solar cells. Adv. Energy Mater., 6, 1600939 (10 pages), (2016)
14. Jin, Y., Chen, Z., Dong, S., Zheng, N., Ying, L., Jiang, X.F., Liu, F., Huang, F., Cao,
Y.: A novelnaphtho[1,2-c:5,6-c ]bis([1,2,5]thiadiazole)-based narrow-bandgap π-conjugated
polymer with power conversion efficiency over 10%. Adv. Mater. 28, 9811–9818 (2016)
15. Suemori, K., Miyata, T., Hiramoto, M., Yokoyama, M.: Enhanced photovoltaic performance in
fullerene:phthalocyanine co-deposited films deposited on heated substrate. Jpn. J. Appl. Phys.
43, L1014–L1016 (2004)
16. Suemori, K., Miyata, T., Yokoyama, M., Hiramoto, M.: Three-layered organic solar cells
incorporating nanostructure-optimized phthalocyanine:fullerene co-deposited Interlayer. Appl.
Phys. Lett., 86, 063509 (3 pages) (2005)
17. Suemori, K., Matsumura, Y., Yokoyama, M., Hiramoto, M.: Large Area Organic Solar Cells
with Thick and Transparent Protection Layers. Jpn. J. Appl. Phys. 45, L472–L474 (2006)
18. Hiramoto, M., Yamaga, T., Danno, M., Suemori, K., Matsumura, Y., Yokoyama,M.:Design of
nanostructure for photo-electric conversion by organic vertical superlattice. Appl. Phys. Lett.,
88, 213105 (3 pages)(2006)
19. Kikuchi, M., Takagi, K., Naito, H., Hiramoto, M.: Single crystal organic photovoltaic cells
using lateral electron transport. Org. Electron. 41, 118–121 (2017)
20. Laudise, R.A., Kloc, Ch., Simpkins, P.G., Siegrist, T.: Physical vapor growth of organic
semiconductors. J. Cryst. Growth 187, 449–454 (1998)
21. Jayaraman, A., Kaplan, M.L., Schmidt, P.H.: Effect of pressure on the Raman and electronic
absorption spectra of naphthalene- and perylenetetracarboxylic dianhydrides. J. Chem. Phys.
82, 1682–1687 (1985)
22. Chesterfield, R.J., McKeen, J.C., Newman, C.R., Ewbank, P.C., Filho, D.A.S., Brédas, J.-L.,
Miller, L.L., Mann, K.R., Frisbie, C.D.: Organic thin film transistors based on N-alkyl perylene
diimides: charge transport kinetics as a function of gate voltage and temperature. J. Phys. Chem.
B 108, 19281–19292 (2004)
23. Kikuchi, M., Hirota, M., Kunawong, T., Shinmura, Y., Abe, M., Sadamitsu, Y., Moh, A.M.,
Izawa, S., Izaki, M., Naito, H., Hiramoto, M.: Lateral alternating donor/acceptor multilayered
junction for organic solar cells. ACS Appl. Energy Mater. 2, 2087–2093 (2019)
24. Yuan, Y.,Giri,G., Ayzner, A. L., Zoombelt, A. P., Mannsfeld, Chen, S. C. B. J., Nordlund, D.,
Toney, M. F., Huang, J., Bao, Z.,: Ultra-high mobility transparent organic thin film transistors
grown by an off-centre spin-coating method. Nat. Commun., 5, 3005–3013 (2014)
25. Takeya, J., Yamagishi, M., Tominari, Y., Hirahara, R., Nakazawa, Y.: Very high-mobility organic
single-crystal transistors with in-crystal conduction channels. Appl. Phys. Lett., 90, 102120(3
pages) (2007)
26. Minemawari, H., Yamada, T., Matsui, H., Tsutsumi, J., Haas, S., Chiba, R., Kumai, R.,
Hasegawa, T.: Inkjet printing of single-crystal films. Nature 475, 364–367 (2011)
27. Haas, S., Takahashi, Y., Takimiya, K., Hasegawa, T.: High-performance dinaphthothienothiophene single crystal field-effect transistors. Appl. Phys. Lett.,95, 022111(3 pages)
(2009)
28. Takimiya, K., Shinamura, S., Osaka, I., Miyazaki, E.: Thienoacene-based organic semiconductors. Adv. Mater. 23, 4347–4370 (2011)
29. Naito, H., Kanemitsu, Y.: Relations between transient charge transport and the glass-transition
temperature in amorphous chalcogenides. Phys. Rev. B 49, 10131–10135 (1994)
30. Coropceanu, V., Cornil, J., da Silva Filho, D.A., Olivier, Y., Silbey, R., Bredas, J.-L.: Charge
transport in organic semiconductors. Chem. Rev. 107, 926–952 (2007)
31. Lecomber, P.G., Spear, W.E.: Electronic transport in amorphous silicon films. Phys. Rev. Lett.
25, 509–511 (1970)
73
12. Sakai, K., Hiramoto, M.: Efficient organic p-i-n solar cells with very thick co-deposited i-layer
consisting of highly purified organic semiconductors. Mol. Cryst. Liq. Cryst. 491, 284–289
(2008)
13. Armin, A., Subbiah, J., Stolterfoht, M.,Shoaee, S., Xiao, Z., Lu, S., Jones, D. J., Meredith,
P.:Reduced recombination in high efficiency molecular nematic liquid crystalline: fullerene
solar cells. Adv. Energy Mater., 6, 1600939 (10 pages), (2016)
14. Jin, Y., Chen, Z., Dong, S., Zheng, N., Ying, L., Jiang, X.F., Liu, F., Huang, F., Cao,
Y.: A novelnaphtho[1,2-c:5,6-c ]bis([1,2,5]thiadiazole)-based narrow-bandgap π-conjugated
polymer with power conversion efficiency over 10%. Adv. Mater. 28, 9811–9818 (2016)
15. Suemori, K., Miyata, T., Hiramoto, M., Yokoyama, M.: Enhanced photovoltaic performance in
fullerene:phthalocyanine co-deposited films deposited on heated substrate. Jpn. J. Appl. Phys.
43, L1014–L1016 (2004)
16. Suemori, K., Miyata, T., Yokoyama, M., Hiramoto, M.: Three-layered organic solar cells
incorporating nanostructure-optimized phthalocyanine:fullerene co-deposited Interlayer. Appl.
Phys. Lett., 86, 063509 (3 pages) (2005)
17. Suemori, K., Matsumura, Y., Yokoyama, M., Hiramoto, M.: Large Area Organic Solar Cells
with Thick and Transparent Protection Layers. Jpn. J. Appl. Phys. 45, L472–L474 (2006)
18. Hiramoto, M., Yamaga, T., Danno, M., Suemori, K., Matsumura, Y., Yokoyama,M.:Design of
nanostructure for photo-electric conversion by organic vertical superlattice. Appl. Phys. Lett.,
88, 213105 (3 pages)(2006)
19. Kikuchi, M., Takagi, K., Naito, H., Hiramoto, M.: Single crystal organic photovoltaic cells
using lateral electron transport. Org. Electron. 41, 118–121 (2017)
20. Laudise, R.A., Kloc, Ch., Simpkins, P.G., Siegrist, T.: Physical vapor growth of organic
semiconductors. J. Cryst. Growth 187, 449–454 (1998)
21. Jayaraman, A., Kaplan, M.L., Schmidt, P.H.: Effect of pressure on the Raman and electronic
absorption spectra of naphthalene- and perylenetetracarboxylic dianhydrides. J. Chem. Phys.
82, 1682–1687 (1985)
22. Chesterfield, R.J., McKeen, J.C., Newman, C.R., Ewbank, P.C., Filho, D.A.S., Brédas, J.-L.,
Miller, L.L., Mann, K.R., Frisbie, C.D.: Organic thin film transistors based on N-alkyl perylene
diimides: charge transport kinetics as a function of gate voltage and temperature. J. Phys. Chem.
B 108, 19281–19292 (2004)
23. Kikuchi, M., Hirota, M., Kunawong, T., Shinmura, Y., Abe, M., Sadamitsu, Y., Moh, A.M.,
Izawa, S., Izaki, M., Naito, H., Hiramoto, M.: Lateral alternating donor/acceptor multilayered
junction for organic solar cells. ACS Appl. Energy Mater. 2, 2087–2093 (2019)
24. Yuan, Y.,Giri,G., Ayzner, A. L., Zoombelt, A. P., Mannsfeld, Chen, S. C. B. J., Nordlund, D.,
Toney, M. F., Huang, J., Bao, Z.,: Ultra-high mobility transparent organic thin film transistors
grown by an off-centre spin-coating method. Nat. Commun., 5, 3005–3013 (2014)
25. Takeya, J., Yamagishi, M., Tominari, Y., Hirahara, R., Nakazawa, Y.: Very high-mobility organic
single-crystal transistors with in-crystal conduction channels. Appl. Phys. Lett., 90, 102120(3
pages) (2007)
26. Minemawari, H., Yamada, T., Matsui, H., Tsutsumi, J., Haas, S., Chiba, R., Kumai, R.,
Hasegawa, T.: Inkjet printing of single-crystal films. Nature 475, 364–367 (2011)
27. Haas, S., Takahashi, Y., Takimiya, K., Hasegawa, T.: High-performance dinaphthothienothiophene single crystal field-effect transistors. Appl. Phys. Lett.,95, 022111(3 pages)
(2009)
28. Takimiya, K., Shinamura, S., Osaka, I., Miyazaki, E.: Thienoacene-based organic semiconductors. Adv. Mater. 23, 4347–4370 (2011)
29. Naito, H., Kanemitsu, Y.: Relations between transient charge transport and the glass-transition
temperature in amorphous chalcogenides. Phys. Rev. B 49, 10131–10135 (1994)
30. Coropceanu, V., Cornil, J., da Silva Filho, D.A., Olivier, Y., Silbey, R., Bredas, J.-L.: Charge
transport in organic semiconductors. Chem. Rev. 107, 926–952 (2007)
31. Lecomber, P.G., Spear, W.E.: Electronic transport in amorphous silicon films. Phys. Rev. Lett.
25, 509–511 (1970)
