Environmental Engineering Reference
In-Depth Information
50. Na S-I, Oh S-H, Kim S-S, Kim D-Y (2009) Efficient organic solar cells with polyfluorene
derivatives as a cathode interfacial layer. Org Electron 10:496-500
51. Zhao Y, Xie Z, Qin C, Qu Y, Geng Y, Wang L (2009) Enhanced charge collection in
polymer photovoltaic cells by using an ethanol-soluble conjugated polyfluorene as cathode
buffer layer. Sol Energy Mater Sol Cells 93:604-608
52. Oh S-H, Na S-I, Jo J, Lim B, Vak D, Kim D-Y (2010) Water-soluble polyfluorenes as an
interfacial layer leading to cathode-independent high performance of organic solar cells.
Adv Funct Mater 20:1977-1983
53. Zhang LJ, He C, Chen JW, Yuan P, Huang LA, Zhang C, Cai WZ, Liu ZT, Cao Y (2010)
Bulk-heterojunction solar cells with benzotriazole-based copolymers as electron donors:
largely
improved
photovoltaic
parameters
by
using
PFN/A1
bilayer
cathode.
Macromolecules 43:9771-9778
54. He Z, Zhang C, Xu X, Zhang L, Huang L, Chen J, Wu H, Cao Y (2011) Largely enhanced
efficiency with a PFN/A1 bilayer cathode in high efficiency bulk heterojunction
photovoltaic cells with a low bandgap polycarbazole donor. Adv Mater 23:3086-3089
55. Xu X, Cai W, Chen J, Cao Y (2011) Conjugated polyelectrolytes and neutral polymers with
poly(2,7-carbazole) backbone: Synthesis, characterization, and photovoltaic application.
J Polym Sci Part A: Polym Chem 49:1263-1272
56. Seo JH, Gutacker A, Sun Y, Wu H, Huang F, Cao Y, Scherf U, Heeger AJ, Bazan GC
(2011) Improved high-efficiency organic solar cells via incorporation of a conjugated
polyelectrolyte interlayer. J Am Chem Soc 133:8416-8419
57. Zuo L, Jiang X, Xu M, Yang L, Nan Y, Yan Q, Chen H (2011) Enhancement of short
current density in polymer solar cells with phthalocyanine tin (iv) dichloride as interfacial
layer. Sol Energy Mater Sol Cells 95:2664-2669
58. Wei Q, Nishizawa T, Tajima K, Hashimoto K (2008) Self-organized buffer layers in organic
solar cells. Adv Mater 20:2211-2216
59. Yamakawa
S,
Tajima
K,
Hashimoto
K
(2009)
Buffer
layer
formation
in
organic
photovoltaic
cells
by
self-organization
of
poly(dimethylsiloxane)s.
Org
Electron
10:511-514
60. Mihailetchi VD, Koster LJA, Hummelen JC, Blom PWM (2004) Photocurrent generation in
polymer-fullerene bulk heterojunctions. Phys Rev Lett 93:216601
61. Yuan Y, Reece TJ, Sharma P, Poddar S, Ducharme S, Gruverman A, Yang Y, Huang J
(2011) Efficiency enhancement in organic solar cells with ferroelectric polymers. Nat Mater
10:296-302
62. Zhang
F,
Johansson
M,
Andersson
MR,
Hummelen
JC,
Inganäs
O
(2002)
Polymer
photovoltaic cells with conducting polymer anodes. Adv Mater 14:662-665
63. Lim YF, Lee S, Herman DJ, Lloyd MT, Anthony JE, Malliaras GG (2008) Spray-deposited
poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate)
top electrode for organic solar
cells. Appl Phys Lett 93:193301-193303
64. de Jong MP, van IJzendoorn LJ, de Voigt MJA (2000) Stability of the interface between
indium-tin oxide and poly(3,4-ethylenedioxythiophene)/poly(styrenesulphonate) in polymer
light-emitting diodes. Appl Phys Lett 77:2255-2257
65. Kim Y-H, Lee S-H, Noh J, Han S-H (2006) Performance and stability of electroluminescent
device with self-assembled layers of poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate)
and polyelectrolytes. Thin Sol Fi 510:305-310
66. Wong KW, Yip HL, Luo Y, Wong KY, Lau WM, Low KH, Chow HF, Gao ZQ, Yeung WL,
Chang CC (2002) Blocking reactions between indium-tin oxide and poly (3,4-ethylene
dioxythiophene): Poly(styrene sulphonate) with a self-assembly monolayer. Appl Phys Lett
80:2788-2790
67. Yan H, Lee P, Armstrong NR, Graham A, Evmenenko GA, Dutta P, Marks TJ (2005) High-
performance hole-transport layers for polymer light-emitting diodes. Implementation of
organosiloxane cross-linking chemistry in polymeric electroluminescent devices. J Am
Chem Soc 127:3172-3183
Search WWH ::




Custom Search