P3HT Revisited – From Molecular Scale to Solar Cell Devices by Sabine Ludwigs (eds.)

By Sabine Ludwigs (eds.)

The sequence Advances in Polymer technological know-how provides severe experiences of the current and destiny tendencies in polymer and biopolymer technological know-how. It covers all parts of analysis in polymer and biopolymer technological know-how together with chemistry, actual chemistry, physics, fabric technological know-how. The thematic volumes are addressed to scientists, no matter if at universities or in undefined, who desire to hold abreast of the $64000 advances within the coated subject matters. Advances in Polymer technological know-how enjoys a longstanding culture and sturdy recognition in its group. every one quantity is devoted to a present subject, and every overview seriously surveys one point of that subject, to put it in the context of the amount. The volumes ordinarily summarize the numerous advancements of the final five to ten years and speak about them seriously, offering chosen examples, explaining and illustrating the real ideas, and bringing jointly many very important references of basic literature. On that foundation, destiny study instructions within the quarter could be mentioned. Advances in Polymer technology volumes hence are vital references for each polymer scientist, in addition to for different scientists drawn to polymer technological know-how - as an advent to a neighboring box, or as a compilation of special info for the professional. evaluation articles for the person volumes are invited by way of the quantity editors. unmarried contributions will be especially commissioned. Readership: Polymer scientists, or scientists in similar fields attracted to polymer and biopolymer technological know-how, at universities or in undefined, graduate students

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2 Energy Levels from Electrochemical Measurements . . . . . . . . . . . . . . . . . 3 Optical Properties of P3HT Solutions . . . . . . . . . . . . . . . . . . . . . . . . . 3 Crystallization from Solution . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 Thin Film Properties . . . . . . .

Iovu MC, Jeffries-El M, Sheina EE, Cooper JR, McCullough RD (2005) Regioregular poly (3-alkylthiophene) conducting block copolymers. Polymer 46:8582–8586 129. Moon HC, Anthonysamy A, Kim JK, Hirao A (2011) Facile synthetic route for well-defined poly(3-hexylthiophene)-block-poly(methyl methacrylate) copolymer by anionic coupling reaction. Macromolecules 44:1894–1899 130. Hundt N, Hoang Q, Nguyen H, Sista P, Hao J, Servello J, Palaniappan K, Alemseghed M, Biewer MC, Stefan MC (2011) Synthesis and characterization of a block copolymer containing regioregular poly(3-hexylthiophene) and poly(γ-benzyl-L-glutamate).

Nature 401:685–688 26. Chang J-F, Clark J, Zhao N, Sirringhaus H, Breiby DW, Andreasen JW, Nielsen MM, Giles M, Heeney M, McCulloch I (2006) Molecular-weight dependence of interchain polaron delocalization and exciton bandwidth in high-mobility conjugated polymers. Phys Rev B Condens Matter Mater Phys 74:115318 27. Zhang R, Li B, Iovu MC, Jeffries-El M, Sauve G, Cooper J, Jia S, Tristram-Nagle S, Smilgies DM, Lambeth DN, McCullough RD, Kowalewski T (2006) Nanostructure dependence of field-effect mobility in regioregular poly(3-hexylthiophene) thin film field effect transistors.

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