1
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Nugroho F.A.A.
, Świtlik D.
, Armanious A.
, O’Reilly P.
, Darmadi I.
, Nilsson S.
, Zhdanov V.P.
, Höök F.
, Antosiewicz T.J.
, Langhammer C.
Time-Resolved Thickness and Shape-Change Quantification using a Dual-Band Nanoplasmonic Ruler with Sub-Nanometer Resolution
ACS Nano. 2022.
V.16. N10. P.15814–15826. DOI: 10.1021/acsnano.2c04948
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2
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Alekseeva S.
, Strach M.
, Nilsson S.
, Fritzsche J.
, Zhdanov V.P.
, Langhammer C.
Grain-Growth Mediated Hydrogen Sorption Kinetics and Compensation Effect in Single Pd Nanoparticles
Nature Communications. 2021.
V.12. N1. 5427
:1-10. DOI: 10.1038/s41467-021-25660-x
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РИНЦ
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3
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Darmadi I.
, Stolaś A.
, Östergren I.
, Berke B.
, Nugroho F.A.A.
, Minelli M.
, Lerch S.
, Tanyeli I.
, Lund A.
, Andersson O.
, Zhdanov V.P.
, Liebi M.
, Moth-Poulsen K.
, Müller C.
, Langhammer C.
Bulk-Processed Pd Nanocube–Poly(methyl methacrylate) Nanocomposites as Plasmonic Plastics for Hydrogen Sensing
ACS Applied Nano Materials. 2020.
V.3. N8. P.8438-8445. DOI: 10.1021/acsanm.0c01907
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РИНЦ
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4
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Albinsson D.
, Nilsson S.
, Antosiewicz T.J.
, Zhdanov V.P.
, Langhammer C.
Heterodimers for in Situ Plasmonic Spectroscopy: Cu Nanoparticle Oxidation Kinetics, Kirkendall Effect, and Compensation in the Arrhenius Parameters
The Journal of Physical Chemistry C. 2019.
V.123. N10. P.6284-6293. DOI: 10.1021/acs.jpcc.9b00323
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РИНЦ
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5
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Nugroho F.A.A.
, Darmadi I.
, Cusinato L.
, Susarrey-Arce A.
, Schreuders H.
, Bannenberg L.J.
, da Silva Fanta A.B.
, Kadkhodazadeh S.
, Wagner J.B.
, Antosiewicz T.J.
, Hellman A.
, Zhdanov V.P.
, Dam B.
, Langhammer C.
Metal–Polymer Hybrid Nanomaterials for Plasmonic Ultrafast Hydrogen Detection
Nature Materials. 2019.
V.18. N5. P.489-495. DOI: 10.1038/s41563-019-0325-4
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РИНЦ
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6
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Nugroho F.A.A.
, Darmadi I.
, Zhdanov V.P.
, Langhammer C.
Universal Scaling and Design Rules of Hydrogen-Induced Optical Properties in Pd and Pd-Alloy Nanoparticles
ACS Nano. 2018.
V.12. N10. P.9903–9912. DOI: 10.1021/acsnano.8b02835
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РИНЦ
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7
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Zhdanov V.P.
, Langhammer C.
Charge Transfer Between Sensing and Targeted Metal Nanoparticles in Indirect Nanoplasmonic Sensors
Physica E: Low-Dimensional Systems and Nanostructures. 2017.
V.87. P.205-208. DOI: 10.1016/j.physe.2016.10.023
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РИНЦ
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8
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Alekseeva S.
, Bastos da Silva Fanta A.
, Iandolo B.
, Antosiewicz T.J.
, Nugroho F.A.A.
, Wagner J.B.
, Burrows A.
, Zhdanov V.P.
, Langhammer C.
Grain Boundary Mediated Hydriding Phase Transformations in Individual Polycrystalline Metal Nanoparticles
Nature Communications. 2017.
V.8. N1. 1084
:1-10. DOI: 10.1038/s41467-017-00879-9
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РИНЦ
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9
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Wettergren K.
, Hellman A.
, Cavalca F.
, Zhdanov V.P.
, Langhammer C.
Unravelling the Dependence of Hydrogen Oxidation Kinetics on the Size of Pt Nanoparticles by in Operando Nanoplasmonic Temperature Sensing
Nano Letters. 2015.
V.15. N1. P.574-580. DOI: 10.1021/nl504042u
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РИНЦ
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10
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Tabib Zadeh Adibi P.
, Zhdanov V.P.
, Langhammer C.
, Grönbeck H.
Transient Bimodal Particle Size Distributions during Pt Sintering on Alumina and Silica
The Journal of Physical Chemistry C. 2015.
V.119. N2. P.989-996. DOI: 10.1021/jp506586g
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РИНЦ
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11
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Zhdanov V.P.
, Schweinberger F.F.
, Heiz U.
, Langhammer C.
Ostwald Ripening of Supported Pt Nanoclusters with Initial Size-Selected Distributions
Chemical Physics Letters. 2015.
V.631-632. P.21-25. DOI: 10.1016/j.cplett.2015.04.037
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РИНЦ
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12
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Syrenova S.
, Wadell C.
, Nugroho F.A.A.
, Gschneidtner T.A.
, Diaz Fernandez Y.A.
, Nalin G.
, Świtlik D.
, Westerlund F.
, Antosiewicz T.
, Zhdanov V.P.
, Moth-Poulsen K.
, Langhammer C.
Hydride Formation Thermodynamics and Hysteresis in Individual Pd Nanocrystals with Different Size and Shape
Nature Materials. 2015.
N14. P.1236-1244. DOI: 10.1038/nmat4409
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РИНЦ
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13
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Wadell C.
, Pingel T.
, Olsson E.
, Zorić I.
, Zhdanov V.P.
, Langhammer C.
Thermodynamics of Hydride Formation and Decomposition in Supported Sub-10 nm Pd Nanoparticles of Different Sizes
Chemical Physics Letters. 2014.
V.603. P.75-81. DOI: 10.1016/j.cplett.2014.04.036
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РИНЦ
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14
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Wettergren K.
, Schweinberger F.F.
, Deiana D.
, Ridge C.J.
, Crampton A.S.
, Rötzer M.D.
, Hansen T.W.
, Zhdanov V.P.
, Heiz U.
, Langhammer C.
High Sintering Resistance of Size-Selected Platinum Cluster Catalysts by Suppressed Ostwald Ripening
Nano Letters. 2014.
V.14. N10. P.5803-5809. DOI: 10.1021/nl502686u
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РИНЦ
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15
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Gusak V.
, Heiniger L-P.
, Zhdanov V.P.
, Grätzel M.
, Kasemo B.
, Langhammer C.
Diffusion and Adsorption of Dye Molecules in Mesoporous TiO2 Photoelectrodes Studied by Indirect Nanoplasmonic Sensing
Energy & Environmental Science. 2013.
V.6. P.3627-3636. DOI: 10.1039/C3EE42352B
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РИНЦ
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16
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Larsson E.M.
, Millet J.
, Gustafsson S.
, Skoglundh M.
, Zhdanov V.P.
, Langhammer C.
Real Time Indirect Nanoplasmonic in situ Spectroscopy of Catalyst Nanoparticle Sintering
ACS Catalysis. 2012.
V.2. N2. P.238-245. DOI: 10.1021/cs200583u
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РИНЦ
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17
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Langhammer C.
, Larsson E.M.
, Zhdanov V.P.
, Zorić I.
Asymmetric Hysteresis in Nanoscopic Single-Metal Hydrides: Palladium Nanorings
The Journal of Physical Chemistry C. 2012.
V.116. N40. P.21201-21207. DOI: 10.1021/jp3059273
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РИНЦ
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18
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Zhdanov V.P.
, Larsson E.M.
, Langhammer C.
Novel Aspects of Ostwald Ripening of Supported Metal Nanoparticles
Chemical Physics Letters. 2012.
V.533. P.65-69. DOI: 10.1016/j.cplett.2012.03.010
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РИНЦ
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19
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Langhammer C.
, Zhdanov V.P.
, Zorić I.
, Kasemo B.
Size-Dependent Hysteresis in the Formation and Decomposition of Hydride in Metal Nanoparticles
Chemical Physics Letters. 2010.
V.488. N1-3. P.62-66. DOI: 10.1016/j.cplett.2010.01.071
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РИНЦ
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20
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Langhammer C.
, Zhdanov V.P.
, Zorić I.
, Kasemo B.
Size-Dependent Kinetics of Hydriding and Dehydriding of Pd Nanoparticles
Physical Review Letters. 2010.
V.104. N13. P.135502. DOI: 10.1103/PhysRevLett.104.135502
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РИНЦ
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