Arbeitsgruppe Elektronenspektroskopie

Ausgewählte Veröffentlichungen


[1]

Element-resolved study on the evolution of magnetic response in FexN compounds

Y.-C. Chen, D. Gölden, I. Dirba, M.-J. Huang, O. Gutfleisch, P. Nagel, M. Merz, S. Schuppler, G. Schütz, L. Alff, E. Goeringa

J. Magnetism and Magnetic Mat. (2019) 166219

 

[2]

Superior Magnetic Performance in FePt L10 Nanomaterials

K. Son, G. Ryu, H.-H. Jeong, L. Fink, M. Merz, P. Nagel, S. Schuppler, G. Richter, E. Goering, G. Schütz

Small (2019) 1902353

 

[3]

Nanometric Fe-Substituted ZrO2 on Carbon Black as PGM-Free ORR Catalyst for PEMFCs

P. Madkikar, D. Menga, G. S. Harzer, T. Mittermeier, A. Siebel, F. E. Wagner, M. Merz, S. Schuppler, P. Nagel, A. B. Munoz-Garcia, M. Pavone, H. A. Gasteiger, M. Piana

J. Electrochem. Soc. 166 (2019) 3032

 

[4]

Analyzing the enforcement of a high-spin ground state for a metallacrown single-molecule magnet

P. Happ, A. Sapozhnik, J. Klanke, P. Czaja, A. Chernenkaya, K. Medjanik, S. Schuppler, P. Nagel, M. Merz, E. Rentschler, H. J. Elmers

Phys. Rev. B 93 (2016) 174404

 

[5]

Luminescence, patterned metallic regions, and photon-mediated electronic changes in single-sided fluorinated graphene sheets

A. L. Walter, H. Sahin, K. J. Jeon, A. Bostwick, S. Horzum, R. Koch, F. Speck, M. Ostler, P. Nagel, M. Merz, S. Schuppler, L. Moreschini, Y. J. Chang, T. Seyller, F. M. Peeters, K. Horn, E. Rotenberg

ACS Nano 8 (2014) 7801

 

[6]

Beyond the Heisenberg model: anisotropic exchange interaction between a Cu-tetraazaporphyrin monolayer and Fe3O4 (100)

J. Klanke, E. Rentschler, K. Medjanik, D. Kutnyakhov, G. Sch

Phys. Rev. Lett. 110 (2013) 137202

 

[7]

Orbital-Resolved Partial Charge Transfer from the Methoxy Groups of Substituted Pyrenes in Complexes with Tetracyanoquinodimethane-A

K. Medjanik. D. Chercka, P. Nagel, M. Merz, S. Schuppler, M. Baumgarten, K. M

J. Am. Chem. Soc. 134 (2012) 4694

 

[8]

Multiplexed lipid dip-pen nanolithography on subcellular scales for the templating of functional proteins and cell culture

S. Sekula, J. Fuchs, S. Weg-Remers, P. Nagel, S. Schuppler, J. Fragala, N. Theilacker, M. Franzreb, C. Wingren, P. Ellmark, C. A. K. Borrebaeck, C. A. Mirkin, H. Fuchs, S. Lenhert

Small 4 (2008) 1785

 

[9]

Of Substitution and Doping: Spatial and Electronic Structure in Fe Pnictides

M. Merz, P. Schweiss, P. Nagel, M.-J. Huang, R. Eder, T. Wolf, H. v. Löhneysen, S. Schuppler

J. Phys. Soc. Jpn. 85 (2016) 44707

 

[10]

Electronic Structure of Single-Crystalline Sr(Fe1-xcCox)2As2 Probed by x-Ray Absorption Spectroscopy: Evidence for Effectively Isovalent Substitution of Fe2+ by Co2+

M. Merz, F. Eilers, Th. Wolf, P. Nagel, H. v. L

Phys. Rev. B 86 (2012) 104503

 

[11]

Resonant Photoemission Spectroscopy Studies of the Magnetic Phase Transitions in Pr0.5Sr0.5MnO3

P. Pal, M. K. Dalai, B. R. Sekhar, I. Ulfat, M. Merz, P. Nagel, S. Schuppler

Physica B 406 (2011) 3519

 

[12]

Orbital degree of freedom in single-layered La1-xSr1+xMnO4: doping- and temperature-dependent rearrangement of orbital states

M. Merz, G. Roth, P. Reutler, B. B

Phys. Rev. B 74 (2006) 184414

 

[13]

Electronic Structure of the Electron-Doped Ca0.86Pr0.14MnO3

M. K. Dalai, P. Pal, B. R. Sekhar, M. Merz, P. Nagel, S. Schuppler, C. Martin

Phys. Rev. B 85 (2012) 155128

 

[14]

Spin and Orbital States in Single-Layered La2−xCaxCoO4 Studied by Doping- and Temperature-Dependent Near-Edge x-Ray Absorption Fine Structure

M. Merz, D. Fuchs, A. Assmann, S. Uebe, H. v. L

Phys. Rev. B 84 (2011) 14436

 

[15]

X-Ray Absorption and Magnetic Circular Dichroism of LaCoO3, La0.7Ce0.3CoO3, and La0.7Sr0.3CoO3 Films: Evidence for Cobalt-Valence-Dependent Magnetism

M. Merz, P. Nagel, C. Pinta, A. Samartsev, H. v. L

Phys. Rev. B 82 (2010) 174416

 

[16]

Suppression of spin-state transition in epitaxially strained LaCoO3

C. Pinta, D. Fuchs, M. Merz, M. Wissinger, E. Arac, H. v. L

Phys. Rev. B 78 (2008) 174402

 

[17]

Double exchange via t2g orbitals and Jahn-Teller effect in ferromagnetic La0.7Sr0.3CoO3 probed by epitaxial strain

D. Fuchs, M. Merz, P. Nagel, R. Schneider, S. Schuppler, H. v. Löhneysen

Phys. Rev. Lett. 111 (2013) 257203

 

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From valence fluctuations to long-range magnetic order in EuPd₂ ( Si₁₋ₓ Geₓ)₂ single crystals
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Strong electron-phonon coupling and enhanced phonon Grüneisen parameters in valence-fluctuating metal EuPdSi
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2023. Physical Review Letters, 130 (10), 106904. doi:10.1103/PhysRevLett.130.106904
Observation of Exchange Interaction in Iron(II) Spin Crossover Molecules in Contact with Passivated Ferromagnetic Surface of Co/Au(111)
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Monitoring the Formation of Nickel-Poor and Nickel-Rich Oxide Cathode Materials for Lithium-Ion Batteries with Synchrotron Radiation
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2023. Chemistry of Materials, 35 (4), 1514–1526. doi:10.1021/acs.chemmater.2c02639
HESEB: The Helmholtz state-of-the-art Soft-X-Ray Undulator beamline at SESAME
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Charge density wave transitions, soft phonon, and possible electronic nematicity in BaNi₂(As₁₋ₓPₓ)₂
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Analyzing the Local Electronic Structure of CoO Using 2p3d Resonant Inelastic X-ray Scattering
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On the Origin of Reversible and Irreversible Reactions in LiNiCoMnO
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Reversible and Irreversible Redox Processes in Li-Rich Layered Oxides
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Perfluorinated Phthalocyanines on Cu(110) and Cu(110)-(2 × 1)O: The Special Role of the Central Cobalt Atom
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On the Location of Boron in SiO2‐embedded Si Nanocrystals – An X‐ray Absorption Spectroscopy and Density Functional Theory Study
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2021. npj quantum materials, 6 (1), Art.-Nr. 37. doi:10.1038/s41535-021-00336-3
Influence of the Fluorination of Iron Phthalocyanine on the Electronic Structure of the Central Metal Atom
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Dominant In-Plane Symmetric Elastoresistance in CsFe₂As₂
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From LiNiO₂ to Li₂NiO₃ : Synthesis, Structures and Electrochemical Mechanisms in Li-Rich Nickel Oxides
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Phonon density of states in lanthanide-based nanocrystals
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Electronic correlations in the van der Waals ferromagnet Fe₃ GeTe₂ revealed by its charge dynamics
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2020. Physical review / B, 102 (16), Art.-Nr.: 161109. doi:10.1103/PhysRevB.102.161109
Risk analysis of High-Temperature Aquifer Thermal Energy Storage (HT-ATES)
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2020. Renewable & sustainable energy reviews, 133, Art. Nr.: 110153. doi:10.1016/j.rser.2020.110153
Vortex-lattice melting and paramagnetic depairing in the nematic superconductor FeSe
Hardy, F.; Doussoulin, L.; Klein, T.; He, M.; Demuer, A.; Willa, R.; Willa, K.; Haghighirad, A.-A.; Wolf, T.; Merz, M.; Meingast, C.; Marcenat, C.
2020. Physical review research, 2 (3), 033319. doi:10.1103/PhysRevResearch.2.033319
Band engineering of Dirac cones in iron chalcogenides
Lauke, L.; Heid, R.; Merz, M.; Wolf, T.; Haghighirad, A.-A.; Schmalian, J.
2020. Physical review / B, 102 (5), Art.Nr. 054209. doi:10.1103/PhysRevB.102.054209
First-time synthesis of a magnetoelectric core-shell composite via conventional solid-state reaction
Henrichs, L. F.; Mu, X.; Scherer, T.; Gerhards, U.; Schuppler, S.; Nagel, P.; Merz, M.; Kübel, C.; Fawey, M. H.; Hansen, T. C.; Hahn, H.
2020. Nanoscale, 12 (29), 15677–15686. doi:10.1039/d0nr02475a
Vortex-lattice melting and paramagnetic depairing in the nematic superconductor FeSe
Hardy, F.; Doussoulin, L.; Klein, T.; He, M.; Demuer, A.; Willa, R.; Willa, K.; Haghighirad, A.-A.; Wolf, T.; Merz, M.; Meingast, C.; Marcenat, C.
2020. Karlsruher Institut für Technologie (KIT)
Band hybridization at the semimetal-semiconductor transition of Ta 2NiSe 5 enabled by mirror-symmetry breaking
Watson, M. D.; Marković, I.; Morales, E. A.; Le Fèvre, P.; Merz, M.; Haghighirad, A. A.; King, P. D. C.
2020. Physical review research, 2 (1), Article no: 013236. doi:10.1103/PhysRevResearch.2.013236
Element-resolved study on the evolution of magnetic response in FexN compounds
Chen, Y.-C.; Gölden, D.; Dirba, I.; Huang, M.-J.; Gutfleisch, O.; Nagel, P.; Merz, M.; Schuppler, S.; Schütz, G.; Alff, L.; Goering, E.
2020. Journal of magnetism and magnetic materials, 498, Article no: 166219. doi:10.1016/j.jmmm.2019.166219
Performance analysis of Aquifer Thermal Energy Storage (ATES)
Fleuchaus, P.; Schüppler, S.; Godschalk, B.; Bakema, G.; Blum, P.
2020. Renewable energy, 146, 1536–1548. doi:10.1016/j.renene.2019.07.030