Publications of Earl Davis
All genres
Journal Article (12)
1.
Journal Article
17 (19), pp. 7081 - 7096 (2024)
Time-resolved operando insights into the tunable selectivity of Cu–Zn nanocubes during pulsed CO2 electroreduction. Energy & Environmental Science 2.
Journal Article
146 (20), pp. 13770 - 13782 (2024)
Facet Dependence of the Oxygen Evolution Reaction on Co3O4, CoFe2O4, and Fe3O4 epitaxial film electrocatalysts. Journal of the American Chemical Society 3.
Journal Article
17 (5), pp. 2046 - 2058 (2024)
Role of Fe Decoration on the Oxygen Evolving State of Co3O4 Nanocatalysts. Energy & Environmental Science 4.
Journal Article
2 (1), pp. 311 - 323 (2024)
Operando insights into correlating CO coverage and Cu-Au alloying with the selectivity of Au NP-decorated Cu2O nanocubes during the electrocatalytic CO2 reduction. EES Catalysis 5.
Journal Article
14, 4791 (2023)
Comparative study of Co3O4(111), CoFe2O4(111), and Fe3O4(111) thin film electrocatalysts for the oxygen evolution reaction. Nature Communications 6.
Journal Article
5 (4), pp. 259 - 267 (2022)
Steering the structure and selectivity of CO2 electroreduction catalysts by potential pulses. Nature Catalysis 7.
Journal Article
710, 121853 (2021)
Interaction of CO2 with well-ordered iron sulfide films on Au(111). Surface Science 8.
Journal Article
21 (45), pp. 25431 - 25438 (2019)
Surface core level BE shifts for CaO(100): insights into physical origins. Physical Chemistry Chemical Physics 9.
Journal Article
21 (36), pp. 20204 - 20210 (2019)
Growth of well-ordered iron sulfide thin films. Physical Chemistry Chemical Physics 10.
Journal Article
100 (11), 115419 (2019)
Revisiting surface core-level shifts for ionic compounds. Physical Review B 11.
Journal Article
97 (11), 115406 (2018)
Atomic structure of a metal-supported two-dimensional germania film. Physical Review B 12.
Journal Article
636, pp. 42 - 46 (2015)
Growth of Fe3O4(001) thin films on Pt(100): Tuning surface termination with an Fe buffer layer. Surface Science Thesis - PhD (1)
13.
Thesis - PhD
Well-ordered iron oxide and sulfide thin films: growth methods and characterisation. Dissertation, Technische Universität, Berlin (2018)