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- W2110166273 abstract "Colorless single crystals of Gd(IO{sub 3}){sub 3} or pale pink single crystals of Er(IO{sub 3}){sub 3} have been formed from the reaction of Gd metal with H{sub 5}IO{sub 6} or Er metal with H{sub 5}IO{sub 6} under hydrothermal reaction conditions at 180 deg. C. The structures of both materials adopt the Bi(IO{sub 3}){sub 3} structure type. Crystallographic data are (MoK{alpha}, {lambda}=0.71073 A): Gd(IO{sub 3}){sub 3}, monoclinic, space group P2{sub 1}/n, a=8.7615(3) A, b=5.9081(2) A, c=15.1232(6) A, {beta}=96.980(1){sup o}, V=777.03(5) Z=4, R(F)=1.68% for 119 parameters with 1930 reflections with I>2{sigma}(I); Er(IO{sub 3}){sub 3}, monoclinic, space group P2{sub 1}/n, a=8.6885(7) A, b=5.9538(5) A, c=14.9664(12) A, {beta}=97.054(1){sup o}, V=768.4(1) Z=4, R(F)=2.26% for 119 parameters with 1894 reflections with I>2{sigma}(I). In addition to structural studies, Gd(IO{sub 3}){sub 3}, Er(IO{sub 3}){sub 3}, and the isostructural Yb(IO{sub 3}){sub 3} were also characterized by Raman spectroscopy and magnetic property measurements. The results of the Raman studies indicated that the vibrational profiles are adequately sensitive to distinguish between the structures of the iodates reported here and other lanthanide iodate systems. The magnetic measurements indicate that only in Gd(IO{sub 3}){sub 3} did the 3+ lanthanide ion exhibit its full 7.9 {mu}{sub B} Hund's rule moment; Er{sup 3+} and Yb{supmore » 3+} exhibited ground state moments and gap energy scales of 8.3 {mu}{sub B}/70 K and 3.8 {mu}{sub B}/160 K, respectively. Er(IO{sub 3}){sub 3} exhibited extremely weak ferromagnetic correlations (+0.4 K), while the magnetic ions in Gd(IO{sub 3}){sub 3} and Yb(IO{sub 3}){sub 3} were fully non-interacting within the resolution of our measurements ({approx}0.2 K). - Graphical abstract: Three f-element iodates Ln(IO{sub 3}){sub 3} (Ln=Gd, Er, Yb), all containing the Bi(IO{sub 3}){sub 3} structure type, were characterized by Raman spectroscopy and magnetic property measurements. The results of the Raman studies indicated that the vibrational profiles are adequately sensitive to distinguish between the structures of the iodates reported here and other lanthanide iodate systems. The magnetic measurements indicate that only in Gd(IO{sub 3}){sub 3} did the 3+ lanthanide ion exhibit its full 7.9 {mu}{sub B} Hund's rule moment; Er{sup 3+} and Yb{sup 3+} exhibited ground state moments and gap energy scales of 8.3 {mu}{sub B}/70 K and 3.8 {mu}{sub B}/160 K, respectively. Er(IO{sub 3}){sub 3} exhibited extremely weak ferromagnetic correlations (+0.4 K), while the magnetic ions in Gd(IO{sub 3}){sub 3} and Yb(IO{sub 3}){sub 3} were fully non-interacting within the resolution of our measurements ({approx}0.2 K)« less" @default.
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- W2110166273 date "2008-08-01" @default.
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- W2110166273 title "Magnetism and Raman spectroscopy of the dimeric lanthanide iodates Ln(IO3)3 (Ln=Gd, Er) and magnetism of Yb(IO3)3" @default.
- W2110166273 cites W160599597 @default.
- W2110166273 cites W1965215599 @default.
- W2110166273 cites W1965620371 @default.
- W2110166273 cites W1969113346 @default.
- W2110166273 cites W1969587122 @default.
- W2110166273 cites W1972385772 @default.
- W2110166273 cites W1979001783 @default.
- W2110166273 cites W1986226153 @default.
- W2110166273 cites W1991125923 @default.
- W2110166273 cites W1998398170 @default.
- W2110166273 cites W1998931128 @default.
- W2110166273 cites W1999706235 @default.
- W2110166273 cites W2005417326 @default.
- W2110166273 cites W2006114325 @default.
- W2110166273 cites W2007799283 @default.
- W2110166273 cites W2013238125 @default.
- W2110166273 cites W2021331462 @default.
- W2110166273 cites W2021529158 @default.
- W2110166273 cites W2023495943 @default.
- W2110166273 cites W2024208890 @default.
- W2110166273 cites W2035188354 @default.
- W2110166273 cites W2040072523 @default.
- W2110166273 cites W2045624630 @default.
- W2110166273 cites W2050580020 @default.
- W2110166273 cites W2051748937 @default.
- W2110166273 cites W2052225712 @default.
- W2110166273 cites W2056361524 @default.
- W2110166273 cites W2069156182 @default.
- W2110166273 cites W2072052591 @default.
- W2110166273 cites W2074019256 @default.
- W2110166273 cites W2079325511 @default.
- W2110166273 cites W2080515100 @default.
- W2110166273 cites W2081646323 @default.
- W2110166273 cites W2083055738 @default.
- W2110166273 cites W2084057083 @default.
- W2110166273 cites W2086936309 @default.
- W2110166273 cites W2087069137 @default.
- W2110166273 cites W2089751006 @default.
- W2110166273 cites W2089891428 @default.
- W2110166273 cites W2101741054 @default.
- W2110166273 cites W2112531308 @default.
- W2110166273 cites W2130980362 @default.
- W2110166273 cites W2134797566 @default.
- W2110166273 cites W2144332006 @default.
- W2110166273 cites W2151233953 @default.
- W2110166273 cites W2159921116 @default.
- W2110166273 cites W2950719305 @default.
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- W2110166273 cites W2951768891 @default.
- W2110166273 cites W2952310433 @default.
- W2110166273 cites W2953283983 @default.
- W2110166273 cites W60036648 @default.
- W2110166273 doi "https://doi.org/10.1016/j.jssc.2008.04.019" @default.
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