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Karolina Valkaj, Ozren Wittine, Karmen Margeta, Teresa Granato, Andrea Katović and Stanka Zrnčević

and resistance of iron-containing amorphous zeolitic and mesostructured materials for wet peroxide oxidation of phenol Water Res. , 39, 1741-1750. doi:10.1016/j.watres.2005.02.013. Maduna Valkaj, K., Katović, A. & Zrnčević, S. (2007). Investigation of the catalytic wet peroxide oxidation of phenol over different types of Cu/ZSM-5 catalyst. J. Hazard. Mat. , 144, 663-667, DOI:10.1016/j.jhazamat.2007.01.099. Centi, G., Perathoner, S., Torre, T. & Verduna, M.G. (2000). Catalytic wet oxidation with H 2 O 2 of

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S.-R. Bang, D.-M. Yim, D.-H. Riu and S.-T. Oh

Handbuch der Anorganischen Chemie, Cu. 8. Aufl., System-Nummer 60. Verlag Chemie GmbH, Weinheim 1958. [14] G. Fierro, M. Lojacono, M. Inversi, P. Porta, R. Lavecchia, F. Cioci, J. Catal. 148 , 709 (1994).

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R. Michalik and B. Chmiela

REFERENCES [1] R. Michalik, The effect of modification with rare earth elements on ZnAl22Cu3 alloy structure and mechanical properties. Archives of Metallurgy and Materials 58 , 1, 49-53 (2013). [2] G. Purcek, T. Savaskan, S. Murphy, Dry sliding friction and wear properties of zinc-based alloys. Wear 252 , 894-901 (2002). [3] H. Cuvalci, H. Bas, Investigation of the tribological properties of silicon containing zinc-aluminum based journal bearings. Tribology International 37 , 433-440 (2004). [4] B. Prasad, A. Padwardhan, H. Ygenswaran

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R. Michalik

References [1] W.B. Lee, Z. Mei, S. To, Y.K. Sze, Structural evolution in films of alloy Zn22Al3Cu. Applied Surface Science 242 , 236-244 (2005). [2] G. Purcek, T. Savaskan, S. Murphy, Dry sliding friction and wear properties of zinc-based alloys. Wear 252 , 894-901 (2002). [3] T. Savaskan, M. Aydm, Fatigue behaviour of monotectoid based Zn-Al-Cu alloys in 3,5% NaCl and 1% HCl solutions. Materials Charaterization 52 , 269-278 (2004). [4] T. Savaskan, M. Turhan, Relationships between

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References [1] M. Ishikawa, H. Enomoto, N. Mikamoto, T. Nakamura, M. Matsuoka, C. Iwakura, Preparation of thin film resistors with low resistivity and low TCR by heat treatment of multilayerd Cu/Ni deposits, Surf Coat Tech 110 , 121-127 (1998). [2] M.N. Babich, J.M. Broto, A. Fert, Giant magnetoresistance of (001)Fe/(001)Cr magnetic superlattices, Phys Rev Lett 61 , 2472-2475 (1988). [3] K. Mech, R. Kowalik, P. Zabinski, Cu thin films deposited by DC magnetron sputtering for contact surfaces on

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Junting Zhang, Xiaochao Cui, Jiankai Ma and Youhong Wang

1 Introduction With good electrical conductivity and high strength, copper and copper based alloys are widely used for electrical components, such as electrical connectors, lead frames, conducting wires and so on [1 – 5] . Presently, the research of copper alloys with high strength and high electrical conductivity is concentrated on Cu–Ag [6 – 8] , Cu–Nb [9 , 10] , Cu–Cr [11 – 17] , Cu–Fe [18 – 21] , Cu–Mg [22] and Cu–Mn [23] series. However, all these alloys have their own shortcomings, such as high cost, feeding difficulty and low conductivity

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Danutė Marčiulionienė, Danguolė Montvydienė, Nijolė Kazlauskienė, Benedikta Lukšienė, Dalia Jasinevičienė and Stasys Tautkus

.C., Qiardonnens A.N., Golldack D., 2001: Significance of the V-type ATPase for the adaptation to stressful growth conditions and its regulation on the molecular and biochemical level. - Journal of Experimental Botany, 52: 1969-1980. Emenike C.U., Fauziah S.H., Agamuthu P., 2012: Characterization and toxicological evaluation of leachate from closed sanitary landfill. - Waste Management and Research, 30(9): 888-897. Epstein E., 1998: How calcium enhances plant salts tolerance. - Science, 40: 1906-1907. Fernandes J.C., Henriques F.S., 1991: Biochemical, physiological and

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Amir Jalilian, Nima Rostampour, Pejman Rowshanfarzad, Kamaleddin Shafaii, Mohsen Kamali-Dehghan and Mehdi Akhlaghi

of a 62 Zn/ 62 Cu generator in clinical trials of PET perfusion agent 62 Cu-PTSM, J. Nucl. Med.   41 (2000) 309-314. C. S. Cutler, J. S. Lewis and C. J. Anderson, Utilization of metabolic, transport and receptor-mediated processes to deliver agents for cancer diagnosis, Advan. Drug Deliv. Rev.   37 (1999) 189-211; DOI: 10.1016/S0169-409X(98)00093-3. P. L. Jager, M. A. de Korte, M. N. Lub-de Hooge, A. van Waarde, K. P. Koopmans, P. J. Perik and E. G. de Vries, Molecular imaging: what can be used today

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A. Şelte and B. Özkal

and Processing 418 , 137-145 (2006). [4] G.W. Samsonow, W.I. Jakowlew, Influence of additıons of transitıon metals on sintering behaviour of tungsten, Zeitschrift Für Metallkunde 62 , 621 (1971). [5] T.H. Ihn, S.W. Lee, S.K. Joo, Effect of transition-metal additıon on liquıd-phase sintering of W-Cu, Powder Metallurgy 37 , 283-288 (1994). [6] D. Wojcik-Grzybek, K. Frydman, P. Borkowski, The influence of the microstructure on the switching properties of Ag-C, Ag-WC-C and Ag-W-C contact materials, Archives of Metallurgy and Materials 58 , 1059

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Lenka Hurtalová, Eva Tillová and Mária Chalupová

β-Al5FeSi phase formation and mechanical properties of Al-Si-based alloys. Materials Science and Engineering A, 2008, Vol. 490, pp. 385-390. [7] Tillova´ E., Chalupova´ M., Hurtalova´ L.: Evolution of the Fe-rich phases in recycled AlSi9Cu3 cast alloy during solution treatment. Communications - Scientific letters of the University of Zˇ ilina, 2010, Vol. 12, No. 4, pp. 95-101. [8] Ca´ceres C.H., Djurdjevicˇ M.B., Stockwell T.J., Sokolowski J.: Strength-Ductility Behaviour of Al-Si-Cu-Mg Casting Alloys in T6 Temper. Scripta