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Zsófia Baji
Zsófia Baji
Research Centre for Natural Sciences Institute for Technical Physics and Materials Science
Bestätigte E-Mail-Adresse bei ttk.mta.hu
Titel
Zitiert von
Zitiert von
Jahr
Nucleation and growth modes of ALD ZnO
Z Baji, Z Labadi, ZE Horvath, G Molnár, J Volk, I Bársony, P Barna
Crystal growth & design 12 (11), 5615-5620, 2012
1012012
TiO2/ZnO and ZnO/TiO2 core/shell nanofibers prepared by electrospinning and atomic layer deposition for photocatalysis and gas sensing
SI Boyadjiev, O Kéri, P Bárdos, T Firkala, F Gáber, ZK Nagy, Z Baji, ...
Applied Surface Science 424, 190-197, 2017
652017
Investigations into the impact of the template layer on ZnO nanowire arrays made using low temperature wet chemical growth
R Erdelyi, T Nagata, DJ Rogers, FH Teherani, ZE Horváth, Z Lábadi, ...
Crystal growth & design 11 (6), 2515-2519, 2011
572011
Gas sensing properties of very thin TiO2 films prepared by atomic layer deposition (ALD)
S Boyadjiev, V Georgieva, L Vergov, Z Baji, F Gáber, IM Szilágyi
Journal of Physics: Conference Series 559 (1), 012013, 2014
442014
Post-selenization of stacked precursor layers for CIGS
Z Baji, Z Lábadi, G Molnár, B Pécz, AL Tóth, J Tóth, A Csik, I Bársony
Vacuum 92, 44-51, 2013
322013
Temperature dependent in situ doping of ALD ZnO
Z Baji, Z Lábadi, ZE Horváth, M Fried, B Szentpáli, I Bársony
Journal of thermal analysis and calorimetry 105 (1), 93-99, 2011
322011
Highly conductive epitaxial ZnO layers deposited by atomic layer deposition
Z Baji, Z Lábadi, G Molnár, B Pécz, K Vad, ZE Horváth, PJ Szabó, ...
Thin Solid Films 562, 485-489, 2014
302014
Homogeneous transparent conductive ZnO: Ga by ALD for large LED wafers
Z Szabó, Z Baji, P Basa, Z Czigány, I Bársony, HY Wang, J Volk
Applied Surface Science 379, 304-308, 2016
292016
ALD nano-catalyst for micro-calorimetric detection of hydrocarbons
F Bíró, C Dücső, GZ Radnóczi, Z Baji, M Takács, I Bársony
Sensors and Actuators B: Chemical 247, 617-625, 2017
272017
Structure and morphology of aluminium doped Zinc-oxide layers prepared by atomic layer deposition
Z Baji, Z Lábadi, ZE Horváth, I Bársony
Thin Solid Films 520 (14), 4703-4706, 2012
202012
Structural study of MgO and Mg-doped ZnO thin films grown by atomic layer deposition
I Cora, Z Baji, Z Fogarassy, Z Szabó, B Pécz
Materials Science in Semiconductor Processing 93, 6-11, 2019
162019
Photocatalytically active amorphous and crystalline TiO2 prepared by atomic layer deposition
O Kéri, L Kócs, Z Hórvölgyi, Z Baji, K László, V Takáts, Z Erdélyi, ...
Periodica Polytechnica-Chemical Engineering 63 (3), 378-387, 2019
162019
Atomic layer deposition and annealing of Ga doped ZnO films
Z Szabó, J Volk, ZE Horváth, Z Medveczky, Z Czigány, K Vad, Z Baji
Materials Science in Semiconductor Processing 101, 95-102, 2019
152019
A Rational Fabrication Method for Low Switching-Temperature VO2
L Pósa, G Molnár, B Kalas, Z Baji, Z Czigány, P Petrik, J Volk
Nanomaterials 11 (1), 212, 2021
142021
Atomic layer deposition and characterization of Zn-doped Ga2O3 films
Z Baji, I Cora, ZE Horváth, E Agócs, Z Szabó
Journal of Vacuum Science & Technology A 39 (3), 2021
102021
Additive and subtractive modification of butterfly wing structural colors
K Kertész, Z Baji, A Deák, G Piszter, Z Rázga, Z Bálint, LP Biró
Colloid and Interface Science Communications 40, 100346, 2021
92021
Characterization of ZnO structures by optical and X-ray methods
P Petrik, B Pollakowski, S Zakel, T Gumprecht, B Beckhoff, M Lemberger, ...
Applied surface science 281, 123-128, 2013
72013
Spectral tuning of biotemplated ZnO photonic nanoarchitectures for photocatalytic applications
G Piszter, K Kertész, G Nagy, Z Baji, Z Endre Horváth, Z Bálint, ...
Royal Society Open Science 9 (7), 220090, 2022
62022
ZnO layers deposited by atomic layer deposition
B Pécz, Z Baji, Z Lábadi, A Kovács
Journal of Physics: Conference Series 471 (1), 012015, 2013
62013
Hierarchical oxide nanostructures fabricated with atomic layer deposition and hydrothermal growth
Z Szabó, I Cora, Z Horváth, J Volk, Z Baji
Nano-Structures & Nano-Objects 13, 100-108, 2018
52018
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