Publications by authors named "W Salamon"

Introduction: Autologous hematopoietic stem cell transplantation (auto- HSCT) preceded by high-dose chemotherapy is a mainstay in relapsed/refractory lymphoma. The study aimed to compare the efficacy and adverse event profile between BEAM and Benda-EAM (BeEAM) regimens and to evaluate prognostic factors for survival in lymphoma patients undergoing auto-HSCT.

Material And Methods: We present a single-center retrospective analysis of 82 lymphoma patients (median age 52; IQR 38.

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Multicomponent equimolar perovskite oxides (ME-POs) have recently emerged as a highly promising class of materials with unique synergistic effects, making them well-suited for applications in such areas as photovoltaics and micro- and nanoelectronics. High-entropy perovskite oxide thin film in the (GdNdLaSmY)CoO (RECO, where RE = GdNdLaSmY, C = Co, and O = O) system was synthesized via pulsed laser deposition. The crystalline growth in an amorphous fused quartz substrate and single-phase composition of the synthesized film was confirmed by X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS).

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In this paper, we report on a successful synthesis of dysprosium iron garnet DyFeO (DyIG) by a reactive synthesis method involving dysprosium iron perovskite and hematite. Phase formation was traced using dilatometry, and XRD measurements attested to the formation of the desired structure. Samples with relative density close to 97% were fabricated.

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Single-phase multicomponent perovskite-type cobalt oxide containing five cations in equiatomic amounts on the A-site, namely, (GdNdLaSmY)CoO, has been synthesized via the modified coprecipitation hydrothermal method. Using an original approach for heat treatment, which comprises quenching utilizing liquid nitrogen as a cooling medium, a single-phase ceramic with high configuration entropy, crystallizing in an orthorhombic distorted structure was obtained. It reveals the anomalous temperature dependence of the lattice expansion with two weak transitions at approx.

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