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Phase equilibrium in the system Ln-Mn-O IV. Ln=Sm at 1100 degrees C

机译:Ln-Mn-O IV体系中的相平衡。 Ln = Sm在1100摄氏度

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Phase equilibrium in a Sm-Mn-O system has been established at 1100degreesC while changing the oxygen partial pressure from 0 to 13.00 in -log(P-O2/atm), and a phase diagram at 1100degreesC is presented for a Sm2O3-MnO-MnO2 system. Under the experimental conditions, Sm2O3, MnO, Mn3O4, SmMnO3, and SmMn2O5 phases are present at 1100degreesC, but Sm2MnO4, Mn2O3, and MnO2 are unstable in the system. LnMn(2)O(5)- type phase is stable under the present experimental conditions differing from the previously reported La-Mn-O and Nd-Mn-O systems. A wide range of nonstoichiometry has been found in the SmMnO3 phase which coexisted with Sm2O3, X ranges from -0.010 at log P-O2 = -10.00 to 0.098 at log P-O2 = 0 in the molecular formula of SmMnO3+x. The nonstoichiometry is represented by an equation, NO/N-SmMnO3 = 3.00 x 10(-4) (log P-O2)(3) +6.20 x 10(-3) (log P-O2)(2) + 4.28 x 10(-2) (log P-O2) + 0.0979, and the activities of the components in the solid solution are calculated using the equation. SmMnO3 seems to vary in composition in the Sm2O3-rich or Sm2O3-poor side as it was with LaMnO3. SmMn2O5 is slightly nonstoichiometric. Lattice constants of SmMnO3 made under different oxygen partial pressures and those of SmMn2O5 prepared in air were determined, along with spacings and relative intensities of SmMn2O5. Standard Gibbs energies of reactions shown in the system were calculated and compared with previously reported values. (C) 2002 Elsecier Science (USA). [References: 27]
机译:Sm-Mn-O系统中的相平衡已在1100°C下建立,同时将氧分压从-log(P-O2 / atm)从0更改为13.00,并给出了Sm2O3-MnO-在1100°C下的相图。 MnO2系统。在实验条件下,Sm2O3,MnO,Mn3O4,SmMnO3和SmMn2O5相在1100℃存在,但Sm2MnO4,Mn2O3和MnO2在系统中不稳定。在不同于先前报道的La-Mn-O和Nd-Mn-O系统的当前实验条件下,LnMn(2)O(5)-型相稳定。在与Sm2O3共存的SmMnO3相中发现了各种各样的非化学计量关系,在分子式SmMnO3 + x中,X的范围从log P-O2 = -10.00的-0.010到log P-O2 = 0的0.098。非化学计量由方程式表示,NO / N-SmMnO3 = 3.00 x 10(-4)(log P-O2)(3)+6.20 x 10(-3)(log P-O2)(2)+ 4.28 x 10(-2)(log P-O2)+ 0.0979,并使用该公式计算固溶体中各组分的活度。 SmMnO3的组成似乎在富Sm2O3或贫Sm2O3方面与LaMnO3一样。 SmMn2O5是非化学计量的。确定了在不同氧分压下制备的SmMnO3的晶格常数和在空气中制备的SmMn2O5的晶格常数,以及SmMn2O5的间距和相对强度。计算系统中显示的标准吉布斯反应能,并将其与先前报告的值进行比较。 (C)2002 Elsecier Science(美国)。 [参考:27]

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