Sivakumar T, Ramesha K, Lofland S E, Ramanujachary K V, Subbanna G N, Gopalakrishnan J
Solid State and Structural Chemistry Unit, Materials Research Centre, Indian Institute of Science, Bangalore-560 012, India.
Inorg Chem. 2004 Mar 22;43(6):1857-64. doi: 10.1021/ic035358l.
We describe the synthesis of two new quadruple perovskites, Sr(2)La(2)CuTi(3)O(12) (I) and Ca(2)La(2)CuTi(3)O(12) (II), by solid-state metathesis reaction between K(2)La(2)Ti(3)O(10) and A(2)CuO(2)Cl(2) (A = Sr, Ca). I is formed at 920 degrees C/12 h, and II, at 750 degrees C/24 h. Both the oxides crystallize in a tetragonal (P4/mmm) quadruple perovskite structure (a = 3.9098(2) and c = 15.794(1) A for I; a = 3.8729(5) and c = 15.689(2) A for II). We have determined the structures of I and II by Rietveld refinement of powder XRD data. The structure consists of perovskite-like octahedral CuO(4/2)O(2/2) sheets alternating with triple octahedral Ti(3)O(18/2) sheets along the c-direction. The refinement shows La/A disorder but no Cu/Ti disorder in the structure. The new cuprates show low magnetization (0.0065 micro(B) for I and 0.0033 micro(B) for II) suggesting that the Cu(II) spins are in an antiferromagnetically ordered state. Both I and II transform at high temperatures to 3D perovskites where La/Sr and Cu/Ti are disordered, suggesting that I and II are metastable phases having been formed in the low-temperature metathesis reaction. Interestingly, the reaction between K(2)La(2)Ti(3)O(10) and Ca(2)CuO(2)Cl(2) follows a different route at 650 degrees C, K(2)La(2)Ti(3)O(10) + Ca(2)CuO(2)Cl(2) --> CaLa(2)Ti(3)O(10) + CaCuO(2) + 2KCl, revealing multiple reaction pathways for metathesis reactions.
我们描述了通过K₂La₂Ti₃O₁₀与A₂CuO₂Cl₂(A = Sr,Ca)之间的固态复分解反应合成两种新型四重钙钛矿,即Sr₂La₂CuTi₃O₁₂(I)和Ca₂La₂CuTi₃O₁₂(II)的过程。I在920℃下反应12小时形成,II在750℃下反应24小时形成。两种氧化物均结晶为四方(P4/mmm)四重钙钛矿结构(I的a = 3.9098(2) Å,c = 15.794(1) Å;II的a = 3.8729(5) Å,c = 15.689(2) Å)。我们通过对粉末XRD数据进行Rietveld精修确定了I和II的结构。该结构由类似钙钛矿的八面体CuO₄/₂O₂/₂层与沿c方向交替排列的三重八面体Ti₃O₁₈/₂层组成。精修结果表明结构中存在La/A无序,但不存在Cu/Ti无序。新型铜酸盐显示出低磁化强度(I为0.0065 μB,II为0.0033 μB),这表明Cu(II)自旋处于反铁磁有序状态。I和II在高温下均转变为La/Sr和Cu/Ti无序的三维钙钛矿,这表明I和II是在低温复分解反应中形成的亚稳相。有趣的是,K₂La₂Ti₃O₁₀与Ca₂CuO₂Cl₂在650℃下的反应遵循不同的路径,K₂La₂Ti₃O₁₀ + Ca₂CuO₂Cl₂ → CaLa₂Ti₃O₁₀ + CaCuO₂ + 2KCl,揭示了复分解反应的多种反应途径。