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The room-temperature structural properties of the RMn2O5 multiferroics have been investigated under pressure, using powder X-ray scattering and density functional theory (DFT) calculations. It was possible to determine the lattice parameters and the main atomic positions as a function of pressure. Good agreement was observed between the X-ray and DFT results for most of the determined crystallographic data. From the DFT calculations, it was possible to infer the pressure evolution of the exchange interactions, and this analysis led to the conclusion that the onset of the q = (½, 0, ½) magnetic structure under pressure is related to the increase in the J1 super-exchange terms (due to the reduction in the Mn—O distances) compared with the Mn—R exchange interactions. In addition, the 1D antiferromagnetic character of the compounds should be reinforced under pressure.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S2052520619007844/ps5078sup1.cif
Contains datablocks global, I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S2052520619007844/ps5078Isup2.hkl
Contains datablock I

zip

Zip compressed file https://doi.org/10.1107/S2052520619007844/ps5078sup3.zip
Additional experimental CIFs

gz

Gzipped compressed file https://doi.org/10.1107/S2052520619007844/ps5078sup4.gz
Dy DFT CIFs

gz

Gzipped compressed file https://doi.org/10.1107/S2052520619007844/ps5078sup5.gz
Gd DFT CIFs

pdf

Portable Document Format (PDF) file https://doi.org/10.1107/S2052520619007844/ps5078sup6.pdf
Additional theoretical background

CCDC reference: 1919948

Computing details top

Program(s) used to refine structure: FULLPROF.

(I) top
Crystal data top
Mn2O5Prc = 5.7154 (5) Å
Mr = 330.78V = 374.28 (5) Å3
Orthorhombic, PbamZ = 4
Hall symbol: -P 2 2abMo Kα radiation, λ = 0.710000 Å
a = 7.5666 (6) ÅT = 300 K
b = 8.6545 (6) Å
Data collection top
Homemade
diffractometer
Scan method: step
Radiation source: rotating-anode X-ray tube2θmin = 6.287°, 2θmax = 42.360°, 2θstep = 0.009°
Refinement top
Rp = 1.2803858 data points
Rwp = 1.72910 parameters
Rexp = 6.4950 restraints
RBragg = 2.757(Δ/σ)max = 0.002
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
Pr0.1457 (3)0.1735 (3)0.000000.00000*
Mn10.000000.500000.2544 (11)0.00000*
Mn20.4114 (6)0.3531 (7)0.500000.00000*
O10.000000.000000.269050.00000*
O20.165650.445440.000000.00000*
O30.133730.437700.500000.00000*
O40.404630.202870.255070.00000*
Geometric parameters (Å, º) top
Pr—O12.4115 (19)Mn1—O41.8983 (1)
Pr—O22.436 (3)Mn2—O11.9514 (2)
Pr—O42.4553 (18)Mn2—O32.225 (5)
Mn1—O21.977 (5)Mn2—O41.911 (4)
Mn1—O31.813 (5)
O2—Mn1—O281.1 (3)O1—Mn2—O395.7 (2)
O2—Mn1—O396.9 (2)O1—Mn2—O487.4 (2)
O2—Mn1—O3175.7 (2)O1—Mn2—O4160.5 (2)
O2—Mn1—O487.8 (2)O3—Mn2—O4101.8 (2)
O2—Mn1—O490.3 (2)O4—Mn2—O497.5 (2)
O3—Mn1—O385.3 (3)Mn2—O1—Mn298.0 (2)
O3—Mn1—O488.4 (2)Mn1—O2—Mn198.98 (2)
O3—Mn1—O493.5 (2)Mn1—O3—Mn194.7 (2)
O4—Mn1—O4177.5 (2)Mn1—O3—Mn2132.4 (2)
O1—Mn2—O182.5 (2)Mn1—O4—Mn2125.6 (2)
 

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