Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208-3113, United States.
Inorg Chem. 2011 Jan 17;50(2):576-89. doi: 10.1021/ic101665g. Epub 2010 Dec 15.
The compounds UCuOP and NpCuOP have been synthesized and their crystal structures were determined from low-temperature single-crystal X-ray data. These isostructural compounds crystallize with two formula units in space group P4/nmm of the tetragonal system. Each An atom (An = U or Np) is coordinated to four O and four P atoms in a distorted square antiprism; each Cu atom is coordinated to four P atoms in a distorted tetrahedron. Magnetic susceptibility measurements on crushed single crystals indicate that UCuOP orders antiferromagnetically at 224(2) K. Neutron diffraction experiments at 100 and 228 K show the magnetic structure of UCuOP to be type AFI (+ - + -) where ferromagnetically aligned sheets of U atoms in the (001) plane order antiferromagnetically along [001]. The electrical conductivity of UCuOP exhibits metallic character. Its electrical resistivity measured in the ordered region with the current flowing within the tetragonal plane is governed by the scattering of the conduction electrons on antiferromagnetic spin-wave excitations. The electrical resistivity of single-crystalline NpCuOP shows semimetallic character. It is dominated by a pronounced hump at low temperatures, which likely arises owing to long-range magnetic ordering below about 90 K. Density of state analyses using the local spin-density approximation show covalent overlap between AnO and CuP layers of the structure and dominant contributions from 5f-actinide orbitals at the Fermi level. Calculations on a 2 × 2 × 2 supercell of NpCuOP show ferromagnetic ordering within the Np sheets and complex coupling between these planes. Comparisons of the physical properties of these AnCuOP compounds are made with those of the family of related tetragonal uranium phosphide compounds.
UCuOP 和 NpCuOP 两种化合物已被合成,并通过低温单晶 X 射线数据确定了其晶体结构。这两种同构化合物在四方晶系 P4/nmm 空间群中结晶,每个 An 原子(An = U 或 Np)以扭曲的四方反棱柱形式与四个 O 和四个 P 原子配位;每个 Cu 原子以扭曲的四面体形式与四个 P 原子配位。对粉碎单晶的磁化率测量表明 UCuOP 在 224(2) K 下呈反铁磁有序。在 100 和 228 K 下进行的中子衍射实验表明 UCuOP 的磁结构为 AFI (+ - + -) 型,其中 (001) 平面内的 U 原子铁磁排列层沿 [001] 方向反铁磁有序。UCuOP 的电导率表现出金属性质。在有序区域内,电流在四方平面内流动时,UCuOP 的电阻率由传导电子在反铁磁自旋波激发上的散射决定。单晶 NpCuOP 的电阻率表现出半金属性质。它主要受低温下明显的凸起支配,这可能是由于在约 90 K 以下的长程磁有序引起的。使用局域自旋密度近似的态密度分析表明,结构中的 AnO 和 CuP 层之间存在共价重叠,费米面附近的主导贡献来自 5f 锕系轨道。对 NpCuOP 的 2 × 2 × 2 超胞的计算表明,在 Np 片内存在铁磁有序,并且这些平面之间存在复杂的耦合。对这些 AnCuOP 化合物的物理性质进行了比较,这些化合物与相关的四方铀磷化物家族的化合物进行了比较。