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Published on: April 28, 2014
Geomimetic Approaches in the Design and Synthesis of Ordered L10-Type Structure Platinum-Based Noble High-Entropy
Teresa Garcia-Mendoza1, Björn Winkler2, Wolfgang Morgenroth3
1Tecnológico Nacional de México, Instituto Tecnológico de Oaxaca, Av. Víctor Bravo Ahuja 125, Oaxaca C.P.68030, México.
Abstract:
The recent discovery of new Pt-based minerals has opened up the opportunity to generate new synthetic materials. Here, geologically inspired approaches to designing and synthesizing novel platinum alloys, from ternary to high-entropy alloys (HEAs), are showcased. Empirical mathematical models of thermodynamic parameters were used to predict the formation of solid solutions with single-phase structures in the (Pt3-Pd)(Cu2-NiSn) system. Five new single-phase compounds, having ordered L10-type structures, have been obtained at comparatively low temperatures by solid-state reactions. Two of those phases are new noble metal HEAs, (Pt2Pd)(Cu1.7Ni0.3Sn) and (Pt2Pd)(Cu1.4Ni0.6Sn). Additionally, other three new multiprinciple element alloys (mixture of ordered L10-type and disordered FCC-type structures) were also obtained. SEM/EDX measurements gave no indication of chemical inhomogeneities on a micrometer length scale. A phase diagram is proposed. All products are thermally stable at up to 1100 K, and the two-phase samples show a tendency for nitrogen absorption. The results show that using geomimetic approaches in the design and synthesis of novel materials opened new opportunities for future materials design.
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