Niewa Rainer, Zherebtsov Dmitri A, Leoni Stefano
Max-Planck-Institut für Chemische Physik fester Stoffe Nöthnitzer Strasse 40, 01187 Dresden, Germany.
Chemistry. 2003 Sep 5;9(17):4255-9. doi: 10.1002/chem.200304986.
Li(3)[ScN(2)] was prepared from Li(3)N with Sc or ScN in a nitrogen atmosphere at 1020 K as a light yellow powder with an optical band gap of about 2.9 eV. The crystal structure was refined based on X-ray and neutron powder diffraction data (Ia$\bar 3$, Z=16, X-ray diffraction: R(profile)=0.078, R(Bragg)=0.070; Neutron diffraction: R(profile)=0.077, R(Bragg)=0.074; Rietfeld: a=1003.940(8) pm, Guinier: a=1004.50(3) pm). Li(3)[ScN(2)] is an isotype of Li(3)[AlN(2)] and Li(3)[GaN(2)] and crystallizes in an ordered superstructure of the Li(2)O structure type, leading to a three-dimensional framework of all-vertex-sharing tetrahedra 3[infinity[ScN[4/2][3-]]. Li is displaced from the center of a tetrahedron of N atoms in the direction of one trigonal face. Li(3)[ScN(2)] decomposes above 1050 K to form ScN and Li(3)N. Calculations of the periodic nodal surface (PNS) and of the electron localization function (ELF) support the picture of a covalent Sc-N network separated from isolated Li cations, whereby scandium d orbitals are involved in the chemical bonding.
Li(3)[ScN(2)]是在氮气气氛中于1020 K下由Li(3)N与Sc或ScN制备而成的浅黄色粉末,其光学带隙约为2.9 eV。基于X射线和中子粉末衍射数据(空间群Ia$\bar 3$,Z = 16,X射线衍射:R(profile)=0.078,R(Bragg)=0.070;中子衍射:R(profile)=0.077,R(Bragg)=0.074;Rietfeld精修:a = 1003.940(8) pm,Guinier法:a = 1004.50(3) pm)对其晶体结构进行了精修。Li(3)[ScN(2)]是Li(3)[AlN(2)]和Li(3)[GaN(2)]的同型体,结晶为Li(2)O结构类型的有序超结构,形成了由全顶点共享四面体3[infinity[ScN[4/2][3-]]构成的三维框架。Li原子在N原子四面体中心沿一个三角面方向发生位移。Li(3)[ScN(2)]在1050 K以上分解形成ScN和Li(3)N。对周期节点表面(PNS)和电子定位函数(ELF)的计算支持了一个由孤立的Li阳离子分隔开的共价Sc-N网络的图景,其中钪的d轨道参与了化学键合。