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Nanoglasses: A Way to Solid Materials with Tunable Atomic Structures and Properties

机译:纳米玻璃:一种具有可调原子结构和性质的固体材料的方法

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Recently, a new class of materials - called nanoglasses - with a glassy structure was synthesized. The novel feature of these materials is that the atomic structure in the entire volume of the material as well as the density of the material can be tuned. Nanoglasses are generated by introducing interfaces into metallic glasses on a nanometer scale. Interfaces in these nanoglasses delocalize upon annealing, so that the free volume associated with these interfaces spreads throughout the volume of the glass. This delocalization changes the atomic structure and the density of the glass throughout the volume. In fact, by controlling the spacing between the interfaces introduced into the glass as well as the degree of the delocalization (by modifying the annealing time and/or annealing temperature), the atomic structures as well as the density (and hence all structure/density dependent properties) of nanoglasses may be controlled. A comparable tuning of the atomic structure/density of crystalline materials is not conceivable, because defects in crystals do not delocalize upon annealing.
机译:最近,合成了一种具有玻璃状结构的新型材料-称为纳米玻璃。这些材料的新颖之处在于,可以调整材料整个体积中的原子结构以及材料的密度。通过将界面以纳米级引入金属玻璃中来产生纳米玻璃。这些纳米玻璃中的界面在退火时会离域,因此与这些界面相关的自由体积会扩散到整个玻璃体积中。这种离域改变了整个体积中玻璃的原子结构和密度。实际上,通过控制引入到玻璃中的界面之间的间距以及离域度(通过更改退火时间和/或退火温度),可以控制原子结构以及密度(以及因此的所有结构/密度)可以控制纳米玻璃的特性)。晶体材料的原子结构/密度的可比调整是不可能的,因为晶体中的缺陷在退火时不会离域。

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