Alabarse Frederico G, Baptiste Benoît, Guarnelli Yoann, Onodera Yohei, Kohara Shinji, Haines Julien
Elettra Sincrotrone Trieste, Trieste 34149, Italy.
Institut de Minéralogie, de Physique des Matériaux et de Cosmochimie, (IMPMC) UMR 7590 CNRS - Sorbonne Université - IRD - MNHN, 4 place Jussieu, 75252 Paris Cedex 5, France.
J Phys Chem Lett. 2024 May 2;15(17):4612-4615. doi: 10.1021/acs.jpclett.4c00853. Epub 2024 Apr 19.
Pressure induced amorphization provides a distinct route to prepare novel amorphous materials. Single crystals of the porous aluminophosphate AlPO-17 directly transform to an amorphous state beginning at 0.6 GPa, without fragmentation into polycrystalline material. Apart from a reduction in dimensions, the amorphous material retains the form of the initial single crystal. Remnant crystalline domains in the amorphous material also preserve the initial orientation of the single crystal. X-ray diffraction indicates the compression of the structure around the empty pores in the plane and such an amorphization mechanism is consistent with a direct structural relationship between the single crystal and amorphous forms. The collapse of the initial pore volume is almost complete at 2.5 GPa. A memory effect is observed in the amorphous form, which strongly expands on decompression. The present process opens the way for the synthesis of topologically ordered amorphous materials approaching "perfect glasses" with improved mechanical properties.
压力诱导非晶化提供了一种制备新型非晶材料的独特途径。多孔磷酸铝AlPO-17的单晶从0.6 GPa开始直接转变为非晶态,不会破碎成多晶材料。除了尺寸减小外,非晶材料保留了初始单晶的形态。非晶材料中的残余晶域也保留了单晶的初始取向。X射线衍射表明,在平面上围绕空孔的结构发生了压缩,这种非晶化机制与单晶和非晶形式之间的直接结构关系一致。在2.5 GPa时,初始孔体积的坍塌几乎完成。在非晶形式中观察到记忆效应,减压时会强烈膨胀。目前的方法为合成拓扑有序的非晶材料开辟了道路,这种材料接近具有改善机械性能的“完美玻璃”。