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首页> 外文期刊>Scripta materialia >Ultrahigh hardness and improved ductility for nanotwinned mercury cadmium telluride
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Ultrahigh hardness and improved ductility for nanotwinned mercury cadmium telluride

机译:纳米孪晶碲化汞镉超高硬度和延展性

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摘要

Unidirectionally coherent and boundary-free nanotwinned (nt) mercury cadmium telluride (HgCdTe or MCT) was achieved under plastic deformation of nanoindentation. The hardness of nt-MCT is up to 47.2 GPa, which is two orders magnitude higher than that of monocrystalline MCT. This increased hardness originates from the unique composite nt structure, which exhibits a repeated pattern comprising a lamellar twin >11.5 nm thick, followed by one or several lamellar twins with thicknesses <11.5 nm.
机译:在纳米压痕的塑性变形下,实现了单向相干且无边界的纳米孪晶(nt)汞碲化镉(HgCdTe或MCT)。 nt-MCT的硬度高达47.2 GPa,比单晶MCT的硬度高两个数量级。这种增加的硬度源自独特的复合nt结构,该结构表现出重复的图案,包括厚度大于11.5 nm的层状孪晶,随后是厚度小于11.5 nm的一个或多个层状孪晶。

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