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Publications

The publications of our group can also be found at the LCS laboratory. The publications of the individual beamlines are available here SIM and XTREME.


Recent publications are listed below. For an extensive overview we kindly refer you to our publication repository DORA.

  • Beck A, Kazazis D, Ekinci Y, Li X, Müller Gubler EA, Kleibert A, et al.
    The extent of platinum-induced hydrogen spillover on cerium dioxide
    ACS Nano. 2023; 17(2): 1091-1099. https://doi.org/10.1021/acsnano.2c08152
    DORA PSI
  • Bréhin J, Chen Y, D'Antuono M, Varotto S, Stornaiuolo D, Piamonteze C, et al.
    Coexistence and coupling of ferroelectricity and magnetism in an oxide two-dimensional electron gas
    Nature Physics. 2023: (9 pp.). https://doi.org/10.1038/s41567-023-01983-y
    DORA PSI
  • Hadjimichael M, Mundet B, Domínguez C, Waelchli A, De Luca G, Spring J, et al.
    Competition between carrier injection and structural distortions in electron‐doped perovskite nickelate thin films
    Advanced Electronic Materials. 2023. https://doi.org/10.1002/aelm.202201182
    DORA PSI
  • Hovančík D, Pospíšil J, Carva K, Sechovský V, Piamonteze C
    Large orbital magnetic moment in VI3
    Nano Letters. 2023; 23(4): 1175-1180. https://doi.org/10.1021/acs.nanolett.2c04045
    DORA PSI
  • Kitaori A, White JS, Kanazawa N, Ukleev V, Singh D, Furukawa Y, et al.
    Doping control of magnetism and emergent electromagnetic induction in high-temperature helimagnets
    Physical Review B. 2023; 107(2): 024406 (12 pp.). https://doi.org/10.1103/PhysRevB.107.024406
    DORA PSI
  • Lee Y, Son S, Kim C, Kang S, Shen J, Kenzelmann M, et al.
    Giant magnetic anisotropy in the atomically thin van der Waals antiferromagnet FePS3
    Advanced Electronic Materials. 2023; 9(2): 2200650 (8 pp.). https://doi.org/10.1002/aelm.202200650
    DORA PSI
  • Noh K, Colazzo L, Urdaniz C, Lee J, Krylov D, Devi P, et al.
    Template-directed 2D nanopatterning of S = 1/2 molecular spins
    Nanoscale Horizons. 2023. https://doi.org/10.1039/d2nh00375a
    DORA PSI
  • Tomassucci G, Tortora L, Pugliese GM, Stramaglia F, Simonelli L, Marini C, et al.
    Temperature dependent local inhomogeneity and magnetic moments of (Li1−xFex)OHFeSe superconductors
    Physical Chemistry Chemical Physics. 2023. https://doi.org/10.1039/d3cp00004d
    DORA PSI
  • Vijayakumar J, Savchenko TM, Bracher DM, Lumbeeck G, Béché A, Verbeeck J, et al.
    Absence of a pressure gap and atomistic mechanism of the oxidation of pure Co nanoparticles
    Nature Communications. 2023; 14(1): 174 (11 pp.). https://doi.org/10.1038/s41467-023-35846-0
    DORA PSI
  • Abreu E, Savoini M, Boie L, Beaud P, Esposito V, Kubli M, et al.
    Photoinduced structural dynamics of multiferroic TbMnO3
    Physical Review B. 2022; 106(21): 214312 (7 pp.). https://doi.org/10.1103/PhysRevB.106.214312
    DORA PSI
  • Baral PR, Ukleev V, Lagrange T, Cubitt R, Živković I, Rønnow HM, et al.
    Tuning topological spin textures in size-tailored chiral magnet insulator particles
    Journal of Physical Chemistry C. 2022; 126(28): 11855-11866. https://doi.org/10.1021/acs.jpcc.2c03600
    DORA PSI
  • Bhowal S, O'Neill D, Fechner M, Spaldin NA, Staub U, Duffy J, et al.
    Anti-symmetric Compton scattering in LiNiPO4: Towards a direct probe of the magneto-electric multipole moment
    Open Research Europe. 2022; 1: 132 (16 pp.). https://doi.org/10.12688/openreseurope.13863.2
    DORA PSI
  • Biswas B, Michel VF, Fjellvåg ØS, Bimashofer G, Döbeli M, Jambor M, et al.
    Role of dy on the magnetic properties of orthorhombic DyFeO3
    Physical Review Materials. 2022; 6(7): 074401 (9 pp.). https://doi.org/10.1103/PhysRevMaterials.6.074401
    DORA PSI
  • Boehme SC, Bodnarchuk MI, Burian M, Bertolotti F, Cherniukh I, Bernasconi C, et al.
    Strongly confined CsPbBr3 quantum dots as quantum emitters and building blocks for rhombic superlattices
    ACS Nano. 2022. https://doi.org/10.1021/acsnano.2c07677
    DORA PSI
  • Burian M, Meisenbichler C, Naumenko D, Amenitsch H
    SAXSDOG: open software for real-time azimuthal integration of 2D scattering images
    Journal of Applied Crystallography. 2022; 55: 677-685. https://doi.org/10.1107/S1600576722003685
    DORA PSI
  • Cannelli O, Wiktor J, Colonna N, Leroy L, Puppin M, Bacellar C, et al.
    Decoupled structural responses upon light and thermal functional activation in CsPbBr3 perovskites
    In: Proceedings the international conference on ultrafast phenomena (UP) 2022. Technical digest series. Washington, DC: Optica Publishing Group; 2022:F1A.3 (2 pp.). https://doi.org/10.1364/UP.2022.F1A.3
    DORA PSI
  • Caspi S, Shoham L, Baskin M, Weinfeld K, Piamonteze C, Stoerzinger KA, et al.
    Effect of capping layers on the near-surface region of SrVO3films
    Journal of Vacuum Science and Technology A: Vacuum, Surfaces, and Films. 2022; 40(1): 013208 (6 pp.). https://doi.org/10.1116/6.0001419
    DORA PSI
  • Chen Y, D'Antuono M, Brookes NB, De Luca GM, Di Capua R, Di Gennaro E, et al.
    Ferromagnetic quasi-two-dimensional electron gas with tigonal crystal field splitting
    ACS Applied Electronic Materials. 2022; 4(7): 3226-3231. https://doi.org/10.1021/acsaelm.2c00447
    DORA PSI
  • Cherniukh I, Sekh TV, Rainò G, Ashton OJ, Burian M, Travesset A, et al.
    Structural diversity in multicomponent nanocrystal superlattices comprising lead halide perovskite nanocubes
    ACS Nano. 2022; 16(5): 7210-7232. https://doi.org/10.1021/acsnano.1c10702
    DORA PSI
  • De Luca G, Spring J, Kaviani M, Jöhr S, Campanini M, Zakharova A, et al.
    Top-layer engineering reshapes charge transfer at polar oxide interfaces
    Advanced Materials. 2022; 34(36): 2203071 (9 pp.). https://doi.org/10.1002/adma.202203071
    DORA PSI
  • Di Capua R, Verma M, Radovic M, Strocov VN, Piamonteze C, Guedes EB, et al.
    Orbital selective switching of ferromagnetism in an oxide quasi two-dimensional electron gas
    npj Quantum Materials. 2022; 7: 41 (10 pp.). https://doi.org/10.1038/s41535-022-00448-4
    DORA PSI
  • Falqueto JB, Clark AH, Štefančič A, Smales GJ, Vaz CAF, Schuler AJ, et al.
    High performance doped Li-rich Li1+xMn2-xO4 cathodes nanoparticles synthesized by facile, fast, and efficient microwave assisted hydrothermal route
    ACS Applied Energy Materials. 2022; 5(7): 8357-8370. https://doi.org/10.1021/acsaem.2c00902
    DORA PSI
  • Farhan A, Stramaglia F, Cocconcelli M, Kuznetsov N, Yao L, Kleibert A, et al.
    Weak ferromagnetism in Tb(Fe0.2Mn0.2Co0.2Cr0.2Ni0.2)O3 high-entropy oxide perovskite thin films
    Physical Review B. 2022; 106(6): L060404 (5 pp.). https://doi.org/10.1103/PhysRevB.106.L060404
    DORA PSI
  • Giorgianni F, Burian M, Gurung N, Kubli M, Esposito V, Staub U, et al.
    Melting of magnetic order in NaOsO3 by femtosecond laser pulses
    Physical Review B. 2022; 105: 155147 (9 pp.). https://doi.org/10.1103/PhysRevB.105.155147
    DORA PSI
  • Grigorev V, Filianina M, Lytvynenko Y, Sobolev S, Pokharel AR, Lanz AP, et al.
    Optically triggered Néel vector manipulation of a metallic antiferromagnet Mn2Au under strain
    ACS Nano. 2022; 16(12): 20589-20597. https://doi.org/10.1021/acsnano.2c07453
    DORA PSI
  • Grigoryeva NA, Ukleev V, Vorobiev AA, Stognij AI, Novitskii NN, Lutsev LV, et al.
    Mesostructure and magnetic properties of SiO2-Co granular film on silicon substrate
    Magnetochemistry. 2022; 8(12): 167 (19 pp.). https://doi.org/10.3390/magnetochemistry8120167
    DORA PSI
  • Grimes M, Gurung N, Ueda H, Porter DG, Pedrini B, Heyderman LJ, et al.
    X-ray investigation of long-range antiferromagnetic ordering in FeRh
    AIP Advances. 2022; 12(3): 035048 (5 pp.). https://doi.org/10.1063/9.0000320
    DORA PSI
  • Grünleitner T, Henning A, Bissolo M, Kleibert A, Vaz CAF, Stier AV, et al.
    Electronically tunable transparent conductive thin films for scalable integration of 2D materials with passive 2D–3D interfaces
    Advanced Functional Materials. 2022; 32(21): 2111343 (8 pp.). https://doi.org/10.1002/adfm.202111343
    DORA PSI
  • Herman A, Kraus S, Tsukamoto S, Spieker L, Caciuc V, Lojewski T, et al.
    Tailoring magnetic anisotropy by graphene-induced selective skyhook effect on 4f-metals
    Nanoscale. 2022; 14(20): 7682-7691. https://doi.org/10.1039/d2nr01458k
    DORA PSI
  • Hofhuis K, Skjærvø SH, Parchenko S, Arava H, Luo Z, Kleibert A, et al.
    Real-space imaging of phase transitions in bridged artificial kagome spin ice
    Nature Physics. 2022; 18: 699-705. https://doi.org/10.1038/s41567-022-01564-5
    DORA PSI
  • Karube K, Ukleev V, Kagawa F, Tokura Y, Taguchi Y, White JS
    Unveiling the anisotropic fractal magnetic domain structure in bulk crystals of antiskyrmion host (Fe,Ni,Pd)3P by small-angle neutron scattering
    Journal of Applied Crystallography. 2022; 55(6): 1392-1400. https://doi.org/10.1107/S1600576722008561
    DORA PSI
  • Korzyński MD, Bernhardt M, Romankov V, Dreiser J, Matmon G, Pointillart F, et al.
    Cyclooctatetraenide-based single-ion magnets featuring bulky cyclopentadienyl ligand
    Chemical Science. 2022; 13(35): 10574-10580. https://doi.org/10.1039/D2SC02560D
    DORA PSI
  • Koutsouflakis E, Krylov D, Bachellier N, Sostina D, Dubrovin V, Liu F, et al.
    Metamagnetic transition and a loss of magnetic hysteresis caused by electron trapping in monolayers of single-molecule magnet Tb2@C79N
    Nanoscale. 2022; 14(27): 9877-9892. https://doi.org/10.1039/d1nr08475e
    DORA PSI
  • Kraus S, Herman A, Huttmann F, Bianchi M, Stan R-M, Holt AJ, et al.
    Uniaxially aligned 1D sandwich-molecular wires: electronic structure and magnetism
    Journal of Physical Chemistry C. 2022; 126(6): 3140-3150. https://doi.org/10.1021/acs.jpcc.1c10625
    DORA PSI
  • Kubec A, Samadi N, Langer M, Döring F, Rösner B, Guzenko VA, et al.
    Slope error correction on X-ray reflection gratings by a variation of the local line density
    Optics Express. 2022; 30(26): 46248-46258. https://doi.org/10.1364/OE.471438
    DORA PSI
  • Lumetzberger J, Ney V, Zakharova A, Primetzhofer D, Lenz K, Ney A
    Control of site occupancy by variation of the Zn and Al content in NiZnAl ferrite epitaxial films with low magnetic damping
    Physical Review B. 2022; 105(13): 134412 (12 pp.). https://doi.org/10.1103/PhysRevB.105.134412
    DORA PSI
  • Mielke III C, Ma WL, Pomjakushin V, Zaharko O, Sturniolo S, Liu X, et al.
    Low-temperature magnetic crossover in the topological kagome magnet TbMn6Sn6
    Communications Physics. 2022; 5(1): 107 (9 pp.). https://doi.org/10.1038/s42005-022-00885-4
    DORA PSI
  • Morgenbesser M, Viernstein A, Schmid A, Herzig C, Kubicek M, Taibl S, et al.
    Unravelling the origin of ultra‐low conductivity in SrTiO3 thin films: Sr vacancies and Ti on A‐sites cause fermi level pinning
    Advanced Functional Materials. 2022; 32(38): 2202226 (20 pp.). https://doi.org/10.1002/adfm.202202226
    DORA PSI
  • Morgenthaler J, Frefel D, Meier J, Oesterling N, Perren G, Heuberger S
    Revalue geoscientific data utilising deep learning
    Swiss-Bulletin für angewandte Geologie. 2022; 27(1): 45-55.
    DORA PSI
  • Parchenko S, Ortiz Hernández N, Savoini M, Porer M, Decker M, Burganov B, et al.
    Ultrafast probe of magnetization dynamics in multiferroic CoCr2 O4 and Co0.975Ge0.025Cr2 O4
    Physical Review B. 2022; 105(6): 064432 (8 pp.). https://doi.org/10.1103/PhysRevB.105.064432
    DORA PSI
  • Saccone M, Caravelli F, Hofhuis K, Parchenko S, Birkhölzer YA, Dhuey S, et al.
    Direct observation of a dynamical glass transition in a nanomagnetic artificial Hopfield network
    Nature Physics. 2022; 18: 517-521. https://doi.org/10.1038/s41567-022-01538-7
    DORA PSI
  • Sukhanov AS, Ukleev V, Vir P, Gargiani P, Valvidares M, White JS, et al.
    Hybrid Bloch-Néel spiral states in Mn1.4PtSn probed by resonant soft x-ray scattering
    Physical Review B. 2022; 106(14): L140402 (5 pp.). https://doi.org/10.1103/PhysRevB.106.L140402
    DORA PSI
  • Surace Y, Leanza D, Mirolo M, Kondracki Ł, Vaz CAF, El Kazzi M, et al.
    Evidence for stepwise formation of solid electrolyte interphase in a Li-ion battery
    Energy Storage Materials. 2022; 44: 156-167. https://doi.org/10.1016/j.ensm.2021.10.013
    DORA PSI
  • Ueda H, Skoropata E, Burian M, Ukleev V, Perren GS, Leroy L, et al.
    Conical spin order with chiral quadrupole helix in CsCuCl3
    Physical Review B. 2022; 105(14): 144408 (9 pp.). https://doi.org/10.1103/PhysRevB.105.144408
    DORA PSI
  • Ueda H, Jang H, Chun SH, Kim H-D, Kim M, Park S-Y, et al.
    Optical excitation of electromagnons in hexaferrite
    Physical Review Research. 2022; 4(2): 023007 (18 pp.). https://doi.org/10.1103/PhysRevResearch.4.023007
    DORA PSI
  • Ueda H, Skoropata E, Piamonteze C, Ortiz Hernández N, Burian M, Tanaka Y, et al.
    Unusual ferrimagnetism in CaFe2O4
    Physical Review Materials. 2022; 6(12): 124405 (8 pp.). https://doi.org/10.1103/PhysRevMaterials.6.124405
    DORA PSI
  • Ukleev V, Pschenichnyi KA, Utesov O, Karube K, Mühlbauer S, Cubitt R, et al.
    Spin wave stiffness and damping in a frustrated chiral helimagnet Co8Zn8Mn4 as measured by small-angle neutron scattering
    Physical Review Research. 2022; 4(2): 023239 (9 pp.). https://doi.org/10.1103/PhysRevResearch.4.023239
    DORA PSI
  • Ukleev V, Morikawa D, Karube K, Kikkawa A, Shibata K, Taguchi Y, et al.
    Topological melting of the metastable skyrmion lattice in the chiral magnet Co9Zn9Mn2
    Advanced Quantum Technologies. 2022; 5(11): 2200066 (8 pp.). https://doi.org/10.1002/qute.202200066
    DORA PSI
  • Viernstein A, Kubicek M, Morgenbesser M, Huber TM, Ellmeyer E, Siebenhofer M, et al.
    Mechanism of photo-ionic stoichiometry changes in SrTiO3
    Solid State Ionics. 2022; 383: 115992 (9 pp.). https://doi.org/10.1016/j.ssi.2022.115992
    DORA PSI
  • Vijayakumar J, Gaspar M, Maurel L, Horisberger M, Nolting F, Vaz CAF
    High frequency characterization of Si3 N4 dielectrics for artificial magnetoelectric devices
    Journal of Materials Science. 2022; 57: 19872-19881. https://doi.org/10.1007/s10853-022-07832-2
    DORA PSI
  • White JS, Karube K, Ukleev V, Derlet PM, Cubitt R, Dewhurst CD, et al.
    Small-angle neutron scattering study of mesoscale magnetic disordering and skyrmion phase suppression in the frustrated chiral magnet Co6.75Zn6.75Mn6.5
    Journal of Applied Crystallography. 2022; 55: 1219-1231. https://doi.org/10.1107/S1600576722007403
    DORA PSI
  • Windsor YW, Lee SE, Zahn D, Borisov V, Thonig D, Kliemt K, et al.
    Exchange scaling of ultrafast angular momentum transfer in 4f antiferromagnets
    Nature Materials. 2022; 21: 514-517. https://doi.org/10.1038/s41563-022-01206-4
    DORA PSI
  • Xu Z, Romankov V, Doll A, Dreiser J
    Orienting dilute thin films of non-planar spin-1/2 vanadyl-phthalocyanine complexes
    Materials Advances. 2022; 3(12): 4938-4946. https://doi.org/10.1039/d2ma00157h
    DORA PSI
  • Aeschlimann R, Grisolia MN, Sanchez-Santolino G, Varignon J, Choueikani F, Mattana R, et al.
    X-ray absorption and x-ray magnetic circular dichroism in bulk and thin films of ferrimagnetic GdTiO3
    Physical Review Materials. 2021; 5(1): 014407 (9 pp.). https://doi.org/10.1103/PhysRevMaterials.5.014407
    DORA PSI
  • Baljozović M, Liu X, Popova O, Girovsky J, Nowakowski J, Rossmann H, et al.
    Self-assembly and magnetic order of bi-molecular 2D spin lattices of M(II,III) phthalocyanines on Au(111)
    Magnetochemistry. 2021; 7(8): 119 (15 pp.). https://doi.org/10.3390/magnetochemistry7080119
    DORA PSI
  • Bikaljević D, González-Orellana C, Peña-Díaz M, Steiner D, Dreiser J, Gargiani P, et al.
    Noncollinear magnetic order in two-dimensional NiBr2 films grown on Au(111)
    ACS Nano. 2021; 15(9): 14985-14995. https://doi.org/10.1021/acsnano.1c05221
    DORA PSI
  • Bulbucan C, Preger C, Kostanyan A, Jensen KMØ, Kokkonen E, Piamonteze C, et al.
    Large exchange bias in Cr substituted Fe3O4 nanoparticles with FeO subdomains
    Nanoscale. 2021; 13(37): 15844-15852. https://doi.org/10.1039/d1nr04614d
    DORA PSI
  • Burian M, Pedrini BF, Ortiz Hernandez N, Ueda H, Vaz CAF, Caputo M, et al.
    Buried moiré supercells through SrTiO3 nanolayer relaxation
    Physical Review Research. 2021; 3(1): 013225 (10 pp.). https://doi.org/10.1103/PhysRevResearch.3.013225
    DORA PSI
  • Burian M, Porer M, Mardegan JRL, Esposito V, Parchenko S, Burganov B, et al.
    Structural involvement in the melting of the charge density wave in 1T-TiSe2
    Physical Review Research. 2021; 3(1): 013128 (14 pp.). https://doi.org/10.1103/PhysRevResearch.3.013128
    DORA PSI
  • Caputo M, Ristic Z, Dhaka RS, Das T, Wang Z, Matt CE, et al.
    Proximity-induced novel ferromagnetism accompanied with resolute metallicity in NdNiO3 heterostructure
    Advanced Science. 2021; 8(19): 2101516 (7 pp.). https://doi.org/10.1002/advs.202101516
    DORA PSI
  • Chen CH, Spree L, Koutsouflakis E, Krylov DS, Liu F, Brandenburg A, et al.
    Magnetic hysteresis at 10 K in single molecule magnet self-assembled on gold
    Advanced Science. 2021; 8(5): 2000777 (7 pp.). https://doi.org/10.1002/advs.202000777
    DORA PSI
  • Chen B, Gauquelin N, Green RJ, Lee JH, Piamonteze C, Spreitzer M, et al.
    Spatially controlled octahedral rotations and metal-insulator transitions in nickelate superlattices
    Nano Letters. 2021; 21(3): 1295-1302. https://doi.org/10.1021/acs.nanolett.0c03850
    DORA PSI
  • Cherniukh I, Rainò G, Stöferle T, Burian M, Travesset A, Naumenko D, et al.
    Perovskite-type superlattices from lead halide perovskite nanocubes
    Nature. 2021; 593(7860): 535-542. https://doi.org/10.1038/s41586-021-03492-5
    DORA PSI
  • Cojocariu I, Carlotto S, Sturmeit HM, Zamborlini G, Cinchetti M, Cossaro A, et al.
    Ferrous to ferric transition in Fe-phthalocyanine driven by NO2 exposure
    Chemistry: A European Journal. 2021; 27(10): 3526-3535. https://doi.org/10.1002/chem.202004932
    DORA PSI
  • De Luca G, Spring J, Bashir U, Campanini M, Totani R, Dominguez C, et al.
    Ferromagnetic insulating epitaxially strained La2NiMnO6 thin films grown by sputter deposition
    APL Materials. 2021; 9(8): 081111 (7 pp.). https://doi.org/10.1063/5.0055614
    DORA PSI
  • Digernes E, Strømberg A, Vaz CAF, Kleibert A, Grepstad JK, Folven E
    Anisotropy and domain formation in a dipolar magnetic metamaterial
    Applied Physics Letters. 2021; 118(20): 202404 (4 pp.). https://doi.org/10.1063/5.0045450
    DORA PSI
  • Donati F, Pivetta M, Wolf C, Singha A, Wäckerlin C, Baltic R, et al.
    Correlation between electronic configuration and magnetic stability in dysprosium single atom magnets
    Nano Letters. 2021; 21(19): 8226-8273. https://doi.org/10.1021/acs.nanolett.1c02744
    DORA PSI
  • Dreiser J, Wäckerlin C, Buzzi M, Pedersen KS, Bendix J
    Island formation of Er(trensal) single-ion magnets on graphene observed on the micrometer scale
    RSC Advances. 2021; 11(16): 9421-9425. https://doi.org/10.1039/D1RA00783A
    DORA PSI
  • Fikáček J, Warmuth J, Arnold F, Piamonteze C, Mao Z, Holý V, et al.
    Disorder-induced time effect in the antiferromagnetic domain state of Fe1+yTe
    Journal of Magnetism and Magnetic Materials. 2021; 540: 168426 (5 pp.). https://doi.org/10.1016/j.jmmm.2021.168426
    DORA PSI
  • Gaina R, Nicholson CW, Rumo M, Sarkar S, Khmaladze J, Paris E, et al.
    Long-ranged Cu-based order with dz2 orbital character at a YBa2Cu3O7/ manganite interface
    npj Quantum Materials. 2021; 6: 12 (8 pp.). https://doi.org/10.1038/s41535-021-00311-y
    DORA PSI
  • Hennes M, Rösner B, Chardonnet V, Chiuzbaian GS, Delaunay R, Döring F, et al.
    Time-resolved XUV absorption spectroscopy and magnetic circular dichroism at the Ni M2,3-edges
    Applied Sciences. 2021; 11(1): 325 (11 pp.). https://doi.org/10.3390/app11010325
    DORA PSI
  • Hofhuis K, Petersen CF, Saccone M, Dhuey S, Kleibert A, van Dijken S, et al.
    Geometrical frustration and competing orders in the dipolar trimerized triangular lattice
    Physical Review B. 2021; 104(1): 014409 (7 pp.). https://doi.org/10.1103/PhysRevB.104.014409
    DORA PSI
  • Kleibert A
    Magnetism of individual nanoparticles probed by x-ray photoemission electron microscopy
    In: Peddis D, Laureti S, Fiorani D, eds. New trends in nanoparticle magnetism. Springer series in materials science. Cham: Springer Nature; 2021:219-239. https://doi.org/10.1007/978-3-030-60473-8_9
    DORA PSI
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    Revealing the dual surface reactions on a HE-NCM Li-Ion battery cathode and their impact on the surface chemistry of the counter electrode
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    Surface degradation and chemical electrolyte oxidation induced by the oxygen released from layered oxide cathodes in Li−ion batteries
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