Francesco Livi
Technical University of Denmark
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Featured researches published by Francesco Livi.
Polymer Chemistry | 2017
Nemal S. Gobalasingham; Seyma Ekiz; Robert M. Pankow; Francesco Livi; Eva Bundgaard; Barry C. Thompson
Although direct arylation polymerization (DArP) has recently emerged as an alternative to traditional cross-coupling methods like Suzuki polymerization, the evaluation of DArP polymers in practical applications like polymer solar cells (PSCs) is limited. Because even the presence of minute quantities of defects can dramatically influence the solar cell, performance of DArP polymers offers critical insight alongside other structural and optoelectronic comparisons. Even via traditional methods, carbazole-based donors are frequently prone to homocoupling defects, which has been shown to—along with β-defects—compromise performance. Through defect minimization with the bulky and affordable neodecanoic acid (NDA) mixture, we report the synthesis of DArP poly[(9-(heptadecan-9-yl)-9H-carbazole)-alt-(4,7-di(thiophen-2-yl)benzo[c][1,2,5]thiadiazole)] (PCDTBT) that outperforms Suzuki PCDTBT with similar molecular weights. Expanding beyond this model system, carbazole-based polymers featuring 2,5-diethylhexyl-3,6-di(thiophen-2-yl)-2,5-dihydropyrrolo[3,4-c]pyrrole-1,4-dione (DPP), 4,10-bis(diethylhexyl)-thieno[2′,3′:5,6]pyrido[3,4-g]thieno[3,2-c]isoquinoline-5,11-dione (TPTI), 5-octyl-1,3-di(thiophen-2-yl)-4H-thieno[3,4-c]pyrrole-4,6(5H)-dione (DT-TPD), and 2,5-bis(2,3-dihydrothieno[3,4-b][1,4]dioxin-5-yl)pyridine (EDOT-Pyr) are generated. Polymers are characterized by 1H NMR, cyclic voltammetry, UV-Vis, GIXRD, SCLC hole mobilities, and are implemented into polymer solar cells fabricated in air under ambient humidity. We demonstrate that DArP polymers perform comparably to Suzuki in practical applications.
Archive | 2014
Francesco Livi; Jon Eggert Carlé; Eva Bundgaard
Conducting polymers based on thiophene are described. The polymers include poly(thiophene) with and without side-chains and other conjugated polymers in general, based on thiophene. The synthesis and characteristics of the polymers are described along with the application of these as light-absorbing materials in polymer solar cells.
Chemistry of Materials | 2016
Bérenger Roth; Suchol Savagatrup; Nathaniel V. de los Santos; Ole Hagemann; Jon Eggert Carlé; Martin Helgesen; Francesco Livi; Eva Bundgaard; Roar R. Søndergaard; Frederik C. Krebs; Darren J. Lipomi
Advanced Energy Materials | 2015
Eva Bundgaard; Francesco Livi; Ole Hagemann; Jon Eggert Carlé; Martin Helgesen; Ilona Maria Heckler; Natalia Klaudia Zawacka; Dechan Angmo; Thue Trofod Larsen-Olsen; Gisele Alves dos Reis Benatto; Bérenger Roth; Morten Vesterager Madsen; Mats R. Andersson; Mikkel Jørgensen; Roar R. Søndergaard; Frederik C. Krebs
Macromolecules | 2015
Francesco Livi; Natalia Klaudia Zawacka; Dechan Angmo; Mikkel Jørgensen; Frederik C. Krebs; Eva Bundgaard
Journal of Polymer Science Part A | 2016
Francesco Livi; Nemal S. Gobalasingham; Barry C. Thompson; Eva Bundgaard
Energy technology | 2014
Dechan Angmo; Henrik Friis Dam; Thomas Rieks Andersen; Natalia Klaudia Zawacka; Morten Vesterager Madsen; Jørgen Stubager; Francesco Livi; Ritu Gupta; Martin Helgesen; Jon Eggert Carlé; Thue Trofod Larsen-Olsen; G. U. Kulkarni; Eva Bundgaard; Frederik C. Krebs
Journal of Polymer Science Part A | 2015
Francesco Livi; Nemal S. Gobalasingham; Eva Bundgaard; Barry C. Thompson
Advanced Energy Materials | 2016
Suren A. Gevorgyan; Nieves Espinosa; Laura Ciammaruchi; Bérenger Roth; Francesco Livi; Stylianos Tsopanidis; Simon Züfle; Sara Queirós; Alberto Gregori; Gisele Alves dos Reis Benatto; Michael Corazza; Morten Vesterager Madsen; Markus Hösel; Michail J. Beliatis; Thue Trofod Larsen-Olsen; Francesco Pastorelli; António G. Castro; Alba Mingorance; Veniero Lenzi; Daniel Fluhr; Roland Roesch; Marta M. D. Ramos; Achilleas Savva; Harald Hoppe; L. Marques; Ignasi Burgués; Efthymios Georgiou; Lucía Serrano-Luján; Frederik C. Krebs
Archive | 2016
Francesco Livi; Eva Bundgaard