Department of Chemistry, Texas A&M University, 3255 TAMU, 580 Ross St, College Station, Texas 77843, USA.
Department of Chemistry, University of Kentucky, 505 Rose Street, Lexington, Kentucky 40506, USA.
Nanoscale. 2019 Nov 28;11(44):21354-21363. doi: 10.1039/c9nr07316g. Epub 2019 Nov 1.
Metastable materials that represent excursions from thermodynamic minima are characterized by distinctive structural motifs and electronic structure, which frequently underpins new function. The binary oxides of hafnium present a rich diversity of crystal structures and are of considerable technological importance given their high dielectric constants, refractory characteristics, radiation hardness, and anion conductivity; however, high-symmetry tetragonal and cubic polymorphs of HfO are accessible only at substantially elevated temperatures (1720 and 2600 °C, respectively). Here, we demonstrate that the core-shell arrangement of VO and amorphous HfO promotes outwards oxygen diffusion along an electropositivity gradient and yields an epitaxially matched VO/HfO interface that allows for the unprecedented stabilization of the metastable cubic polymorph of HfO under ambient conditions. Free-standing cubic HfO, otherwise accessible only above 2600 °C, is stabilized by acid etching of the vanadium oxide core. In contrast, interdiffusion under oxidative conditions yields the negative thermal expansion material HfVO. Variable temperature powder X-ray diffraction demonstrate that the prepared HfVO exhibits pronounced negative thermal expansion in the temperature range between 150 and 700 °C. The results demonstrate the potential of using epitaxial crystallographic relationships to facilitate preferential nucleation of otherwise inaccessible metastable compounds.
亚稳材料代表了从热力学极小值的偏离,其具有独特的结构模式和电子结构,这经常为新功能提供基础。铪的二元氧化物具有丰富的晶体结构多样性,并且由于其高介电常数、耐火特性、辐射硬度和阴离子导电性而具有重要的技术意义;然而,高对称性的四方和立方同素异形仅在大幅升高的温度下(分别为 1720 和 2600°C)才是可及的。在这里,我们证明了 VO 和非晶态 HfO 的核壳结构促进了沿电化学势梯度的向外氧扩散,并产生了外延匹配的 VO/HfO 界面,从而允许在环境条件下稳定亚稳的立方 HfO 多晶型体。否则只能在 2600°C 以上获得的独立立方 HfO 被氧化条件下的钒氧化物核的酸蚀稳定。相比之下,在氧化条件下的互扩散则产生了具有负热膨胀的材料 HfVO。变温粉末 X 射线衍射表明,所制备的 HfVO 在 150 至 700°C 的温度范围内表现出明显的负热膨胀。结果表明,使用外延晶体学关系来促进原本无法获得的亚稳化合物的优先成核是有潜力的。