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Christoph J. Brabec

Researcher at University of Erlangen-Nuremberg

Publications -  993
Citations -  78466

Christoph J. Brabec is an academic researcher from University of Erlangen-Nuremberg. The author has contributed to research in topics: Organic solar cell & Polymer solar cell. The author has an hindex of 120, co-authored 896 publications receiving 68188 citations. Previous affiliations of Christoph J. Brabec include Johannes Kepler University of Linz & Osram Opto Semiconductors GmbH.

Papers
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Time-Dependent Morphology Evolution of Solution-Processed Small Molecule Solar Cells during Solvent Vapor Annealing

TL;DR: In this article, the authors investigated the dynamics of the BHJ evolution as a function of solvent vapor annealing (SVA) treatment and found that donor crystallinity is improved as SVA time increases, along with enhanced domain purity and reduced recombination losses.
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On the effect of poly(3-hexylthiophene) regioregularity on inkjet printed organic solar cells

TL;DR: In this article, the impact of P3HT regioregularity on the performance of bulk heterojunction solar cells with inkjet printed polythiophenes was investigated.
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Molecular engineering of C60-based conjugated oligomer ensembles: modulating the competition between photoinduced energy and electron transfer processes.

TL;DR: Both singlet-singlet energy transfer and intramolecular electron transfer were found to take place and to compete with each other in the overall deactivation of the photoexcited oligomer.
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Balancing the efficiency, stability, and cost potential for organic solar cells via a new figure of merit

TL;DR: In this paper, the authors proposed a trade-off strategy for reducing efficiency-stability-cost gap and accelerates the commercialization of organic solar cells (OSCs) and provided a new reliable industrial figure of merit (i-FOM2.0), including four main factors: efficiency, photo-thermal stability, synthesis complexity and active layer thickness.
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Influence of a ternary donor material on the morphology of a P3HT:PCBM blend for organic photovoltaic devices

TL;DR: In this paper, a comparison of grazing incidence wide-angle X-ray scattering (GiWAXS) and differential scanning calorimetric measurements (DSC) was used to identify the influence of a dominantly amorphous small band gap polymer material poly[2,6-(4,4-bis-(2-ethylhexyl)-4H-cyclopenta[ 2,1-b;3,4b′]dithiophene)-alt-4,7(2,1,3-benzothiadiazole)] (PCPD