Lavina Barbara, Meng Yue
High Pressure Science and Engineering Center, University of Nevada, Las Vegas, Las Vegas, NV 89154-4002, USA.
High Pressure Collaborative Access Team, Carnegie Institution of Washington, Argonne, IL 60439-4803, USA.
Sci Adv. 2015 Jun 26;1(5):e1400260. doi: 10.1126/sciadv.1400260. eCollection 2015 Jun.
The iron-oxygen system is the most important reference of rocks' redox state. Even as minor components, iron oxides can play a critical role in redox equilibria, which affect the speciation of the fluid phases chemical differentiation, melting, and physical properties. Until our recent finding of Fe4O5, iron oxides were assumed to comprise only the polymorphs of FeO, Fe3O4, and Fe2O3. Combining synthesis at high pressure and temperature with microdiffraction mapping, we have identified yet another distinct iron oxide, Fe5O6. The new compound, which has an orthorhombic structure, was obtained in the pressure range from 10 to 20 GPa upon laser heating mixtures of iron and hematite at ~2000 K, and is recoverable to ambient conditions. The high-pressure orthorhombic iron oxides Fe5O6, Fe4O5, and h-Fe3O4 display similar iron coordination geometries and structural arrangements, and indeed exhibit coherent systematic behavior of crystallographic parameters and compressibility. Fe5O6, along with FeO and Fe4O5, is a candidate key minor phase of planetary interiors; as such, it is of major petrological and geochemical importance. We are revealing an unforeseen complexity in the Fe-O system with four different compounds-FeO, Fe5O6, Fe4O5, and h-Fe3O4-in a narrow compositional range (0.75 < Fe/O < 1.0). New, finely spaced oxygen buffers at conditions of the Earth's mantle can be defined.
铁 - 氧体系是岩石氧化还原状态最重要的参考依据。即使作为次要成分,铁氧化物在氧化还原平衡中也能发挥关键作用,而氧化还原平衡会影响流体相的物种形成、化学分异、熔融以及物理性质。在我们最近发现Fe4O5之前,人们一直认为铁氧化物仅由FeO、Fe3O4和Fe2O3的多晶型物组成。通过将高温高压合成与微衍射图谱相结合,我们又鉴定出了另一种独特的铁氧化物Fe5O6。这种具有正交结构的新化合物是在10至20吉帕的压力范围内,通过在约2000 K下激光加热铁和赤铁矿的混合物获得的,并且可以恢复到环境条件。高压正交铁氧化物Fe5O6、Fe4O5和h - Fe3O4显示出相似的铁配位几何结构和结构排列,并且确实表现出晶体学参数和压缩性的连贯系统行为。Fe5O6与FeO和Fe4O5一起,是行星内部候选的关键次要相;因此,它具有重要的岩石学和地球化学意义。我们发现在Fe - O体系中,在狭窄的成分范围内(0.75 < Fe/O < 1.0)存在FeO、Fe5O6、Fe4O5和h - Fe3O4这四种不同化合物,这展现出了一种意想不到的复杂性。可以定义地球地幔条件下新的、间隔精细的氧缓冲剂。