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Dominik Farka
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Biofunctionalized conductive polymers enable efficient CO2 electroreduction
H Coskun, A Aljabour, P De Luna, D Farka, T Greunz, D Stifter, M Kus, ...
Science Advances 3 (8), e1700686, 2017
1102017
Chemical vapor deposition-based synthesis of conductive polydopamine thin-films
H Coskun, A Aljabour, L Uiberlacker, M Strobel, S Hild, C Cobet, D Farka, ...
Thin Solid Films 645, 320-325, 2018
662018
Bioconjugation of hydrogen-bonded organic semiconductors with functional proteins
ED Głowacki, RR Tangorra, H Coskun, D Farka, A Operamolla, Y Kanbur, ...
Journal of Materials Chemistry C 3 (25), 6554-6564, 2015
492015
Anderson‐Localization and the Mott–Ioffe–Regel Limit in Glassy‐Metallic PEDOT
D Farka, H Coskun, J Gasiorowski, C Cobet, K Hingerl, LM Uiberlacker, ...
Advanced Electronic Materials 3 (7), 1700050, 2017
442017
Reversible Photochemical Isomerization of N,N′-Di(t-butoxycarbonyl)indigos
D Farka, M Scharber, ED Głowacki, NS Sariciftci
The Journal of Physical Chemistry A 119 (15), 3563-3568, 2015
402015
Local order drives the metallic state in PEDOT: PSS
P Stadler, D Farka, H Coskun, ED Głowacki, C Yumusak, LM Uiberlacker, ...
Journal of Materials Chemistry C 4 (29), 6982-6987, 2016
222016
Metallic conductivity beyond the Mott minimum in PEDOT: Sulphate at low temperatures
D Farka, AOF Jones, R Menon, NS Sariciftci, P Stadler
Synthetic Metals 240, 59-66, 2018
202018
Polarons in conjugated polymers
C Cobet, J Gasiorowski, D Farka, P Stadler
Ellipsometry of Functional Organic Surfaces and Films, 355-387, 2018
102018
Increase in electron scattering length in PEDOT: PSS by a triflic acid post-processing
D Farka, H Coskun, P Bauer, D Roth, B Bruckner, P Klapetek, NS Sariciftci, ...
Monatshefte für Chemie-Chemical Monthly 148, 871-877, 2017
72017
Overcoming intra-molecular repulsions in PEDTT by sulphate counter-ion
D Farka, T Greunz, C Yumusak, C Cobet, CC Mardare, D Stifter, ...
Science and Technology of Advanced Materials 22 (1), 985-997, 2021
32021
Localizing Binding Sites on Bioconjugated Hydrogen‐Bonded Organic Semiconductors at the Nanoscale
M Koehler, D Farka, C Yumusak, N Serdar Sariciftci, P Hinterdorfer
ChemPhysChem 21 (7), 659-666, 2020
32020
Nanometer-thick thiophene monolayers as templates for the gas-phase epitaxy of poly (3, 4-ethylenedioxythiophene) films on gold: Implications for organic electronics
DH Apaydin, D Farka, EA Schriber, M Yeung, G Gramse, NS Sariciftci, ...
ACS Applied Nano Materials 5 (3), 3194-3200, 2022
12022
Strategies for the Design of PEDOT Analogues Unraveled: the Use of Chalcogen Bonds and σ-Holes
D Farka, K Kriz, J Fanfrlik
The Journal of Physical Chemistry A 127 (17), 3779-3787, 2023
2023
(Semi-) transparent, conductive, metallic polymers by chemical vapour deposition/submitted by Mgr. Dominik Farka, MSc
D Farka
2018
Spectroscopic Investigation of Luminescent Biomaterials on Organic Semiconductors
D Farka
Jihočeská univerzita, 2015
2015
Spectroscopic investigation of luminescent biomaterials on organic semiconductors/eingereicht von: Dominik Farka
D Farka
Linz, 2015
2015
Making Transgenic C. elegans with Polycistronic mCherry Vector
D Farka
Jihočeská univerzita, 2012
2012
Chalcogen Bonds in Conductive Polymers–Their Rolein Pedot and its Analogues Unravelled
D Farka, K Kriz, J Fanfrlik
Available at SSRN 4173753, 0
(Semi-) transparent, conductive, metallic polymers by chemical vapour deposition
D Farka
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