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   <subfield code="a">Transition Metal Centered Trigonal Prisms as Building Units in Various Rare Earth-Transition Metal-Indides</subfield>
   <subfield code="h">[Elektronische Daten]</subfield>
   <subfield code="c">[Vasyl I. Zaremba, Ute Ch. Rodewald, Mar'yana Lukachuk, Vitaliy P. Dubenskiy, Birgit Heying, Kenichi Katoh, Yuzuru Niide, Akira Ochiai, Rainer Pöttgen]</subfield>
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   <subfield code="a">Summary.: The rare earth-transition metal-indides GdPdIn, ErPdIn, YbPdIn, YPtIn, TmPtIn, Dy4Pd10In21, PrPt2In2, and Tb2Pt7In16 were prepared by arc-melting of the elements or by induction melting of the elements in sealed tantalum tubes in a water-cooled sample chamber of a high-frequency furnace. Single crystals of Dy4Pd10In21 and Tb2Pt7In16 were grown through special annealing procedures. The indides were investigated via X-ray powder diffraction and all structures were refined from X-ray single crystal diffractometer data: ZrNiAl type, $P \bar {6}2m$ , a = 767.8(3), c = 390.7(2) pm, wR2 = 0.0722, 356 F2 values for GdPdIn; a = 766.7(3), c = 376.7(1) pm, wR2 = 0.0433, 348 F2 values for ErPdIn; a = 757.2(2), c = 393.59(8) pm, wR2 = 0.0388, 434 F2 values for YbPdIn; a = 758.2(2), c = 384.95(8) pm, wR2 = 0.0643, 353 F2 values for YPtIn; and a = 753.4(1), c = 376.71(4) pm, wR2 = 0.0844, 310 F2 values for TmPtIn, with 14 variable parameters per refinement. Dy4Pd10In21 crystallizes with the monoclinic Ho4Ni10Ga21 structure: C2/m, a = 2284.5(8), b = 441.0(2), c = 1931.4(7) pm, β = 132.74(2)°, wR2 = 0.0419, 1690 F2 values, 112 variable parameters. PrPt2In2 adopts the CePt2In2 type: P21/m, a = 1013.2(3), b = 447.2(3), c = 1019.5(3) pm, β = 116.69(2)°, wR2 = 0.0607, 1259 F2 values, 63 variable parameters. Tb2Pt7In16 is the second representative of the orthorhombic Dy2Pt7In16 type: Cmmm, a = 1211.6(2), b = 1997.1(4), c = 440.52(9) pm, wR2 = 0.0787, 1341 F2 values, 45 variable parameters. The common structural motif of the four different structure types are transition metal centered trigonal prisms formed by the rare earth metal and indium atoms. These prisms are condensed via common corners or via In-In bonds. The crystal chemistry of the four different structure types is discussed.</subfield>
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   <subfield code="a">Springer-Verlag/Wien, 2006</subfield>
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  <datafield tag="690" ind1=" " ind2="7">
   <subfield code="a">Keywords. Rare earth compounds</subfield>
   <subfield code="2">nationallicence</subfield>
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   <subfield code="a">Indides</subfield>
   <subfield code="2">nationallicence</subfield>
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   <subfield code="a">Crystal chemistry</subfield>
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   <subfield code="a">Zaremba</subfield>
   <subfield code="D">Vasyl I.</subfield>
   <subfield code="u">Inorganic Chemistry Department, Ivan Franko National University, 79005, Lviv, Ukraine</subfield>
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   <subfield code="a">Rodewald</subfield>
   <subfield code="D">Ute Ch</subfield>
   <subfield code="u">Institut für Anorganische und Analytische Chemie and NRW Graduate School of Chemistry, Westfälische Wilhelms-Universität Münster, 48149, Münster, Germany</subfield>
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   <subfield code="u">Max-Plank-Institut für Festkörperforschung, 70569, Stuttgart, Germany</subfield>
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   <subfield code="D">Vitaliy P.</subfield>
   <subfield code="u">Inorganic Chemistry Department, Ivan Franko National University, 79005, Lviv, Ukraine</subfield>
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   <subfield code="u">Institut für Anorganische und Analytische Chemie and NRW Graduate School of Chemistry, Westfälische Wilhelms-Universität Münster, 48149, Münster, Germany</subfield>
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   <subfield code="u">Department of Applied Physics, National Defense Academy, 239-8686, Yokosuka, Japan</subfield>
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   <subfield code="t">Monatshefte für Chemie / Chemical Monthly</subfield>
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   <subfield code="g">137/3(2006-03-01), 249-261</subfield>
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