Publications of Dina Fattakhova-Rohlfing
All genres
Journal Article (14)
1.
Journal Article
32 (24), pp. 10394 - 10406 (2020)
V(III)-Doped Nickel Oxide-Based Nanocatalysts for Electrochemical Water Splitting: Influence of Phase, Composition, and Doping on the Electrocatalytic Activity. Chemistry of Materials 2.
Journal Article
12 (14), pp. 7766 - 7775 (2020)
How photocorrosion can trick you: a detailed study on low-bandgap Li doped CuO photocathodes for solar hydrogen production. Nanoscale 3.
Journal Article
234 (4), pp. 683 - 698 (2020)
Sn-Doped Hematite for Photoelectrochemical Water Splitting: The Effect of Sn Concentration. Zeitschrift für physikalische Chemie 4.
Journal Article
28 (52), 1804472 (2018)
Why Tin‐Doping Enhances the Efficiency of Hematite Photoanodes for Water Splitting - The Full Picture. Advanced Functional Materials 5.
Journal Article
29 (17), pp. 7223 - 7233 (2017)
Nonagglomerated Iron Oxyhydroxide Akaganeite Nanocrystals Incorporating Extraordinary High Amounts of Different Dopants. Chemistry of Materials 6.
Journal Article
4 (1), 016409, pp. 1 - 9 (2017)
Dual absorber Fe2O3/WO3 host-guest architectures for improved charge generation and transfer in photoelectrochemical applications. Materials Research Express 7.
Journal Article
26 (25), pp. 4435 - 4443 (2016)
Zinc ferrite photoanode nanomorphologies with favorable kinetics for water-splitting. Advanced Functional Materials 8.
Journal Article
26 (25), p. 4425 (2016)
Photoelectrochemistry: Zinc Ferrite Photoanode Nanomorphologies with Favorable Kinetics for Water-Splitting (Adv. Funct. Mater. 25/2016). Advanced Functional Materials 9.
Journal Article
138 (6), pp. 1860 - 1867 (2016)
Nanostructured ternary FeCrAl oxide photocathodes for water photoelectrolysis. Journal of the American Chemical Society 10.
Journal Article
2 (18), 1500358 (2015)
Ultrasmall Co3O4 Nanocrystals Strongly Enhance Solar Water Splitting on Mesoporous Hematite. Advanced Materials Interfaces 11.
Journal Article
7 (8), pp. 4623 - 4630 (2015)
Electron collection in host-guest nanostructured hematite photoanodes for water splitting: the influence of scaffold doping density. ACS Applied Materials & Interfaces 12.
Journal Article
9 (5), pp. 5180 - 5188 (2015)
Iron-Doped Nickel Oxide Nanorystals as Highly Efficient Electrocatalysts for Alkaline Water Splitting. ACS Nano 13.
Journal Article
16 (44), pp. 24610 - 24620 (2014)
Tin doping speeds up hole transfer during light-driven water oxidation at hematite photoanodes. Physical Chemistry Chemical Physics 14.
Journal Article
140, pp. 108 - 115 (2014)
Macroporous indium tin oxide electrode layers as conducting substrates for immobilization of bulky electroactive guests. Electrochimica Acta Talk (2)
15.
Talk
Sub-nanometer microanalysis on hematite photoanodes with localized Sn dopants to enhance photocatalytic water splitting. 13th Multinational Congress on Microscopy, Rovinj, Croatia (2017)
16.
Talk
Novel Materials and Morphologies for Photoelectrochemical Water Splitting. SPP 1613 Annual Meeting, Darmstadt, Germany (2014)
Poster (2)
17.
Poster
Mapping of Sn dopant in hematite photoanodes by STEM-EELS and atom probe tomography. EDGE 2017: Enhanced Data Generated by Electrons, 8th International Workshop on Electron Energy Loss Spectroscopy and Related Techniques, Okuma, Okinawa, Japan (2017)
18.
Poster
Three-Dimensional Analysis of Photoelectrodes by FIB Sectioning. nanoGe Solar Fuel Conference 15, Mallorca, Spain (2015)