Search Results - "KOCJAN, A"

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  1. 1

    Freeze-casting of highly porous cellulose-nanofiber-reinforced γ˗Al2O3 monoliths by Hudelja, H., Konegger, T., Wicklein, B., Čretnik, J., Akhtar, F., Kocjan, A.

    Published in Open ceramics (01-03-2021)
    “…Freeze-casting is a powerful consolidation technique for the fabrication of highly porous and layered-hybrid materials, including ceramic-metal composites, and…”
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    Journal Article
  2. 2

    Physical properties of the InPd intermetallic catalyst by Wencka, M., Hahne, M., Kocjan, A., Vrtnik, S., Koželj, P., Korže, D., Jagličić, Z., Sorić, M., Popčević, P., Ivkov, J., Smontara, A., Gille, P., Jurga, S., Tomeš, P., Paschen, S., Ormeci, A., Armbrüster, M., Grin, Yu, Dolinšek, J.

    Published in Intermetallics (01-12-2014)
    “…The intermetallic phase InPd is a candidate material for the use as a catalyst in the methanol steam reforming process. To study the connection between the…”
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  3. 3

    Desorption of hydrogen from Ti–Zr–Ni hydrides using a mass spectrometer by Kocjan, A., McGuiness, P.J., Kobe, S.

    “…We have performed thermogravimetry (TG) and mass-spectrometry measurements of hydrogen desorbed from fully and partially hydrided ternary Ti–Zr–Ni amorphous,…”
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  4. 4
  5. 5

    The effect of hydrogen on the magnetic properties of quenched Ti–Zr–Ni rods by Kocjan, A., McGuiness, P.J., Kobe, S.

    “…Ti–Zr–Ni quenched rods of 3, 2 and 1.5 mm diameter, prepared by vacuum-casting, were analyzed by X-ray diffraction (XRD) and vibrating sample magnetometry…”
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  7. 7

    Structural and magnetic changes in hydrogenated TiFe1−xNix alloys by Kocjan, A., Gradišek, A., Daneu, N., Apih, T., McGuiness, P.J., Kobe, S.

    “…A series of crystalline B2 and amorphous TiFe1−xNix samples with different compositions and hydrogen loading ratios was characterized by XRD, VSM, TG,…”
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  8. 8
  9. 9

    Selective hydrogenation of Ti–Zr–Ni alloys by Kocjan, A., Kovačič, S., Gradišek, A., Kovač, J., McGuiness, P.J., Apih, T., Dolinšek, J., Kobe, S.

    Published in International journal of hydrogen energy (01-02-2011)
    “…We prepared series of Ti–Zr–Ni samples by melt-spinning and subsequent thermal treatment at 700 °C for 2 h in dynamic 10 −5 mbar vacuum in order to obtain…”
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  10. 10

    Effect of composition on the i-phase cell parameter of Ti–(Zr,Cu)–Ni alloys by Kocjan, A., McGuiness, P.J., Rečnik, A., Kovač, J., Kobe, S.

    Published in Journal of non-crystalline solids (01-11-2010)
    “…Quasicrystalline (i-phase) Ti–Zr–Ni samples were obtained using the melt-spinning technique, where the Ti/Zr ratio ranged from 1 to 3, while the Ni content…”
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  11. 11
  12. 12

    Amorphous-to-quasicrystalline transformations in the Ti–Zr–Ni and Ti–Hf–Ni systems by Kocjan, A., McGuiness, P.J., Linarić, M. Rajić, Kobe, S.

    Published in Journal of alloys and compounds (12-06-2008)
    “…We have synthesized Ti–Zr–Ni- and Ti–Hf–Ni-based quasicrystals by the mechanical alloying of elementary powders with an average particle size of 35 μm in a…”
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  13. 13

    Magnetically separable Ru-based nano-catalyst for the hydrogenation/hydro-deoxygenation of lignin-derived platform chemicals by Gyergyek, S., Kocjan, A., Bjelić, A., Grilc, M., Likozar, B., Makovec, D.

    Published in Materials research letters (03-08-2018)
    “…A facile and replicable stepwise chemical method was explored to synthesise magnetically separable Ru-based nanocatalyst. Structural investigation revealed…”
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  14. 14

    Percolation threshold in ceramic composites with isotropic conducting nanoparticles by Ambrožič, M., Lazar, A., Kocjan, A.

    Published in Journal of the European Ceramic Society (01-04-2020)
    “…The percolation threshold for electrical conductivity of a binary system of electrically insulating and conducting spheres was studied theoretically to yield a…”
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  15. 15

    Triggering the aqueous interparticle association of γ‒Al2O3 hierarchical assemblies using divalent cations and cellulose nanofibers by Hudelja, H., Wicklein, B., Kuščer, D., Kocjan, A.

    Published in Journal of the European Ceramic Society (01-01-2021)
    “…Understanding aqueous dispersion, rheological properties and colloidal stabilisation mechanisms of hierarchically assembled ceramic powders is important for…”
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  16. 16

    Colloidal processing and partial sintering of high-performance porous zirconia nanoceramics with hierarchical heterogeneities by Kocjan, Andraž, Shen, Zhijian

    Published in Journal of the European Ceramic Society (01-12-2013)
    “…High-performance, porous, Y-TZP nanoceramics with hierarchical heterogeneities originating from uniform, intra- and inter-particle packing were prepared by…”
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  17. 17

    Ageing of dental zirconia ceramics by Kosmač, Tomaž, Kocjan, Andraž

    Published in Journal of the European Ceramic Society (01-08-2012)
    “…An in vitro study was designed to monitor the t–m transformation of biomedical grade 3Y-TZP ceramics produced from two ready-to-press granulated powders of the…”
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  18. 18

    Magnetism of CoCrFeNiZrx eutectic high-entropy alloys by Vrtnik, S., Guo, S., Sheikh, S., Jelen, A., Koželj, P., Luzar, J., Kocjan, A., Jagličić, Z., Meden, A., Guim, H., Kim, H.J., Dolinšek, J.

    Published in Intermetallics (01-02-2018)
    “…We have investigated the magnetism of CoCrFeNiZrx (x = 0.4–0.5) eutectic high-entropy alloys (HEAs) in relation to their microstructure by XRD, SEM,…”
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  19. 19

    The course of the hydrolysis and the reaction kinetics of AlN powder in diluted aqueous suspensions by Kocjan, Andraž, Dakskobler, Aleš, Krnel, Kristoffer, Kosmač, Tomaž

    Published in Journal of the European Ceramic Society (01-05-2011)
    “…The reactivity of AlN powder in diluted aqueous suspensions in the temperature range 22–90°C was investigated in order to better understand and control the…”
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  20. 20

    Magnetism of CoCrFeNiZr^sub x^ eutectic high-entropy alloys by Vrtnik, S, Guo, S, Sheikh, S, Jelen, A, Koželj, P, Luzar, J, Kocjan, A, Jaglicic, Z, Meden, A, Guim, H, Kim, HJ, Dolinšek, J

    Published in Intermetallics (01-02-2018)
    “…We have investigated the magnetism of CoCrFeNiZrx (x = 0.4-0.5) eutectic high-entropy alloys (HEM) in re- lation to their microstructure by XRD, SEM,…”
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    Journal Article