Guarín Jhonatan R, Frontera Carlos, Oró-Solé Judith, Colombel Bastian, Ritter Clemens, Fauth François, Fontcuberta Josep, Fuertes Amparo
Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus UAB, 08193 Bellaterra, Spain.
Institut Laue-Langevin, 71 Av. de Martyrs, BP 156, F-38042 Grenoble Cedex 9, France.
Chem Mater. 2024 May 8;36(10):5160-5171. doi: 10.1021/acs.chemmater.4c00533. eCollection 2024 May 28.
The new compounds RTaON with R = La, Ce, Nd, and Eu and 1.20 ≤ ≤ 2.81 have been obtained by a solid-state reaction between metal nitrides and oxides or oxynitrides under N gas at temperatures between 1200 and 1700 °C. They are the first examples of rare earth transition metal oxynitrides with an = 1 Ruddlesden-Popper structure and show different anion stoichiometries, crystal structures, and magnetic properties. Synchrotron X-ray powder diffraction and electron diffraction indicate that the lanthanum, cerium, and neodymium compounds crystallize in the orthorhombic space group , with cell parameters = 5.72949(2), = 5.73055(5), and = 12.77917(6) Å for LaTaON, = 5.70500(5), = 5.71182(4), and = 12.61280(7) Å for CeTaON, and = 5.70466(3), = 5.70476(5), and = 12.32365(5) Å for NdTaON. In contrast, EuTaON shows a tetragonal 4/ superstructure doubling the axis, with parameters = 5.71867(2) and = 25.00092(19) Å. Refinement of neutron powder diffraction data of CeTaON indicated the nitrogen order in the two equatorial positions of the tantalum octahedron, with refined N/O occupancies of 0.930(7)/0.070 and 0.876(13)/0.124, and the axial position is occupied by 50% of each anion. This anion ordering agrees with the distribution predicted by Pauling's second crystal rule. Magnetization measurements show that the cerium and europium compounds are ordered magnetically at low temperatures, while the neodymium compound remains paramagnetic down to 2 K, as a consequence of suppression of the effective magnetic moment of the latter when reducing the temperature.
通过金属氮化物与氧化物或氮氧化物在氮气气氛下于1200至1700℃之间进行固态反应,已制得R分别为La、Ce、Nd和Eu且1.20≤≤2.81的新型化合物RTaON。它们是具有 = 1的Ruddlesden-Popper结构的稀土过渡金属氮氧化物的首个实例,并表现出不同的阴离子化学计量比、晶体结构和磁性。同步辐射X射线粉末衍射和电子衍射表明,镧、铈和钕化合物结晶于正交空间群,对于LaTaON,晶胞参数 = 5.72949(2)、 = 5.73055(5)和 = 12.77917(6) Å;对于CeTaON, = 5.70500(5)、 = 5.71182(4)和 = 12.61280(7) Å;对于NdTaON, = 5.70466(3)、 = 5.70476(5)和 = 12.32365(5) Å。相比之下,EuTaON呈现出四方4/超结构,使 轴加倍,参数为 = 5.71867(2)和 = 25.00092(19) Å。CeTaON的中子粉末衍射数据精修表明,在钽八面体的两个赤道位置存在氮有序,精修后的N/O占有率为0.930(7)/0.070和0.876(13)/0.124,且轴向位置由每种阴离子各占据50%。这种阴离子有序与鲍林第二晶体规则预测的分布一致。磁化测量表明,铈和铕化合物在低温下呈磁有序,而钕化合物在降至2 K时仍保持顺磁性,这是由于降低温度时后者的有效磁矩受到抑制。