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Anisotropy of the grain size effect on the electrical resistivity of n-type Bi₁.₉Gd₀.₁Te₃ thermoelectric textured by spark plasma sinteringSpark plasma sintering (SPS) was applied to prepare textured Bi₁.₉Gd₀.₁Te₃ compounds with various

Thermoelectric properties of medium-entropy PbSbTeSe alloy prepared by reactive spark plasma sinteringReactive spark plasma sintering combining the synthesis and densification stages has been

Structure and mechanical properties of a low-density AlCrFeTi medium entropy alloy produced by spark plasma sintering plasma sintering (SPS). Powders with a homogeneous chemical composition composed of amorphous and bcc

Thermoelectric properties of the textured Bi₁.₉Gd₀.₁Te₃ compounds spark-plasma-sintered at various temperatures compounds, spark-plasma-sintered at TS=690, 720, 750, 780 and 810 K, have been studied. All the samples

Structure and mechanical properties of low-density AlCrFeTiX (X = Co, Ni, Cu) high-entropy alloys produced by spark plasma sintering by mechanical alloying and spark plasma sintering (SPS), and their structures and mechanical properties after

Effect of spark plasma sintering temperature on microstructure and thermoelectric properties of the cermet composites consisting of Bi₂Te₂.₁Se₀.₉ matrix and Co@CoTe₂ inclusionsNovel cermet Bi₂Te₂.₁Se₀.₉+0.33 wt% Co composite has been prepared via spark plasma sintering (SPS

Effect of the spark-plasma-sintering temperature on the structure, crystallographic texture, and thermoelectric properties of materials based on one-dimensional particles of Bi2Te2₂.₇.7Se₀.₃.₃. ofsubmicron size with an atypical growth direction. Further, the influence of the temperature of spark plasma

Microstructure and thermoelectric properties of the medium-entropy BiSbTe₁.₅Se₁.₅ and PbSnTeSe compounds prepared by reactive spark plasma sinteringReactive spark plasma sintering (RSPS) is used to obtain single-phase samples of medium-entropy Bi

Engineering of strong and hard in-situ Al-Al₃Ti nanocomposite via high-energy ball milling and spark plasma sintering and spark plasma sintering

Comparative analysis of the thermoelectric properties of the non-textured and textured Bi₁.₉Gd₀.₁Te₃ compounds were fabricated via spark plasma sintering. The same starting powder was used for both preparation

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