Structure, chemical bonding and 119Sn Mossbauer spectroscopy of LaRhSn and CeRhSn

被引:32
作者
Schmidt, T
Johrendt, D
Sebastian, CP
Pöttgen, R
Latka, K
Kmiec, R
机构
[1] Univ Munster, Inst Anorgan & Analyt Chem, D-48149 Munster, Germany
[2] Univ Munster, NRW Grad Sch Chem, D-48149 Munster, Germany
[3] Univ Munich, Dept Chem & Biochem, D-81377 Munich, Germany
[4] Jagiellonian Univ, Marian Smoluchowski Inst Phys, PL-30059 Krakow, Poland
[5] Polish Acad Sci, Henryk Niewodniczanski Inst Nucl Phys, PL-31342 Krakow, Poland
来源
ZEITSCHRIFT FUR NATURFORSCHUNG SECTION B-A JOURNAL OF CHEMICAL SCIENCES | 2005年 / 60卷 / 10期
关键词
intermetallics; crystal structure; chemical bonding; Mossbauer spectroscopy;
D O I
10.1515/znb-2005-1003
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The rare earth (RE) stannides LaRhSn and CeRhSn were prepared from the elements by arc-melting or by reactions in sealed tantalum tubes in a high-frequency furnace. The structures have been refined from X-ray single crystal diffractometer data: ZrNiAl type, P (6) over bar 2m, a = 748.74(5), c = 422.16(3) pm, wR2 = 0.0307, 310 F-2 values for LaRhSn and a = 745.8(1), c = 408.62(9) pm, wR2 = 0.0397, 354 F-2 values for CeRhSn with 14 variables per refinement. The structures contain two crystal lographically different rhodium sites which both have a tricapped trigonal prismatic coordination: [Rh1Sn(3)RE(6)] and [Rh2Sn(6)RE(3)]. Together the rhodium and tin atoms (280-288 pm Rh-Sn distances in LaRhSn and 277-285 pm in CeRhSn) build up three-dimensional [RhSn] networks in which the rare earth atoms fill distorted hexagonal channels. DFT band structure calculations reveal a large cerium 4f contribution at the Fermi level and a strong mixing of cerium 5d/4f with rhodium 4d orbitals. These results are in agreement with the short Ce-Rh bonds (304 and 309 pm) and also with the electronic and magnetic properties. Sn-119 Mossbauer spectra of LaRhSn and CeRhSn show a single tin site at isomer shifts of delta = 1.98(2) (LaRhSn) and 1.79(1) mm/s (CeRhSn) subject to quadrupole splitting of Delta E-Q = 0.79(4) (LaRhSn) and 1.12(3) mm/s (CeRhSn). The 1.8 K data show no transferred hyperfine field at the tin site for CeRhSn.
引用
收藏
页码:1036 / 1042
页数:7
相关论文
共 54 条
  • [1] ANDERSEN OK, 1994, TIGHT BINDING LMTO V
  • [2] Magnetism and heavy fermions in YbRhSn and YbPtSn
    Andraka, B
    Pietri, R
    Kaczorowski, D
    Leithe-Jasper, A
    Rogl, P
    [J]. JOURNAL OF APPLIED PHYSICS, 2000, 87 (09) : 5149 - 5151
  • [3] Large thermoelectric power in several metallic compounds of cerium and uranium
    Bando, Y
    Suemitsu, T
    Takagi, K
    Tokushima, H
    Echizen, Y
    Katoh, K
    Umeo, K
    Maeda, Y
    Takabatake, T
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2000, 313 (1-2) : 1 - 6
  • [4] Equiatomic ternary lanthanum-transition metal-tin phases: Structural and electrical results
    Canepa, F
    Cirafici, S
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 1996, 232 (1-2) : 71 - 78
  • [5] Donohue J., 1974, STRUCTURES ELEMENTS
  • [6] CRYSTAL ORBITAL HAMILTON POPULATIONS (COHP) - ENERGY-RESOLVED VISUALIZATION OF CHEMICAL BONDING IN SOLIDS BASED ON DENSITY-FUNCTIONAL CALCULATIONS
    DRONSKOWSKI, R
    BLOCHL, PE
    [J]. JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (33) : 8617 - 8624
  • [7] DWIGHT AE, 1968, T METALL SOC AIME, V242, P2075
  • [8] Thermoelectric and magnetic properties of CeRh1-xMxSn (M = Co, Ni, Ru)
    Echizen, Y
    Yamane, K
    Takabatake, T
    [J]. PHYSICA B-CONDENSED MATTER, 2003, 329 : 522 - 523
  • [9] Emsley J., 1999, ELEMENTS
  • [10] Fickenscher T, 2002, Z ANORG ALLG CHEM, V628, P667, DOI 10.1002/1521-3749(200203)628:3<667::AID-ZAAC667>3.3.CO