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

By Sabine Ludwigs (eds.)

The sequence Advances in Polymer technology provides severe experiences of the current and destiny traits in polymer and biopolymer technology. It covers all components of analysis in polymer and biopolymer technological know-how together with chemistry, actual chemistry, physics, fabric technology. The thematic volumes are addressed to scientists, even if at universities or in undefined, who desire to hold abreast of the real advances within the lined subject matters. Advances in Polymer technological know-how enjoys a longstanding culture and reliable acceptance in its group. every one quantity is devoted to a present subject, and every evaluation severely surveys one point of that subject, to put it in the context of the quantity. The volumes in general summarize the numerous advancements of the final five to ten years and talk about them severely, proposing chosen examples, explaining and illustrating the real ideas, and bringing jointly many vital references of fundamental literature. On that foundation, destiny examine instructions within the region should be mentioned. Advances in Polymer technological know-how volumes hence are vital references for each polymer scientist, in addition to for different scientists drawn to polymer technological know-how - as an creation to a neighboring box, or as a compilation of designated details for the expert. evaluate articles for the person volumes are invited by way of the quantity editors. unmarried contributions will be particularly commissioned. Readership: Polymer scientists, or scientists in comparable fields attracted to polymer and biopolymer technology, at universities or in undefined, graduate students

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Mechanism of Ni-catalyzed chain-growth polymerization leading to well-defined poly (3-hexylthiophene). J Am Chem Soc 127:17542–17547 107. Beryozkina T, Senkovskyy V, Kaul E, Kiriy A (2008) Kumada catalyst-transfer polycondensation of thiophene-based oligomers: robustness of a chain-growth mechanism. Macromolecules 41:7817–7823 108. Kiriy A, Senkovskyy V, Sommer M (2011) Kumada catalyst-transfer polycondensation: mechanism, opportunities, and challenges. Macromol Rapid Commun 32:1503–1517 109. Tkachov R, Senkovskyy V, Komber H, Sommer J-U, Kiriy A (2010) Random catalyst walking along polymerized poly(3-hexylthiophene) chains in Kumada catalyst-transfer polycondensation.

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Solid State Commun 46:389–391 60. Amer A, Zimmer H, Mulligan KJ, Mark HB Jr, Pons S, McAleer JF (1984) Polymerization of 3-methyl-2,5-dibromothiophene utilizing n-butyl lithium and copper(II) chloride. J Polym Sci Polym Lett Ed 22:77–82 61. Czerwinski A, Zimmer H, Chiem VP, Mark HB Jr (1985) The electrochemical deposition of conducting poly(3-methyl-2,5-thienylene) films from aqueous media. J Electrochem Soc 132:2669–2672 62. Yamamoto T, Sanechika K (1982) Preparation and properties of π-conjugated poly(3-methyl2,5-thienylene).

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