Environmental Engineering Reference
In-Depth Information
25. Chen L-M, Xu Z, Hong Z, Yang Y (2010) Interface investigation and engineering—
achieving high performance polymer photovoltaic devices. J Mater Chem 20(13):2575-2598
26. Becker H, Burns SE, Friend RH (1997) Effect of metal films on the photoluminescence and
electroluminescence of conjugated polymers. Phys Rev B 56(4):1893
27. Markov DE, Blom PWM (2005) Migration-assisted energy transfer at conjugated polymer/
metal interfaces. Phys Rev B 72(16):161401
28. Zhokhavets U, Erb T, Hoppe H, Gobsch G, Serdar Sariciftci N (2006) Effect of annealing of
poly(3-hexylthiophene)/fullerene bulk heterojunction composites on structural and optical
properties. Thin Solid Films 496(2):679-682. doi: 10.1016/j.tsf.2005.09.093
29. Li
G,
Shrotriya
V,
Yao
Y,
Huang
J,
Yang
Y
(2007)
Manipulating
regioregular
poly(3-hexylthiophene):
[6]-phenyl-C61-butyric
acid
methyl
ester
blends-route
towards
high efficiency polymer solar cells. J Mater Chem 17(30):3126-3140
30. Shen H, Bienstman P, Maes B (2009) Plasmonic absorption enhancement in organic solar
cells with thin active layers. J Appl Phys 106(7):073109
31. Drees M, Hoppe H, Winder C, Neugebauer H, Sariciftci NS, Schwinger W, Schaffler F, Topf
C, Scharber MC, Zhu Z, Gaudiana R (2005) Stabilization of the nanomorphology of polymer-
fullerene ''bulk heterojunction'' blends using a novel polymerizable fullerene derivative.
J Mater Chem 15(48):5158-5163
32. Kim Y, Cook S, Tuladhar SM, Choulis SA, Nelson J, Durrant JR, Bradley DDC, Giles M,
McCulloch I, Ha C-S, Ree M (2006) A strong regioregularity effect in self-organizing
conjugated polymer films and high-efficiency polythiophene: fullerene solar cells. Nat Mater
5(3):197-203
33. Kim H, So W-W, Moon S-J (2007) The importance of post-annealing process in the device
performance of poly(3-hexylthiophene): Methanofullerene polymer solar cell. Sol Energy
Mater Sol Cells 91(7):581-587. doi: 10.1016/j.solmat.2006.11.010
34. Topp K, Borchert H, Johnen F, Tunc AV, Knipper M, von Hauff E, Parisi J, Al-Shamery K
(2009) Impact of the incorporation of Au nanoparticles into polymer/fullerene solar cells.
J Phys Chem A 114(11):3981-3989. doi: 10.1021/jp910227x
35. Wang CCD, Choy WCH, Duan C, Fung DDS, Sha WEI, Xie F-X, Huang F, Cao Y (2012)
Optical and electrical effects of gold nanoparticles in the active layer of polymer solar cells.
J Mater Chem 22(3):1206-1211
36. Duan CH, Wang CD, Liu SJ, Huang F, Choy CHW, Cao Y (2011) Two-dimensional like
conjugated copolymers for high efficiency bulk-heterojunction solar cell application: band
gap and energy level engineering. Sci China Chem 54(4):685-694
37. Mayer AC, Scully SR, Hardin BE, Rowell MW, McGehee MD (2007) Polymer-based solar
cells. Mater Today 10:28-33
38. Mandoc MM (2007) Optimum charge carrier mobility in organic solar cells. Appl Phys Lett
90(13):133504
39. Mihailetchi VD, van Duren JKJ, Blom PWM, Hummelen JC, Janssen RAJ, Kroon JM,
Rispens MT, Verhees WJH, Wienk MM (2003) Electron transport in a methanofullerene.
Adv Funct Mater 13(1):43-46. doi: 10.1002/adfm.200390004
40. Zhao DW (2009) An inverted organic solar cell with an ultrathin Ca electron-transporting
layer and MoO3 hole-transporting layer. Appl Phys Lett 95(15):153304
41. Jiang CY, Sun XW, Zhao DW, Kyaw AKK, Li YN (2010) Low work function metal
modified ITO as cathode for inverted polymer solar cells. Sol Energy Mater Sol Cells
94(10):1618-1621. doi: 10.1016/j.solmat.2010.04.082
42. Koster LJA, Smits ECP, Mihailetchi VD, Blom PWM (2005) Device model for the operation
of polymer/fullerene bulk heterojunction solar cells. Phys Rev B 72(8):085205
43. Zheng T, Choy WCH, Sun Y (2009) Hybrid nanoparticle/organic devices with strong
resonant
tunneling
behaviors.
Adv
Funct
Mater
19(16):2648-2653.
doi: 10.1002/
adfm.200900308
44. Chen H-Y, Hou J, Zhang S, Liang Y, Yang G, Yang Y, Yu L, Wu Y, Li G (2009) Polymer
solar cells with enhanced open-circuit voltage and efficiency. Nat Photon 3(11):649-653
Search WWH ::




Custom Search