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Number of items: 7.

2022

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HOVSEPIAN, P., SHUKLA, K., SUGUMARAN, A., PURANDARE, Yashodhan, KHAN, I. and EHIASARIAN, A. (2022). A novel plasma nitriding process utilising HIPIMS discharge for enhanced tribological and barrier properties of medical grade alloy surfaces. Materials Letters, 313. [Article]

2018

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ELICKER, Carolina, PASCUAL-GONZALEZ, Cristina, GULARTE, Luciano, MOREIRA, Mario, CAVA, Sergio and FETEIRA, Antonio (2018). Photoresponse of KNbO3–AFeO3 (A = Bi3+ or La3+) ceramics and its relationship with bandgap narrowing. Materials Letters, 221, 326-329. [Article]

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RASHAD, Zaid and FETEIRA, Antonio (2018). Temperature stable electric field-induced strain in Er-doped BNT-BT-BKT ceramics. Materials Letters, 222, 180-182. [Article]

2015

SPATHI, Charikleia, YOUNG, Neale, HENG, Jerry Y.Y., VANDEPERRE, Luc J.M. and CHEESEMAN, Chris R. (2015). A simple method for preparing super-hydrophobic powder from paper sludge ash. Materials Letters, 142, 80-83. [Article]

2012

DENG, Wei and CHENG, Jin-shu (2012). New transparent glass–ceramics containing large grain Eu3+:CaF2 nanocrystals. Materials Letters, 73, 112-114. [Article]

2006

BINGHAM, Paul, HAND, R.J., FORDER, S.D., LAVAYSIERRE, A., KILCOYNE, S.H. and YASIN, I. (2006). Preliminary studies of sulphate solubility and redox in 60P2O5–40Fe2O3 glasses. Materials Letters, 60 (6), 844-847. [Article]

2002

AL-AJILI, A. N. H., RAY, A. K., HASSAN, A. K., HODGSON, S. N. B. and GOODHAND, C. J. (2002). Dielectric properties of activated oxide emission materials. Materials Letters, 57 (2), 513-517. [Article]

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