X-ray diffractometer with high brightness source Rigaku SmartLab 9kW (RIGAKU9)
Guarantor:
Ondřej Caha, Ph.D.
Instrument status:
Some Issues, 23.4.2026 14:40, Hypix detector problem
Equipment placement:
CEITEC Nano - A1.16
Diffractometer for complex structural analysis of nanostructured materials and 2D – 0D nanostructures
Publications:
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Zelenák, F.; Buchlová, T.; Zažímal, F.; Sihelník, S.; Vrána, L.; Kováčik, D.; Gemeiner, P.; Krumpolec, R., 2026: . APPLIED SURFACE SCIENCE 715, doi: 10.1016/j.apsusc.2025.164566; FULL TEXT
(FTIR, RIGAKU9, KRATOS-XPS) -
HAJDUČEK, J.; ANDRIEUX, A.; ARREGI URIBEETXEBARRIA, J.; TICHY, M.; CATTANEO, P.; FERRARI, B.; CARBONE, F.; UHLÍŘ, V.; LAGRANGE, T., 2026: Dislocation-driven nucleation type switching across repeated ultrafast magnetostructural phase transition. PHYSICAL REVIEW B 113(1), doi: 10.1103/k8nj-p557; FULL TEXT
(MAGNETRON, RIGAKU9, VERSALAB, WOOLLAM-VIS) -
HAJDUČEK, J.; LECCESE, V.; RUSZ, J.; ARREGI URIBEETXEBARRIA, J.; SAPOZHNIK, A.; ŠTINDL, J.; BARANTANI, F.; CATTANEO, P.; ANDRIEUX, A.; CARBONE, F.; UHLÍŘ, V.; LAGRANGE, T., 2026: Sub-10-nm quantification of spin and orbital magnetic moment across the metamagnetic phase transition in FeRh using EMCD. PHYSICAL REVIEW MATERIALS 10(1), p. 1 - 11, doi: 10.1103/m3vy-18hn; FULL TEXT
(MAGNETRON, RIGAKU9, VERSALAB) -
Mattern, M.; Zeuschner, SP.; Rössle, M.; Arregi, JA.; Uhlir, V.; Bargheer, M., 2025: Non-thermal electrons open the non-equilibrium pathway of the phase transition in FeRh. COMMUNICATIONS PHYSICS 8(1), doi: 10.1038/s42005-025-02066-5; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9) -
Horký, M., 2025: . PH.D. THESIS , p. 1 - 181; FULL TEXT
(RAITH, MIRA-EBL, LYRA, TEGRAMIN, SUSS-MA8, DEKTAK, NANOCALC, MAGNETRON, EVAPORATOR, RIE-FLUORINE, WIRE-BONDER, MPS150, CRYOGENIC, LAKESHORE, VERSALAB, ICON-SPM, UHV-PREPARATION, TITAN, HELIOS, VERIOS, RIGAKU3, RIGAKU9)
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Musálek, T.; Liska, P.; Morsa, A.; Arregi, JA.; Klok, P.; Kratochvil, M.; Sergeev, D.; Müller, M.; Sikola, T.; Kolibal, M., 2025: Single- vs dual-source vapor deposition of inorganic halide perovskites: A case study of CsPbBr3. APL MATERIALS , doi: 10.1063/5.0242134; FULL TEXT
(RIGAKU9, VERIOS, WITEC-RAMAN, KRATOS-XPS) -
WU, X.; PENG, X.; REN, L.; GUAN, J.; PUMERA, M., 2025: Reconfigurable Self-Assembling Photocatalytic Magnetic Liquid Metal Microrobot Swarm for Microplastic Capture and Degradation. SMALL 21(38), doi: 10.1002/smll.202501351; FULL TEXT
(MIRA-STAN, RIGAKU9, VERSALAB, KRATOS-XPS) -
KRČMA, J.; WOJEWODA, O.; HRTOŇ, M.; HOLOBRÁDEK, J.; ARREGI URIBEETXEBARRIA, J.; PANDA, J.; PRIBYTOVA, E.; URBÁNEK, M., 2025: Mie-enhanced microfocused Brillouin light scattering for full wave vector resolution of nanoscale spin waves. SCIENCE ADVANCES 11(44), p. 1 - 9, doi: 10.1126/sciadv.ady8833; FULL TEXT
(BRILLOUIN, EVAPORATOR, RAITH, RIGAKU9) -
PECHEUX, A.; SALVATORE, R.; THEVENARD, L.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; ALMANZA, M.; FOURNIER, D.; GOURDON, C.; LOBUE, M., 2025: Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films. PHYSICAL REVIEW B 112(13), doi: 10.1103/fytj-vy5c; FULL TEXT
(MAGNETRON, RIGAKU9, VERSALAB) -
KEPIČ, P.; LIŠKA, P.; IDESOVÁ, B.; CAHA, O.; LIGMAJER, F.; ŠIKOLA, T., 2024: . NEW JOURNAL OF PHYSICS 26(1), p. 1 - 8, doi: 10.1088/1367-2630/ad1696; FULL TEXT
(ICON-SPM, LYRA, ALD-FIJI, WITEC-RAMAN, RIGAKU9, WOOLLAM-VIS, KRATOS-XPS) -
Castellano, A.; Alhada-Lahbabi, K.; Arregi, JA.; Uhlir, V.; Perrin, B.; Gourdon, C.; Fournier, D.; Verstraete, MJ.; Thevenard, L., 2024: . PHYSICAL REVIEW MATERIALS 8(8), doi: 10.1103/PhysRevMaterials.8.084411; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, WOOLLAM-VIS) -
MATTERN, M.; PUDELL, J.; ARREGI URIBEETXEBARRIA, J.; ZLÁMAL, J.; KALOUSEK, R.; UHLÍŘ, V.; RÖSSLE, M.; BARGHEER, M., 2024: . ADVANCED FUNCTIONAL MATERIALS 34(32), doi: 10.1002/adfm.202313014; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, ICON-SPM, WOOLLAM-VIS) -
MATTERN, M.; JARECKI, J.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; RÖSSLE, M.; BARGHEER, M., 2024: . APL MATERIALS 12(5), doi: 10.1063/5.0206095; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9) -
Opršal, J., 2024: . MASTER'S THESIS , p. 1 - 48; FULL TEXT
(MAGNETRON, RIGAKU9, KERR-MICROSCOPE, ULTRAFAST-LASER) -
Kiaba, M.; Suter, A.; Salman, Z.; Prokscha, T.; Chen, B.; Koster, G.; Dubroka, A., 2024: . NATURE COMMUNICATIONS 15(1), doi: 10.1038/s41467-024-49518-0; FULL TEXT
(ICON-SPM, RIGAKU9) -
Baishya, K.; Bacova, J.; Al Chimali, B.; Capek, J.; Michalicka, J.; Gautier, G.; Le Borgne, B.; Rousar, T. ; Macak, JM., 2024: . ACS APPLIED MATERIALS & INTERFACES 17(1), p. 739 - 11, doi: 10.1021/acsami.4c19142; FULL TEXT
(TITAN, RIGAKU9, ALD-FIJI, VERIOS, ICON-SPM, KRATOS-XPS) -
ABADIZAMAN, F.; MUNZAR, D.; KIABA, M.; DUBROKA, A., 2024: . PHYSICAL REVIEW B , p. 235151-1 - 8, doi: 10.1103/PhysRevB.110.235151; FULL TEXT
(WOOLLAM-MIR, WOOLLAM-VIS, VERSALAB, RIGAKU9) -
MOTYČKOVÁ, L.; ARREGI URIBEETXEBARRIA, J.; STAŇO, M.; PRŮŠA, S.; ČÁSTKOVÁ, K.; UHLÍŘ, V., 2023: . ACS APPLIED MATERIALS & INTERFACES 15(6), p. 8653 - 13, doi: 10.1021/acsami.2c20107; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, UHV-LEIS, VERIOS, ICON-SPM) -
ALMOTASEM, A.; DAGHBOUJ, N.; SEN, H.; MIRZAEI, S.; CALLISTI, M.; POLCAR, T., 2023: . ACTA MATERIALIA 249, doi: 10.1016/j.actamat.2023.118832; FULL TEXT
(RIGAKU9, ICON-SPM) -
ARREGI URIBEETXEBARRIA, J.; RINGE, F.; HAJDUČEK, J.; GOMONAY, O.; MOLNÁR, T.; JASKOWIEC, J.; UHLÍŘ, V., 2023: . JOURNAL OF PHYSICS: MATERIALS 6(3), p. 1 - 15, doi: 10.1088/2515-7639/acce6f; FULL TEXT
(MAGNETRON, KERR-MICROSCOPE, VERSALAB, RIGAKU9, ICON-SPM, HELIOS, TITAN) -
Hnilica, J., 2023: . MASTER'S THESIS ; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, SUSS-RCD8, DWL, WIRE-BONDER, KERR-MICROSCOPE) -
Molnár, T., 2023: . MASTER'S THESIS , p. 1 - 73; FULL TEXT
(MAGNETRON, RIGAKU9, KERR-MICROSCOPE, TITAN) -
POLAT, Ö.; HORÁK, M.; ARREGI URIBEETXEBARRIA, J.; BUKVIŠOVÁ, K.; ZLÁMAL, J.; ŠIKOLA, T., 2023: . SURFACES AND INTERFACES 40, doi: 10.1016/j.surfin.2023.103118; FULL TEXT
(MAGNETRON, RIGAKU9, TITAN, HELIOS, CRYOGENIC, LYRA, KRATOS-XPS) -
Duchaň; M., 2023: . BACHELOR'S THESIS , p. 1 - 31; FULL TEXT
(WOOLLAM-MIR, WOOLLAM-VIS, RIGAKU9) -
POLAT, Ö.; ARREGI URIBEETXEBARRIA, J.; HORÁK, M.; POLČÁK, J.; BUKVIŠOVÁ, K.; ZLÁMAL, J.; ŠIKOLA, T., 2022: . JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS 161, p. 1 - 6, doi: 10.1016/j.jpcs.2021.110447; FULL TEXT
(MAGNETRON, RIGAKU9, TITAN, HELIOS, CRYOGENIC, LYRA, KRATOS-XPS) -
MAYORGA BURREZO, P.; MAYORGA-MARTINEZ, C.; PUMERA, M., 2022: . ADVANCED FUNCTIONAL MATERIALS , p. 2106699-1 - 8, doi: 10.1002/adfm.202106699; FULL TEXT
(MIRA-STAN, RIGAKU9, KRATOS-XPS) -
NOVCIC, K.; IFFELSBERGER, C.; PUMERA, M., 2022: . JOURNAL OF MATERIALS CHEMISTRY A , p. 3206 - 10, doi: 10.1039/d1ta06419c; FULL TEXT
(RIGAKU9, MIRA-STAN, LEICACOAT-STAN, ICON-SPM) -
HORKÝ, M.; ARREGI URIBEETXEBARRIA, J.; PATEL, S.; STAŇO, M.; MEDAPALLI, R.; CAHA, O.; VOJÁČEK, L.; HORÁK, M.; UHLÍŘ, V.; FULLERTON, E., 2022: . ACS APPLIED MATERIALS & INTERFACES 14(2), p. 3568 - 12, doi: 10.1021/acsami.1c22460; FULL TEXT
(VERSALAB, RIGAKU9, HELIOS, TITAN, ICON-SPM) -
POLAT, Ö.; MOHELSKÝ, I.; ARREGI URIBEETXEBARRIA, J.; HORÁK, M.; POLČÁK, J.; BUKVIŠOVÁ, K.; ZLÁMAL, J.; ŠIKOLA, T., 2022: . MATERIALS RESEARCH BULLETIN 149, p. 111696-1 - 7, doi: 10.1016/j.materresbull.2021.111696; FULL TEXT
(MAGNETRON, RIGAKU9, TITAN, HELIOS, CRYOGENIC, LYRA, KRATOS-XPS) -
Zahradník, M.; Kiaba, M.; Espinoza, S.; Rebarz, M.; Andreasson, J.; Caha, O.; Abadizaman, F.; Munzar, D.; Dubroka, A., 2022: . PHYSICAL REVIEW B 105(23), doi: 10.1103/PhysRevB.105.235113; FULL TEXT
(WOOLLAM-MIR, WOOLLAM-VIS, RIGAKU9) -
BIJALWAN, V.; PRAJZLER, V.; ERHART, J.; VELAZQUEZ, J.; GALUSEK, D.; MACA, K., 2022: . JOURNAL OF THE AMERICAN CERAMIC SOCIETY 3, p. 6886 - 12, doi: 10.1111/jace.18602; FULL TEXT
(RIGAKU9, VERIOS) -
MUNOZ MARTIN, J.; IFFELSBERGER, C.; REDONDO NEGRETE, E.; PUMERA, M., 2022: . APPLIED CATALYSIS B: ENVIRONMENTAL 316, p. 1 - 9, doi: 10.1016/j.apcatb.2022.121609; FULL TEXT
(TEGRAMIN, CITOVAC, MIRA-STAN, RIGAKU9, KRATOS-XPS) -
Kiaba, M.; Caha, O.; Abadizaman, F.; Dubroka, A., 2022: . THIN SOLID FILMS 759, doi: 10.1016/j.tsf.2022.139438; FULL TEXT
(RIGAKU9, VERSALAB) -
GABLECH, E.; FOHLEROVÁ, Z.; ŠVEC, K.; ZALEŠ, F.; BENADA, O.; KOFROŇOVÁ, O.; PEKÁRKOVÁ, J.; CAHA, O.; GABLECH, I.; DRBOHLAVOVÁ, J., 2022: . INTERNATIONAL BIODETERIORATION & BIODEGRADATION 169, p. 1 - 9, doi: 10.1016/j.ibiod.2022.105377; FULL TEXT
(VERIOS, RIGAKU9) -
KORČUŠKOVÁ, M.; SEVRIUGINA, V.; ONDREÁŠ, F.; SVATÍK, J.; TOMAL, W.; VISHAKHA, V.; ORTYL, J.; LEPCIO, P., 2022: . POLYMER TESTING 116, p. 1 - 10, doi: 10.1016/j.polymertesting.2022.107798; FULL TEXT
(MIRA-STAN, FTIR-CHEMLAB, RIGAKU9, DSC-DISCOVERY) -
SCHMIDT, N.; ABDULAZHANOV, S.; MICHALIČKA, J.; HINTERMAYR, J.; MAN, O.; CAHA, O.; URBÁNEK, M.; ALBRECHT, M., 2022: . JOURNAL OF APPLIED PHYSICS 132(21), doi: 10.1063/5.0124652; FULL TEXT
(TITAN, HELIOS, RIGAKU9) -
URSO, M.; USSIA, M.; NOVOTNÝ, F.; PUMERA, M., 2022: . NATURE COMMUNICATIONS 13(1), p. 3573-1 - 14, doi: 10.1038/s41467-022-31161-2; FULL TEXT
(LEICACOAT-NANO, MIRA-STAN, RIGAKU9, VERSALAB, KRATOS-XPS) -
CLAROS VARGAS, M.; GRÁCIA, I.; FIGUERAS, E.; VALLEJOS VARGAS, S., 2022: . CHEMOSENSORS 10(9), doi: 10.3390/chemosensors10090353; FULL TEXT
(RIGAKU9, KRATOS-XPS) -
Jarušek, J., 2022: . BACHELOR'S THESIS , p. 1 - 75; FULL TEXT
(DEKTAK, KAUFMAN, RIE-CHLORINE, NANOCALC, RIGAKU9, KEITHLEY-4200) -
CLAROS VARGAS, M.; KUTA, J.; EL-DAHSHAN, O.; MICHALIČKA, J.; YECID P., J.; VALLEJOS VARGAS, S., 2021: . JOURNAL OF MOLECULAR LIQUIDS 325, p. 115203-1 - 11, doi: 10.1016/j.molliq.2020.115203; FULL TEXT
(TITAN, RIGAKU9, KRATOS-XPS) -
Hofer, S.; Bodlos, W.; Novák, J.; Sanzone, A.; Beverina, L.; Resel, R., 2021: . LIQUID CRYSTALS 48(13), p. 1888 - 1896, doi: 10.1080/02678292.2021.1907626; FULL TEXT
(RIGAKU9) -
URSO, M.; USSIA, M.; PUMERA, M., 2021: . ADVANCED FUNCTIONAL MATERIALS 31(28), p. 2101510-1 - 10, doi: 10.1002/adfm.202101510; FULL TEXT
(MIRA-STAN, RIGAKU9, KRATOS-XPS) -
USSIA, M.; URSO, M.; DOLEŽELÍKOVÁ, K.; MICHÁLKOVÁ, H.; ADAM, V.; PUMERA, M., 2021: . ADVANCED FUNCTIONAL MATERIALS 31(27), p. 1 - 10, doi: 10.1002/adfm.202101178; FULL TEXT
(MIRA-EBL, RIGAKU9, KRATOS-XPS) -
GHAHFAROKHI, M.; ARREGI URIBEETXEBARRIA, J.; CASOLI, F.; HORKÝ, M.; CABASSI, R.; UHLÍŘ, V.; ALBERTINI, F., 2021: . APPLIED MATERIALS TODAY 23, p. 101058-1 - 11, doi: 10.1016/j.apmt.2021.101058; FULL TEXT
(VERSALAB, RIGAKU9, KERR-MICROSCOPE, SUSS-MA8, RIE-FLUORINE, EVAPORATOR, WIRE-BONDER, VERIOS) -
PRESSACCO, F.; SANGALLI, D.; UHLÍŘ, V.; KUTNYAKHOV, D.; ARREGI URIBEETXEBARRIA, J.; AGUSTSSON, S.; BRENNER, G.; REDLIN, H.; HEBER, M.; VASILYEV, D.; DEMSAR, J.; SCHÖNHENSE, G.; GATTI, M.; MARINI, A.; WURTH, W.; SIROTTI, F., 2021: . NATURE COMMUNICATIONS 12(1), p. 5088-1 - 8, doi: 10.1038/s41467-021-25347-3; FULL TEXT
(MAGNETRON, RIGAKU9, VERSALAB) -
Wimmer S., Sánchez-Barriga J., Küppers P., Ney A., Schierle E., Freyse F., Caha O., Michalička J., Liebmann M., Primetzhofer D., Hoffman M., Ernst A., Otrokov M.M., Bihlmayer G., Weschke E., Lake B., Chulkov E.V., Morgenstern M., Bauer G., Springholz G., Rader O., 2021: . ADVANCED MATERIALS 33(42), p. 1 - 11, doi: 10.1002/adma.202102935; FULL TEXT
(TITAN, RIGAKU9) -
Meduňa, M.; Caha, O.; Choumas, E.; Bressan, F.; von Känel, H., 2021: . JOURNAL OF APPLIED CRYSTALLOGRAPHY 54(4), p. 1071 - 1080, doi: 10.1107/S1600576721004969; FULL TEXT
(RIGAKU9) -
KAUSHIK, P.; ELIÁŠ, M.; PRÁŠEK, J.; MICHALIČKA, J.; ZAJÍČKOVÁ, L., 2021: . MATERIALS CHEMISTRY AND PHYSICS 271, p. 124901-1 - 11, doi: 10.1016/j.matchemphys.2021.124901; FULL TEXT
(EVAPORATOR, PECVD-NANOFAB, DIENER, ALD-FIJI, RIGAKU9, VERIOS, TITAN) -
SEYD, J.; URBÁNEK, M.; PILOTTEK, I.; SCHMIDT, N.; CAHA, O.; ALBRECHT, M., 2020: . JOURNAL OF PHYSICS CONDENSED MATTER 32(14), p. 145801-1 - 11, doi: 10.1088/1361-648X/ab5e16; FULL TEXT
(RIGAKU9) -
UHLÍŘ, V.; PRESSACCO, F.; ARREGI URIBEETXEBARRIA, J.; PROCHÁZKA, P.; PRŮŠA, S.; POTOČEK, M.; ŠIKOLA, T.; ČECHAL, J.; BENDOUNAN, A.; SIROTTI, F., 2020: . APPLIED SURFACE SCIENCE 514, p. 145923-1 - 7, doi: 10.1016/j.apsusc.2020.145923; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, UHV-LEEM, UHV-LEIS, UHV-SPM, UHV-PREPARATION, UHV-XPS, SIMS) -
Wittmann, A.; Schweicher, G.; Broch, K.; Novak, J.; Lami, V.; Cornil, D.; McNellis, E.R.; Zadvorna, O.; Venkateshvaran, D.; Takimiya, K.; Geerts, Y.H.; Cornil, J.; Vaynzof, Y.; Sinova, J.; Watanabe, S.; Sirringhaus, H., 2020: . PHYSICAL REVIEW LETTERS 124(2), p. 027204-1 - 6, doi: 10.1103/PhysRevLett.124.027204; FULL TEXT
(RIGAKU9) -
VON REPPERT, A.; WILLIG, L.; PUDELL, J.; ZEUSCHNER, S.; SELLGE, G.; GANSS, F.; HELLWIG, O.; ARREGI URIBEETXEBARRIA, J.; UHLÍŘ, V.; CRUT, A.; BARGHEER, M., 2020: . SCIENCE ADVANCES 6(28), p. 1 - 7, doi: 10.1126/sciadv.aba1142; FULL TEXT
(VERSALAB, RIGAKU9) -
Holobrádek, J., 2020: . MASTER´S THESIS , p. 1 - 70
(HELIOS, RIGAKU9, KERR-MICROSCOPE) -
ARREGI URIBEETXEBARRIA, J.; CAHA, O.; UHLÍŘ, V., 2020: . PHYSICAL REVIEW B 101(17), p. 174413-1 - 14, doi: 10.1103/PhysRevB.101.174413; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9) -
Číž, T., 2020: . MASTER'S THESIS
(WOOLLAM-VIS, RIGAKU9, SIMS, KRATOS-XPS) -
Motyčková, L., 2020: . MASTER'S THESIS , p. 1 - 90; FULL TEXT
(MAGNETRON, VERSALAB, RIGAKU9, VERIOS, KERR-MICROSCOPE, ICON-SPM) -
Shekargoftar, M; Pospisil, J; Dugacek, J; Weiter, M; Homola, T, 2020: . ACS OMEGA 5(29), p. 18384 - 18390, doi: 10.1021/acsomega.0c02179
(RIGAKU9, KRATOS-XPS) -
Fallarino, L.; Stienen, S.; Gallardo, RA.; Arregi, JA.; Uhlir, V.; Lenz, K.; Hubner, R.; Oelschlagel, A.; Hellwig, O.; Lindner, J. , 2020: . PHYSICAL REVIEW B 102(9), p. 094434-1 - 14, doi: 10.1103/PhysRevB.102.094434; FULL TEXT
(RIGAKU9) -
FALLARINO, L.; OELSCHLÄGEL, A.; ARREGI URIBEETXEBARRIA, J.; BASHKATOV, A.; SAMAD, F.; BÖHM, B.; CHESNEL, K.; HELLWIG, O., 2019: . PHYSICAL REVIEW B 99(2), p. 024431-1 - 16, doi: 10.1103/PhysRevB.99.024431; FULL TEXT
(RIGAKU9) -
Suchánková, K., 2019: . MASTER'S THESIS , p. 1 - 64
(UHV-PREPARATION, UHV-DEPOSITION, RIGAKU9) -
Rozbořil, J., 2019: . PH.D. THESIS , p. 1 - 115
(RIGAKU9, NIRQUEST512, ICON-SPM) -
Rozbořil, J.; Broch, K.; Resel, R.; Caha, O.; Münz, F.; Mikulík, P.; Anthony, J. E.; Sirringhaus, H.; Novák, J., 2019: . CRYSTAL GROWTH & DESIGN 19(7), p. 3777 - 3784, doi: 10.1021/acs.cgd.9b00213
(RIGAKU9) -
Rienks, EDL.; Wimmer, S.; Sanchez-Barriga, J.; Caha, O.; Mandal, PS.; Ruzicka, J.; Ney, A.; Steiner, H. ; Albu, M.; Kothleitner, G.; Michalicka, J. ; Khan, SA.; Minar, J.; Ebert, H.; Bauer, G. ; Freyse, F.; Varykhalov, A.; Rader, O. Springholz, G. , 2019: . NATURE 576(7787), p. 423 - 19, doi: 10.1038/s41586-019-1826-7; FULL TEXT
(CRYOGENIC, TITAN, HELIOS, RIGAKU9) -
Shekargoftar, M.; Jurmanová, J.; Homola, T., 2019: . METALS 9(9), p. 991-1 - 991-11, doi: 10.3390/met9090991
(RIGAKU9, KRATOS-XPS) -
Humlíček, J.; Kuldová, K.; Krumpolec, R.; Cameron, D. C., 2019: . JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B 37(5), p. 051206-1 - 051206-5, doi: 10.1116/1.5121240
(RIGAKU9) -
GABLECH, I.; SVATOŠ, V.; CAHA, O.; DUBROKA, A.; PEKÁREK, J.; KLEMPA, J.; NEUŽIL, P.; SCHNEIDER, M.; ŠIKOLA, T., 2019: . THIN SOLID FILMS 670, p. 105 - 8, doi: 10.1016/j.tsf.2018.12.035; FULL TEXT
(KAUFMAN, RIGAKU9, WOOLLAM-VIS, ICON-SPM) -
Falub, C.V.; Pietambaram, S.V.; Yildirim, O.; Meduna, M.; Caha, O.; Hida, R.; Zhao, X.; Ambrosini, J.; Rohrmann, H.; Hug, H.J., 2019: . AIP ADVANCES 9(3), p. 035243-1 - 035243-6, doi: 10.1063/1.5079477
(RIGAKU9) -
Mouralova, K.; Benes, L.; Prokes, T.; Zahradnicek, R.; Bednar, J.; Otoupalik, J.; Fiserova, Z.; Fiala, Z., 2019: . INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY 102(9-12), p. 4153 - 4165, doi: 10.1007/s00170-019-03524-5
(HELIOS, TITAN, RIGAKU9, TEGRAMIN, LYRA, ICON-SPM) -
Zábranský, L.; Souček, P.; Vašina, P.; Dugáček, J.; Sťahel, P.; Buršík, J.; Svoboda, M.; Mikšová, R.; Peřina, V.; Balázsi, K.; Czigány, Z.; Buršíková, V., 2019: . SURFACE AND COATINGS TECHNOLOGY 379, p. 125052-1 - 125052-7, doi: 10.1016/j.surfcoat.2019.125052
(RIGAKU9, TITAN, LYRA) -
Friš, P.; Munzar, D.; Caha, O.; Dubroka, A., 2018: . PHYSICAL REVIEW B 97(4), p. 045137-1 - 045137-5, doi: 10.1103/PhysRevB.97.045137
(WOOLLAM-MIR, WOOLLAM-VIS, RIGAKU9, FTIR, CRYOGENIC) -
PRESSACCO, F.; UHLÍŘ, V.; GATTI, M.; NICOLAOU, A.; BENDOUNAN, A.; ARREGI URIBEETXEBARRIA, J.; PATEL, S.; FULLERTON, E.; KRIZMANCIC, D.; SIROTTI, F., 2018: . STRUCTURAL DYNAMICS 5(3), p. 034501-1 - 11, doi: 10.1063/1.5027809; FULL TEXT
(MAGNETRON, RIGAKU9) -
ŠIK, O.; ŠKVARENINA, Ľ.; CAHA, O.; MORAVEC, P.; ŠKARVADA, P.; BELAS, E.; GRMELA, L., 2018: . JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS 29(11), p. 9652 - 10, doi: 10.1007/s10854-018-9002-7; FULL TEXT
(RIGAKU9, HELIOS, DEKTAK) -
URBÁNEK, M.; FLAJŠMAN, L.; KŘIŽÁKOVÁ, V.; GLOSS, J.; HORKÝ, M.; SCHMID, M.; VARGA, P., 2018: . APL MATERIALS 6(6), p. 060701-1 - 7, doi: 10.1063/1.5029367; FULL TEXT
(HELIOS, UHV-XPS, UHV-PREPARATION, UHV-DEPOSITION, RIGAKU9, KERR-MICROSCOPE, LYRA, ICON-SPM) -
Fišer, Z., 2018: . MASTER'S THESIS Masaryk University, p. 1 - 62
(RIGAKU9) -
Bendova, M.; Kolar, J.; Marik, M.; Lednicky, T.; Mozalev, A., 2018: . ELECTROCHIMICA ACTA 281, p. 796 - 809, doi: 10.1016/j.electacta.2018.05.197
(KAUFMAN, HELIOS, TITAN, RIGAKU9, KRATOS-XPS) -
LIGMAJER, F.; KEJÍK, L.; TIWARI, U.; QIU, M.; NAG, J.; KONEČNÝ, M.; ŠIKOLA, T.; JIN, W.; HAGLUND, R.; APPAVOO, K.; LEI, D., 2018: . ACS PHOTONICS 5(7), p. 2561 - 7, doi: 10.1021/acsphotonics.7b01384; FULL TEXT
(RIGAKU9, VERIOS, FTIR, ICON-SPM) -
Ligmajer, F., 2018: . PH.D. THESIS , p. 1 - 142
(VERIOS, RIGAKU9, SNOM-NANONICS, FTIR, WOOLLAM-VIS, TITAN, ICON-SPM) -
BENDOVÁ, M.; KOLÁŘ, J.; GISPERT-GUIRADO, F.; MOZALEV, A., 2018: . CHEMELECTROCHEM 5(19), p. 2825 - 11, doi: 10.1002/celc.201800785; FULL TEXT
(MAGNETRON, RIGAKU9, TITAN, KRATOS-XPS) -
GABLECH, I.; CAHA, O.; SVATOŠ, V.; PRÁŠEK, J.; PEKÁREK, J.; NEUŽIL, P.; ŠIKOLA, T., 2018: . 9TH INTERNATIONAL CONFERENCE ON NANOMATERIALS - RESEARCH & APPLICATION (NANOCON 2017) , p. 117 - 6; FULL TEXT
(KAUFMAN, RIGAKU9) -
GABLECH, I.; CAHA, O.; SVATOŠ, V.; PEKÁREK, J.; NEUŽIL, P.; ŠIKOLA, T., 2017: . THIN SOLID FILMS 638, p. 57 - 6, doi: 10.1016/j.tsf.2017.07.039; FULL TEXT
(KAUFMAN, RIGAKU9, ICON-SPM) -
Dubroka, A; Caha, O; Hroncek, M; Fris, P; Orlita, M; Holy, V; Steiner, H; Bauer, G; Springholz, G; Humlicek, J, 2017: . PHYSICAL REVIEW B 96(23), doi: 10.1103/PhysRevB.96.235202
(FTIR, RIGAKU9, WOOLLAM-MIR, WOOLLAM-VIS) -
Dieterle, J; Broch, K; Frank, H; Duva, G; Storzer, T; Hinderhofer, A; Novak, J; Gerlach, A; Schreiber, F, 2017: . PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS 11(3), doi: 10.1002/pssr.201600428
(RIGAKU9) -
Wang, CN; Caha, O; Munz, F; Kostelnik, P; Novak, T; Humlicek, J, 2017: . APPLIED SURFACE SCIENCE 421, p. 859 - 865, doi: 10.1016/j.apsusc.2017.02.056
(WOOLLAM-MIR, RIGAKU9) -
Zelezny, V; Caha, O; Soukiassian, A; Schlom, DG; Xi, XX, 2017: . PHYSICAL REVIEW B 95(21), doi: 10.1103/PhysRevB.95.214110
(RIGAKU9) -
Storzer, T; Hinderhofer, A; Zeiser, C; Novak, J; Figer, Z; Belova, V; Reisz, B; Maiti, S; Duva, G; Hallani, RK; Gerlach, A; Anthony, JE; Schreiber, F, 2017: . JOURNAL OF PHYSICAL CHEMISTRY C 121(38), p. 21011 - 21017, doi: 10.1021/acs.jpcc.7b06558
(RIGAKU9) -
TKACHENKO, S.; DATSKEVICH, O.; DVOŘÁK, K.; SPOTZ, Z.; KULAK, L.; ČELKO, L., 2017: . JOURNAL OF ALLOYS AND COMPOUNDS 694, p. 1098 - 10, doi: 10.1016/j.jallcom.2016.10.044; FULL TEXT
(RIGAKU9, LYRA) -
GABLECH, I.; SVATOŠ, V.; CAHA, O.; HRABOVSKÝ, M.; PRÁŠEK, J.; HUBÁLEK, J.; ŠIKOLA, T., 2016: . JOURNAL OF MATERIALS SCIENCE 51(7), p. 3329 - 8, doi: 10.1007/s10853-015-9648-y; FULL TEXT
(KAUFMAN, RIGAKU9, ICON-SPM) -
Gablech, I., 2016: . TREATISE TO STATE DOCTORAL EXAM , p. 1 - 31
(KAUFMAN, RIGAKU9, ICON-SPM) -
ROZBOŘIL, J.; RECHKEMMER, Y.; BLOOS, D.; MÜNZ, F.; WANG, C.; NEUGEBAUER, P.; ČECHAL, J.; NOVÁK, J.; VAN SLAGEREN, J., 2016: . DALTON TRANSACTIONS 45(18), p. 7555 - 4, doi: 10.1039/c6dt00839a; FULL TEXT
(RIGAKU9) -
UHLÍŘ, V.; ARREGI URIBEETXEBARRIA, J.; FULLERTON, E., 2016: . NATURE COMMUNICATIONS 7(1), p. 1 - 7, doi: 10.1038/ncomms13113; FULL TEXT
(RIGAKU9) -
Ruzicka, J; Caha, O; Holy, V; Steiner, H; Volobuiev, V; Ney, A; Bauer, G; Duchon, T; Veltruska, K; Khalakhan, I; Matolin, V; Schwier, EF; Iwasawa, H; Shimada, K; Springholz, G, 2015: . NEW JOURNAL OF PHYSICS 17, doi: 10.1088/1367-2630/17/1/013028
(RIGAKU9)
Photogallery
Specification
Universal x-ray diffractometer with various high resolution, low resolutionand polycapilary optics, equipped with a high temperature chamber for in-situmeasurements.
| Radiation | High intensity Cu rotating anode X-ray tube (8 keV photon energy) toenhance signal from very thin layers; 45kV, 200mA |
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| Goniometer | Vertical θ–θ goniometer with an in-plane detector arm. |
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Horizontal sample position can be used for most of the experimentaltechniques without gluing the sample.
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| Incident optics | CBO with parabolic Goebel mirror, automatic incidence slit |
| Ge 220 2-bounce and 4-bounce monochromators | |
| polycapillary focusing optics | |
| Sample stages | X-Y mapping stage with range 100mm, tilt stage, capillary holder |
| Sample size | maximum diameter 150 mm, thickness up to 25 mm (absolute maximum cca75 mm) |
| Receiving optics | PSA, Ge 220 2-bounce analyzer |
| Detectors | proportional and linear (D-tex) |
| DHS-1100 chamber | up to 1100°C; vacuum, air, inert gases |
Available techniques and resulting information
| X-ray reflectivity and coplanar diffuse scattering | Thin films and multi-layers of inorganic or organic materials |
Thickness of layers (range 1 to hundreds of nm), surface and interfaceroughness, and roughness lateral correlations
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| Coplanar X-ray diffraction (available at various resolutions) | Epitaxial hetero-structures and nano-structures | Lattice parameters, lattice strain, chemical composition, inter-layerdiffusion |
| Wide angle diffraction | Polycrystalline thin films | Lattice parameters and strain |
| Pole figures measurements | Polycrystalline samples – both, bulk or thin films | Distribution of preferential crystallographic orientation (texture) |
| Grazing incidence X-ray diffraction (GIXRD) |
Thin crystalline films
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In-plane lattice parameters and preferential crystallites orientation inthin films. Depth resolved measurements
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Small angle X-ray scattering and grazing incidence small anglescattering – in 1D mode
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Nano-particles (in solution or thin films) and nano-porous thin films |
Particles and pores size and size distribution, their mutual distance; feature size up to >≈ 100 nm
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| Scanning micro-diffraction | Laterally inhomogeneous samples |
Information as for techniques above with lateral resolution down to 0.2 mm
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| X-ray diffraction and scattering during annealing | Samples for which thermally induced processes are relevant |
Information as above at elevated temperatures up to 1100 °C; Environment: vacuum or air
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Documents
Here is place for your documents.
+420 54114 9207
nano@ceitec.vutbr.cz
