-
1
-
-
33750941381
-
Improved stability of OLEDs with mild oxygen plasma treated PEDOT:PSS
-
Y. Zhou, Y. Yuan, L. Cao, J. Zhang, H. Pang, J. Lian, and X. Zhou, “Improved stability of OLEDs with mild oxygen plasma treated PEDOT:PSS,” J. Lumines. 122–123, 602– 604, (2007).
-
(2007)
J. Lumines.
, vol.122-123
, pp. 602-604
-
-
Zhou, Y.1
Yuan, Y.2
Cao, L.3
Zhang, J.4
Pang, H.5
Lian, J.6
Zhou, X.7
-
2
-
-
0001511254
-
Stability of the interface between indium-tin-oxide and poly(3,4,-ethylenedioxythiophene)/poly(styrenesulfonate) in polymer light-emitting diodes
-
M. P. de Jong, L. J. van Ijzendoorn, and M. J. A. de Voigt, “Stability of the interface between indium-tin-oxide and poly(3,4,-ethylenedioxythiophene)/poly(styrenesulfonate) in polymer light-emitting diodes,” Appl. Phys. Lett. 77, 2255– 2257, (2000).
-
(2000)
Appl. Phys. Lett.
, vol.77
, pp. 2255-2257
-
-
de Jong, M.P.1
van Ijzendoorn, L.J.2
de Voigt, M.J.A.3
-
3
-
-
33847730694
-
Improved performances of organic light-emitting diodes with metal oxide as anode buffer
-
H. You, Y. Dai, Z. Zhang, and D. Ma, “Improved performances of organic light-emitting diodes with metal oxide as anode buffer,” J. Appl. Phys. 101, 026105, (2007).
-
(2007)
J. Appl. Phys.
, vol.101
-
-
You, H.1
Dai, Y.2
Zhang, Z.3
Ma, D.4
-
4
-
-
28344449884
-
Vanadium pentoxide modified polycrystalline silicon anode for active-matrix organic light-emitting diodes
-
X. L. Zhu, J. X. Sun, H. J. Peng, Z. G. Meng, M. Wong, and H. S. Kwok, “Vanadium pentoxide modified polycrystalline silicon anode for active-matrix organic light-emitting diodes,” Appl. Phys. Lett. 87, 153508, (2005).
-
(2005)
Appl. Phys. Lett.
, vol.87
, pp. 153508
-
-
Zhu, X.L.1
Sun, J.X.2
Peng, H.J.3
Meng, Z.G.4
Wong, M.5
Kwok, H.S.6
-
5
-
-
55749107933
-
Transparent inverted organic light-emitting diodes with a tungsten oxide buffer layer
-
J. Meyer, T. Winkler, S. Hamwi, S. Schmale, H.-H. Johannes, T. Weimann, P. Hinze, W. Kowlasky, and T. Riedl, “Transparent inverted organic light-emitting diodes with a tungsten oxide buffer layer,” Adv. Mater. 20, 3839– 3843, (2008).
-
(2008)
Adv. Mater.
, vol.20
, pp. 3839-3843
-
-
Meyer, J.1
Winkler, T.2
Hamwi, S.3
Schmale, S.4
Johannes, H.-H.5
Weimann, T.6
Hinze, P.7
Kowlasky, W.8
Riedl, T.9
-
6
-
-
78650693757
-
3 films spin-coated from a nanoparticle suspension for efficient hole-injection in organic electronics
-
3 films spin-coated from a nanoparticle suspension for efficient hole-injection in organic electronics,” Adv. Mater. 23, 70– 73, (2011).
-
(2011)
Adv. Mater.
, vol.23
, pp. 70-73
-
-
Meyer, J.1
Khalandovsky, R.2
Görrn, P.3
Kahn, A.4
-
7
-
-
77954062820
-
Solution deposited NiO thin-films as hole transport layers in organic photovoltaics
-
K. X. Steirer, J. P. Chesin, N. E. Widjonarko, J. J. Berry, A. Miedaner, D. S. Ginley, and D. C. Olson, “Solution deposited NiO thin-films as hole transport layers in organic photovoltaics,” Org. Electron. 11, 1414–1418, (2010).
-
(2010)
Org. Electron.
, vol.11
, pp. 1414-1418
-
-
Steirer, K.X.1
Chesin, J.P.2
Widjonarko, N.E.3
Berry, J.J.4
Miedaner, A.5
Ginley, D.S.6
Olson, D.C.7
-
8
-
-
80051915801
-
Solution processed vanadium pentoxide as charge extraction layer for organic solar cells
-
K. Zilberberg, S. Trost, H. Schmidt, and T. Riedl, “Solution processed vanadium pentoxide as charge extraction layer for organic solar cells,” Adv. Energy. Mater. 1, 377–381, (2011).
-
(2011)
Adv. Energy. Mater.
, vol.1
, pp. 377-381
-
-
Zilberberg, K.1
Trost, S.2
Schmidt, H.3
Riedl, T.4
-
9
-
-
83655202935
-
Inverted organic solar cells with sol-gel processed high work-function vanadium oxide hole-extraction layers
-
K. Zilberberg, S. Trost, J. Meyer, A. Kahn, A. Behrendt, D. Lützenkirchen-Hecht, R. Frahm, and T. Riedl, “Inverted organic solar cells with sol-gel processed high work-function vanadium oxide hole-extraction layers,” Adv. Funct. Mater. 21, 4776–4783, (2011).
-
(2011)
Adv. Funct. Mater.
, vol.21
, pp. 4776-4783
-
-
Zilberberg, K.1
Trost, S.2
Meyer, J.3
Kahn, A.4
Behrendt, A.5
Lützenkirchen-Hecht, D.6
Frahm, R.7
Riedl, T.8
-
10
-
-
34249338052
-
Charge transport and injection to phenylamine-based hole transporters for OLEDs applications
-
S. K. So, S. C. Tse, and K. L. Tong, “Charge transport and injection to phenylamine-based hole transporters for OLEDs applications,” J. Disp. Technol. 3, 225–232, (2007).
-
(2007)
J. Disp. Technol.
, vol.3
, pp. 225-232
-
-
So, S.K.1
Tse, S.C.2
Tong, K.L.3
-
11
-
-
77951582620
-
Improvement of electron injection in inverted bottom-emission blue phosphorescent organic light emitting diode using zinc oxide nanoparticles
-
H. Lee, I. Park, J. Kwak, D. Y. Yoon, and C. Lee, “Improvement of electron injection in inverted bottom-emission blue phosphorescent organic light emitting diode using zinc oxide nanoparticles,” Appl. Phys. Lett. 96, 153306, (2010).
-
(2010)
Appl. Phys. Lett.
, vol.96
, pp. 153306
-
-
Lee, H.1
Park, I.2
Kwak, J.3
Yoon, D.Y.4
Lee, C.5
-
12
-
-
70349655699
-
3 in the enhancement of hole-injection in organic thin films
-
3 in the enhancement of hole-injection in organic thin films,” Appl. Phys. Lett. 95, 123301, (2009).
-
(2009)
Appl. Phys. Lett.
, vol.95
-
-
Kröger, M.1
Hamwi, S.2
Meyer, J.3
Riedl, T.4
Kowalsky, W.5
Kahn, A.6
-
13
-
-
58849091822
-
Hole injection in a model fluorine-triarylamine copolymer
-
H. H. Fong, A. Papadimitratos, J. Hwang, A. Kahn, and G. G. Malliaras,”Hole injection in a model fluorine-triarylamine copolymer,” Adv. Funct. Mater. 19, 304–310, (2009).
-
(2009)
Adv. Funct. Mater.
, vol.19
, pp. 304-310
-
-
Fong, H.H.1
Papadimitratos, A.2
Hwang, J.3
Kahn, A.4
Malliaras, G.G.5
-
14
-
-
36449007359
-
Hole transport in 1,1bis(Di4tolylaminophenyl) cyclohexane
-
P. M. Borsenberger, L. Pautmeier, R. Richert, and H. Bässler, “Hole transport in 1,1bis(di4tolylaminophenyl) cyclohexane,” J. Chem. Phys. 94, 8276–8281, (1991).
-
(1991)
J. Chem. Phys.
, vol.94
, pp. 8276-8281
-
-
Borsenberger, P.M.1
Pautmeier, L.2
Richert, R.3
Bässler, H.4
-
15
-
-
32444449091
-
Employing ambipolar oligofluorene as the charge-generation layer in time-of-flight mobility measurements of organic thin films
-
W.-Y. Hung, T.-H. Ke, T.-T. Lin, C.-C. Wu, T.-H. Hung, T.-C. Chao, K.-T. Wong, and C.-I. Wu, “Employing ambipolar oligofluorene as the charge-generation layer in time-of-flight mobility measurements of organic thin films,” Appl. Phys. Lett. 88, 064102, (2006).
-
(2006)
Appl. Phys. Lett.
, vol.88
-
-
Hung, W.-Y.1
Ke, T.-H.2
Lin, T.-T.3
Wu, C.-C.4
Hung, T.-H.5
Chao, T.-C.6
Wong, K.-T.7
Wu, C.-I.8
-
16
-
-
54849415352
-
Pyridine-containing triphenylbenzene derivatives with high electron mobility for highly efficient phosphorescent OLEDs
-
S.-J. Su, T. Chiba, T. Takeda, and J. Kido, “Pyridine-containing triphenylbenzene derivatives with high electron mobility for highly efficient phosphorescent OLEDs,” Adv. Mater. 20, 2125–2130, (2008).
-
(2008)
Adv. Mater.
, vol.20
, pp. 2125-2130
-
-
Su, S.-J.1
Chiba, T.2
Takeda, T.3
Kido, J.4
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