Controllable hydrothermal synthesis of star-shaped Sr3Fe2(OH)12 assemblies and their thermal decomposition and magnetic properties
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[1] Yingxia Wang,et al. Room temperature syntheses and thermal behaviors of hydrogarnets Sr3M2(OH)12 (M=Al, Cr and Fe) , 2015 .
[2] Parul Pandey,et al. Surface morphology, ferromagnetic domains and magnetic anisotropy in BaFeO3−δ thin films: Correlated structure and magnetism , 2014 .
[3] L. Nagli,et al. Laser-induced time resolved luminescence of natural grossular Ca3Al2(SiO4)3 , 2013 .
[4] V. Bilovol,et al. Effect of the heat treatment conditions on the synthesis of Sr-hexaferrite , 2012 .
[5] M. M. Natile,et al. Highly crystalline strontium ferrites SrFeO(3-δ): an easy and effective wet-chemistry synthesis. , 2012, Dalton transactions.
[6] Shenlin Zhu,et al. Repair the Pores and Preserve the Morphology: Formation of High Crystallinity 1D Nanostructures via the Thermal Conversion Route , 2011 .
[7] K. Byrappa,et al. Hydrothermal processing of materials: past, present and future , 2008 .
[8] R. Brydson,et al. Hydrogarnet: a host phase for Cr(VI) in chromite ore processing residue (COPR) and other high pH wastes. , 2007, Environmental science & technology.
[9] T. Rojo,et al. Effect of the synthesis conditions on the magnetic and electrical properties of the BaFeO3-x oxide : A metamagnetic behavior , 2005 .
[10] H. Srikanth,et al. Magnetization and magnetoresistance in insulating phases of Sr Fe O 3 − δ , 2005, cond-mat/0501352.
[11] Yongfa Zhu,et al. An easy method to prepare nanowire , 2003 .
[12] Toshiaki Mori,et al. Preparation of High-Performance Co3O4 Catalyst for Hydrocarbon Combustion from Co-Containing Hydrogarnet , 2003 .
[13] A. Rohl,et al. Toward a fundamental understanding of molecular recognition: A synthetic and computational study of morphological control of Ca3Al2(OH)12 , 2002 .
[14] Toshiaki Mori,et al. Synthesis of hydrogarnet from molten slag and its hydrogen chloride fixation performance at high temperature , 2002 .
[15] Toshiaki Mori,et al. Reaction of Hydrogrossular with Hydrogen Chloride Gas at High Temperature , 2001 .
[16] M. Manutchehr-Danai. Dictionary of gems and gemology , 2000 .
[17] C. Geiger. Thermodynamics of (Fe2+, Mn2+, Mg, Ca)3− Al2Si3O12 garnet: a review and analysis , 1999 .
[18] S. Feng,et al. Mild hydrothermal syntheses and thermal behaviors of hydrogarnets Sr3M2(OH)12 (M = Cr, Fe, and Al) , 1997 .
[19] B. Whittington,et al. The chemistry of tricalcium aluminate hexahydrate relating to the Bayer industry , 1996 .
[20] C. Catlow,et al. The energetics and structure of the hydrogarnet defect in grossular: A computer simulation study , 1994 .
[21] M. M. R. Boutz,et al. Theoretical growth forms of natural garnets , 1993 .
[22] F. Glasser,et al. Synthesis and stability of silica-substituted hydrogarnet Ca3Al2 Si3-xO12-4x(OH)4x , 1991 .
[23] P. Kleinschmit,et al. Superfine Oxide Powders—Flame Hydrolysis and Hydrothermal Synthesis , 1989 .
[24] P. McMillan,et al. Cation disorder in garnets along the Mg3Al2Si3O12-Mg4Si4O12 join: an infrared, Raman and NMR study , 1989 .
[25] T. Armbruster,et al. Neutron and X-ray diffraction study of hydrogarnet Ca 3 Al 2 (O 4 H 4 ) 3 , 1987 .
[26] Y. Takeda,et al. Phase relation in the oxygen nonstoichiometric system, SrFeOx (2.5 ≤ x ≤ 3.0) , 1986 .
[27] M. Alario-Franco,et al. Hydrothermal synthesis and field of existence of silicon-free hydrogarnets , 1986 .
[28] W. Kwestroo,et al. The hydrogarnets Ba3In2(OH)12 and Ba3Sc2(OH)12 , 1977 .
[29] D. Brinkmann,et al. Hyperfine interactions of Al and Si in the paramagnetic garnet almandine (Fe, Mg)3Al2(SiO4)3 , 1972 .
[30] J. Itô. Strontium rare-earth hydro- and germanate garnets , 1968 .
[31] John B. Goodenough,et al. Theory of the role of covalence in the perovskite-type manganites [La,M(II)]MnO3 , 1955 .