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High‐Entropy Photothermal Materials
Advanced MaterialsAbstractHigh‐entropy (HE) materials, celebrated for their extraordinary chemical and physical properties, have garnered increasing attention for their broad applications across diverse disciplines. The expansive compositional range of these materials allows for nuanced tuning of their properties and innovative structural designs.
Cheng‐Yu He +4 more
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2021
For more than 5000 years, metals and alloys have been formed in roughly the same way-propelling civilization from the Bronze Age to the industrial revolution and the advanced materials age. Now there is a new technique on the horizon that could help us take another big leap forward.
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For more than 5000 years, metals and alloys have been formed in roughly the same way-propelling civilization from the Bronze Age to the industrial revolution and the advanced materials age. Now there is a new technique on the horizon that could help us take another big leap forward.
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Frontiers in high entropy alloys and high entropy functional materials
Rare MetalsAbstract Owing to their exceptional properties, high‐entropy alloys (HEAs) and high‐entropy materials have emerged as promising research areas and shown diverse applications. Here, the recent advances in the field are comprehensively reviewed, organized into five sections.
Wen‐Tao Zhang +68 more
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High-entropy stabilized thermoelectric materials
Science Bulletin, 2023Binbin, Jiang +3 more
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High-entropy ferroelectric materials
Nature Reviews Materials, 2023He Qi +3 more
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Materials Design of High-Entropy Materials
2019Different from the traditional alloys, a variety of elements and the extended concept of the high-entropy alloys make the compositional selection of high-entropy alloys more flexible. Furthermore, there are three different kinds of phases probably forming in the high-entropy alloys—intermetallics, amorphous, and solid solutions.
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History of High-Entropy Materials
2019Materials are usually categorized by chemical compositions and the phase structure of the materials, e.g., Ti-based alloys, Cu-based alloys, and NdFeB magnets, Ferrite stainless steels, ZrBe-based bulk metallic glasses. It might be JW Yeh in Taiwan, who suggested to use configurational entropy to categorize materials, especially he defined the high ...
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