Department of Chemistry, University of Oxford, Inorganic Chemistry Laboratory, South Parks Road, Oxford, OX1 3QR, United Kingdom.
J Am Chem Soc. 2009 Mar 4;131(8):2986-92. doi: 10.1021/ja808914a.
On the application of hydrostatic pressures of up to 1.3 GPa, the superconducting transition temperatures (T(c)) of samples of LiFeAs are lowered approximately monotonically at approximately -2 K GPa(-1). Measurements of the X-ray powder diffraction pattern at hydrostatic pressures of up to 17 GPa applied by a He gas pressure medium in a diamond anvil cell reveal a bulk modulus for LiFeAs of 57.3(6) GPa which is much smaller than that of other layered arsenide and oxyarsenide superconductors. LiFeAs also exhibits much more isotropic compression than other layered iron arsenide superconductors. The higher and more isotropic compressibility is presumably a consequence of the small size of the lithium ion. At ambient pressure the FeAs(4) tetrahedra are the most compressed in the basal plane of those in any of the superconducting iron arsenides. On increasing the pressure the Fe-Fe distance contracts more rapidly than the Fe-As distance so that the FeAs(4) tetrahedra become even more distorted from the ideal tetrahedral shape. The decrease in T(c) with applied pressure is therefore consistent with the observations that in the iron arsenides and related materials investigated thus far, T(c) is maximized for a particular electron count when the FeAs(4) tetrahedra are close to regular.
在高达 1.3 GPa 的静压应用下,LiFeAs 样品的超导转变温度(T(c))大约以-2 K GPa(-1)的单调方式降低。在金刚石砧压腔中使用氦气压介质施加高达 17 GPa 的静压时,对 X 射线粉末衍射图案的测量表明 LiFeAs 的体弹模量为 57.3(6) GPa,远小于其他层状砷化物和氧砷化物超导体。LiFeAs 也表现出比其他层状铁砷化物超导体更大的各向同性压缩性。更高和各向同性的压缩性可能是锂离子尺寸较小的结果。在环境压力下,FeAs(4)四面体在任何超导铁砷化物中最压缩在基底平面上。随着压力的增加,Fe-Fe 距离比 Fe-As 距离收缩得更快,因此 FeAs(4)四面体变得更加偏离理想的四面体形状。因此,随着外加压力的增加,T(c)的降低与观察结果一致,即在迄今为止研究的铁砷化物和相关材料中,当 FeAs(4)四面体接近规则时,特定电子计数的 T(c)最大。