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Conjugation solar cells

Conjugated Polymer Based Plastic Solar Cells... [Pg.271]

The aim of this chapter is to give a state-of-the-art report on the plastic solar cells based on conjugated polymers. Results from other organic solar cells like pristine fullerene cells [7, 8], dye-sensitized liquid electrolyte [9], or solid state polymer electrolyte cells [10], pure dye cells [11, 12], or small molecule cells [13], mostly based on heterojunctions between phthaocyanines and perylenes [14], will not be discussed. Extensive literature exists on the fabrication of solar cells based on small molecular dyes with donor-acceptor systems (see for example [2, 3] and references therein). [Pg.271]

The chapter is organized as follows the second section will discuss the photophysics of conjugated polymer/fullerene composites as a standard model for a charge-generating layer in plastic solar cells. Pristine polymer devices will be discussed in the third section while bilayer and interpenetrating network devices are presented in Sections 4 and 5. Section 6 contains some remarks on large area plastic solar cells and Section 7 conclusions. [Pg.271]

Figure 15-29. Chemical structures of the conjugated polymers used in the device and the device structure of the laminated solar cell. For the top half of the device, A1 or Ca was evaporated on glass substrates, and the acceptor material MEH-CN-PPV (and a small amount of POPT, usually 5%) was spin coaled. The half with the POPT (and a small amount of MEH-CN-PPV, usually 5%) was spin coaled on 1TO substrates and heated to 200"C under vacuum belore the device was laminated together by applying a light pressure. Figure 15-29. Chemical structures of the conjugated polymers used in the device and the device structure of the laminated solar cell. For the top half of the device, A1 or Ca was evaporated on glass substrates, and the acceptor material MEH-CN-PPV (and a small amount of POPT, usually 5%) was spin coaled. The half with the POPT (and a small amount of MEH-CN-PPV, usually 5%) was spin coaled on 1TO substrates and heated to 200"C under vacuum belore the device was laminated together by applying a light pressure.
Kang Y, Kim D (2006) WeU-ahgned CdS nanorod/conjugated polymer solar cells. Sol Energy Mater Sol Cells 90 166-174... [Pg.205]

Dennler, G. Sariciftci, N. S. 2005. Flexible conjugated polymer-based plastic solar cells from basics to applications. Proc. IEEE. 93 1429-1439. [Pg.32]

Lira-Cantu, M. Krebs, F. C. 2005. Polymer photovoltaics From conjugated polymers to hybrid organic-inorganic solar cells. Recent Res. Dev.Appl. Phys. 8 71-98. [Pg.466]

The QD-MWNT hybrid structures were formed via the assembly of quantum dot (QD) on the surface of MWNTs in aqueous solution (Jares-Erijman and Jovin, 2003), which shows an excellent solubility in aqueous solution, and owns potential application in bioassay, bio-conjugation, and biosensors as well as solar cell. For example, incorporation of QDs and SWNTs into the poly(3-octylthiophene)-(P3OT)... [Pg.211]

Muller JG, Lupton JM, Feldmann J, Lemmer U, Scharber MC, Sariciftci NS, Brabec CJ, Scherf U (2005) Ultrafast dynamics of charge carrier photogeneration and geminate recombination in conjugated polymer fullerene solar cells. Phys Rev B 72 195208... [Pg.208]

One of the most promising uses of C60 involves its potential application, when mixed with 7r-conjligated polymers, in polymer solar cells. Most often the so-called bulk heterojunction configuration is used, in which the active layer consists of a blend of electron-donating materials, for example, p-type conjugated polymers, and an electron-accepting material (n-type), such as (6,6)-phenyl-Cgi -butyric acid methyl ester (PCBM, Scheme 9.6).38... [Pg.236]


See other pages where Conjugation solar cells is mentioned: [Pg.271]    [Pg.272]    [Pg.291]    [Pg.582]    [Pg.600]    [Pg.600]    [Pg.602]    [Pg.193]    [Pg.19]    [Pg.361]    [Pg.159]    [Pg.160]    [Pg.7]    [Pg.46]    [Pg.178]    [Pg.193]    [Pg.74]   
See also in sourсe #XX -- [ Pg.523 ]




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