首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Isothermal pressure-derived metastable states in 2D hybrid perovskites showing enduring bandgap narrowing
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Isothermal pressure-derived metastable states in 2D hybrid perovskites showing enduring bandgap narrowing

机译:二维杂化钙钛矿中等温压衍生的亚稳态显示出持久的带隙变窄

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摘要

Materials in metastable states, such as amorphous ice and supercooled condensed matter, often exhibit exotic phenomena. To date, achieving metastability is usually accomplished by rapid quenching through a thermodynamic path function, namely, heating−cooling cycles. However, heat can be detrimental to organic-containing materials because it can induce degradation. Alternatively, the application of pressure can be used to achieve metastable states that are inaccessible via heating−cooling cycles. Here we report metastable states of 2D organic−inorganic hybrid perovskites reached through structural amorphization under compression followed by recrystallization via decompression. Remarkably, such pressure-derived metastable states in 2D hybrid perovskites exhibit enduring bandgap narrowing by as much as 8.2% with stability under ambient conditions. The achieved metastable states in 2D hybrid perovskites via compression−decompression cycles offer an alternative pathway toward manipulating the properties of these “soft” materials.
机译:处于亚稳态的材料,例如无定形冰和过冷的冷凝物,通常会表现出奇异的现象。迄今为止,通常通过通过热力学路径函数(即加热-冷却循环)快速淬灭来实现亚稳态。但是,热量可能对含有机物有害,因为它会引起降解。替代地,压力的施加可以用于实现通过加热-冷却循环不可访问的亚稳态。在这里,我们报告了在压缩下通过结构非晶化然后通过减压重结晶而达到的2D有机-无机杂化钙钛矿的亚稳态。值得注意的是,二维杂化钙钛矿中这种源自压力的亚稳态表现出持久的带隙变窄,在环境条件下具有稳定的8.2%。通过压缩-减压循环,在2D杂化钙钛矿中获得的亚稳态为操纵这些“软”材料的特性提供了另一种途径。

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