Single-crystal X-ray diffraction has shown that (HoS)1.23NbS2 is a misfit layer compound built of alternate double layers of HoS, approximately a {001} slice of NaCl-type HoS, and sandwiches of NbS2 with niobium in trigonal prisms of sulphur like niobium in 2H-NbS2. The unit cell dimensions of the HoS subsystem are alpha-1 = 5.396(1) angstrom, b1 = 5.661 (1) angstrom, c1 = 22.195(8) angstrom, beta-1 = 89.81(2)-degrees, space group F2, Z = 8. The NbS2 lattice with unit cell dimensions a2 = 3.312(1) angstrom, b2 = 5.661(1) angstrom, c2 = 11.125(7) angstrom, beta-2 = 86.99(3)-degrees, space group C2, Z = 2 shows twinning, the twin plane being (001). Corresponding a and b axes in the layers of the two subsystems are parallel, while the c axes d...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
Single-crystal X-ray diffraction results (Mo K-alphaBAR radiation, lambda = 0.71073 angstrom) are pr...
Single-crystal X-ray diffraction has shown that (HoS)1.23NbS2 is a misfit layer compound built of al...
(SnS)1.17NbS2, Mr = 334.92, is a compound with misfit layer structure consisting of two-atom-thick l...
(SnS)1.18NbS2, “SnNbS3”, is a compound with misfit layer structure consisting of two-atom thick laye...
(CeS)1.16NbS2 is a misfit layer compound built of alternate double layers of CeS, approximately a {1...
Misfit layer compounds (MS)(n)TS2 (M = Sn, Pb, Bi, rare earth metals; T = Nb, Ta, Ti, V, Cr; 1.08 &l...
Misfit layer compounds (MS)(n)TS2 (M = Sn, Pb, Bi, rare earth metals; T = Nb, Ta, Ti, V, Cr; 1.08 <n...
(SnS)1.20TiS2 is a misfit layer compound built of alternately double layers of SnS with distorted ro...
(SnS)1.20TiS2 is a misfit layer compound built of alternately double layers of SnS with distorted ro...
ompounds with the assumed composition PbMS3, SnMS3 (M=Ti, V, Nb, Ta), known for about 20 years, were...
In the Sb–Nb–S system four new misfit layer phases have been found and carefully investigated via Tr...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
Single-crystal X-ray diffraction results (Mo K-alphaBAR radiation, lambda = 0.71073 angstrom) are pr...
Single-crystal X-ray diffraction has shown that (HoS)1.23NbS2 is a misfit layer compound built of al...
(SnS)1.17NbS2, Mr = 334.92, is a compound with misfit layer structure consisting of two-atom-thick l...
(SnS)1.18NbS2, “SnNbS3”, is a compound with misfit layer structure consisting of two-atom thick laye...
(CeS)1.16NbS2 is a misfit layer compound built of alternate double layers of CeS, approximately a {1...
Misfit layer compounds (MS)(n)TS2 (M = Sn, Pb, Bi, rare earth metals; T = Nb, Ta, Ti, V, Cr; 1.08 &l...
Misfit layer compounds (MS)(n)TS2 (M = Sn, Pb, Bi, rare earth metals; T = Nb, Ta, Ti, V, Cr; 1.08 <n...
(SnS)1.20TiS2 is a misfit layer compound built of alternately double layers of SnS with distorted ro...
(SnS)1.20TiS2 is a misfit layer compound built of alternately double layers of SnS with distorted ro...
ompounds with the assumed composition PbMS3, SnMS3 (M=Ti, V, Nb, Ta), known for about 20 years, were...
In the Sb–Nb–S system four new misfit layer phases have been found and carefully investigated via Tr...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
A study by X-ray diffraction and electron microscopy is reported of the type of compounds that is us...
Single-crystal X-ray diffraction results (Mo K-alphaBAR radiation, lambda = 0.71073 angstrom) are pr...