Perottoni CA, Jornada JAH
Universidade Federal do Rio Grande do Sul, Instituto de Fisica, 91501-970 Porto Alegre-RS, Brazil.
Science. 1998 May 8;280(5365):886-9. doi: 10.1126/science.280.5365.886.
It has recently been shown that zirconium tungstate (ZrW2O8) exhibits isotropic negative thermal expansion over its entire temperature range of stability. This rather unusual behavior makes this compound particularly suitable for testing model predictions of a connection between negative thermal expansion and pressure-induced amorphization. High-pressure x-ray diffraction and Raman scattering experiments showed that ZrW2O8 becomes progressively amorphous from 1.5 to 3.5 gigapascals. The amorphous phase was retained after pressure release, but the original crystalline phase returned after annealing at 923 kelvin. The results indicate a general trend between negative thermal expansion and pressure-induced amorphization in highly flexible framework structures.
最近研究表明,钨酸锆(ZrW2O8)在其整个稳定温度范围内呈现各向同性负热膨胀。这种相当不寻常的行为使得该化合物特别适合于测试负热膨胀与压力诱导非晶化之间联系的模型预测。高压X射线衍射和拉曼散射实验表明,ZrW2O8在1.5至3.5吉帕斯卡的压力下逐渐变为非晶态。压力释放后非晶相得以保留,但在923开尔文退火后原始晶相又恢复了。结果表明在高度柔性的骨架结构中负热膨胀与压力诱导非晶化之间存在一种普遍趋势。