Environmental Engineering Reference
In-Depth Information
45. Xu Z, Chen L-M, Yang G, Huang C-H, Hou J, Wu Y, Li G, Hsu C-S, Yang Y (2009) Vertical
phase separation in poly(3-hexylthiophene): fullerene derivative blends and its advantage for
inverted
structure
solar
cells.
Adv
Funct
Mater
19(8):1227-1234.
doi: 10.1002/adfm.
200801286
46. Mihailetchi VD, Koster LJA, Hummelen JC, Blom PWM (2004) Photocurrent generation in
polymer-fullerene bulk heterojunctions. Phys Rev Lett 93(21):216601
47. Chen F-C, Wu J-L, Lee C-L, Hong Y, Kuo C-H, Huang MH (2009) Plasmonic-enhanced
polymer photovoltaic devices incorporating solution-processable metal nanoparticles. Appl
Phys Lett 95(1):013305
48. Blom PWM, Mihailetchi VD, Koster LJA, Markov DE (2007) Device physics of polymer:
fullerene
bulk
heterojunction
solar
cells.
Adv
Mater
19(12):1551-1566.
doi: 10.1002/
adma.200601093
49. Brabec CJ, Cravino A, Meissner D, Sariciftci NS, Fromherz T, Rispens MT, Sanchez L,
Hummelen JC (2001) Origin of the open circuit voltage of plastic solar cells. Adv Funct
Mater 11(5):374-380. doi: 10.1002/1616-3028(200110)11:5\374:aid-adfm374[3.0.co;2-w
50. Vandewal K, Tvingstedt K, Gadisa A, Inganas O, Manca JV (2009) On the origin of the
open-circuit voltage of polymer-fullerene solar cells. Nat Mater 8(11):904-909
51. Tress W, Leo K, Riede M (2011) Influence of hole-transport layers and donor materials on
open-circuit voltage and shape of I-V curves of organic solar cells. Adv Funct Mater
21(11):2140-2149. doi: 10.1002/adfm.201002669
52. Akaike K, Kanai K, Ouchi Y, Seki K (2010) Impact of ground-state charge transfer and
polarization energy change on energy band offsets at donor/acceptor interface in organic
photovoltaics. Adv Funct Mater 20(5):715-721. doi: 10.1002/adfm.200901585
53. Sun B (2005) Vertically segregated hybrid blends for photovoltaic devices with improved
efficiency. J Appl Phys 97(1):014914
54. Snaith HJ, Greenham NC, Friend RH (2004) The origin of collected charge and open-circuit
voltage
in
blended
polyfluorene
photovoltaic
devices.
Adv
Mater
16(18):1640-1645.
doi: 10.1002/adma.200305766
55. Kim K, Carroll DL (2005) Roles of Au and Ag nanoparticles in efficiency enhancement of
poly(3-octylthiophene)/C 60
bulk
heterojunction
photovoltaic
devices.
Appl
Phys
Lett
87(20):203113. doi: 10.1063/1.2128062
56. Xie FX, Choy WCH, Wang CCD, Wei E, Fung DDS (2011) Improving the efficiency of
polymer solar cells by incorporating gold nanoparticles into all polymer layers. Appl Phys
Lett 99:153304
57. Peng B, Guo X, Cui C, Zou Y, Pan C, Li Y (2011) Performance improvement of
polymer solar cells by using a solvent-treated poly(3,4-ethylenedioxythiophene):
poly(styrenesulfonate) buffer layer. Appl Phys Lett 98(24):243308
58. Xie F, Choy WCH, Zhu X, Li X, Li Z, Liang C (2011) Improving polymer solar cell
performances by manipulating the self-organization of polymer. Appl Phys Lett 98:243302
59. Sievers DW, Shrotriya V, Yang Y (2006) Modeling optical effects and thickness dependent
current in polymer bulk-heterojunction solar cells. J Appl Phys 100:114509
Search WWH ::




Custom Search