Monoclinic structures of niobium trisulfide

Two new polymorphs of niobium trisulfide are established by single crystal x-ray diffraction. NbS3-iv crystallizes in the monoclinic space group P21/c with lattice parameters a = 6.7515(5) Å, b = 4.9736(4) Å, c = 18.1315(13) Å, and β = 90.116(2)°. Its structure is based on chains of [NbS6] trigonal...

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Main Authors: Matthew A. Bloodgood, Pingrong Wei, Ece Aytan, Krassimir N. Bozhilov, Alexander A. Balandin, Tina T. Salguero
Format: Article
Language:English
Published: AIP Publishing LLC 2018-02-01
Series:APL Materials
Online Access:http://dx.doi.org/10.1063/1.5005813
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spelling doaj-0fda1994203545ffaf9ca560ee518a282020-11-24T21:56:14ZengAIP Publishing LLCAPL Materials2166-532X2018-02-0162026602026602-810.1063/1.5005813004898APMMonoclinic structures of niobium trisulfideMatthew A. Bloodgood0Pingrong Wei1Ece Aytan2Krassimir N. Bozhilov3Alexander A. Balandin4Tina T. Salguero5Department of Chemistry, University of Georgia, Athens, Georgia 30602, USADepartment of Chemistry, University of Georgia, Athens, Georgia 30602, USANano-Device Laboratory (NDL) and Phonon Optimized Engineered Materials (POEM) Center, Department of Electrical and Computer Engineering, University of California–Riverside, Riverside, California 92521, USACentral Facility for Advanced Microscopy and Microanalysis, University of California–Riverside, Riverside, California 92521, USANano-Device Laboratory (NDL) and Phonon Optimized Engineered Materials (POEM) Center, Department of Electrical and Computer Engineering, University of California–Riverside, Riverside, California 92521, USADepartment of Chemistry, University of Georgia, Athens, Georgia 30602, USATwo new polymorphs of niobium trisulfide are established by single crystal x-ray diffraction. NbS3-iv crystallizes in the monoclinic space group P21/c with lattice parameters a = 6.7515(5) Å, b = 4.9736(4) Å, c = 18.1315(13) Å, and β = 90.116(2)°. Its structure is based on chains of [NbS6] trigonal prisms containing Nb–Nb pairs with a bond length of 3.0448(8) Å; this pairing causes the chains to corrugate slightly along their axis, a feature also present in triclinic NbS3-i that leads to semiconductor properties. The stacking arrangement of chains is different in these polymorphs, however, with NbS3-i having an ABCDE repeating sequence of chain bilayers and NbS3-iv having an AB repeating sequence. HRTEM studies show the presence of topotactically-oriented intergrown zones and numerous dislocations, which result in mosaic structuring. A second new polymorph, NbS3-v, crystallizes in the monoclinic space group P21/m with lattice parameters a = 4.950(5) Å, b = 3.358(4) Å, c = 9.079(10) Å, β = 97.35(2)°. In contrast to NbS3-iv, NbS3-v maintains fixed a Nb–Nb bond distance of 3.358(4) Å along the chains, and it has an ABCDE repeating sequence of chain bilayers similar to NbS3-i. High resolution scanning transmission electron microscopy (HR-STEM) imaging of an exfoliated NbS3-v nanoribbon shows the continuous [NbS6] chains oriented along the b-axis. These results provide the first firmly established structural data for monoclinic NbS3. In addition, SEM images show the formation of NbS3 rings and cylinders, and a combination of powder x-ray diffraction and Raman spectroscopy provides a way to distinguish between NbS3 polymorphs.http://dx.doi.org/10.1063/1.5005813
collection DOAJ
language English
format Article
sources DOAJ
author Matthew A. Bloodgood
Pingrong Wei
Ece Aytan
Krassimir N. Bozhilov
Alexander A. Balandin
Tina T. Salguero
spellingShingle Matthew A. Bloodgood
Pingrong Wei
Ece Aytan
Krassimir N. Bozhilov
Alexander A. Balandin
Tina T. Salguero
Monoclinic structures of niobium trisulfide
APL Materials
author_facet Matthew A. Bloodgood
Pingrong Wei
Ece Aytan
Krassimir N. Bozhilov
Alexander A. Balandin
Tina T. Salguero
author_sort Matthew A. Bloodgood
title Monoclinic structures of niobium trisulfide
title_short Monoclinic structures of niobium trisulfide
title_full Monoclinic structures of niobium trisulfide
title_fullStr Monoclinic structures of niobium trisulfide
title_full_unstemmed Monoclinic structures of niobium trisulfide
title_sort monoclinic structures of niobium trisulfide
publisher AIP Publishing LLC
series APL Materials
issn 2166-532X
publishDate 2018-02-01
description Two new polymorphs of niobium trisulfide are established by single crystal x-ray diffraction. NbS3-iv crystallizes in the monoclinic space group P21/c with lattice parameters a = 6.7515(5) Å, b = 4.9736(4) Å, c = 18.1315(13) Å, and β = 90.116(2)°. Its structure is based on chains of [NbS6] trigonal prisms containing Nb–Nb pairs with a bond length of 3.0448(8) Å; this pairing causes the chains to corrugate slightly along their axis, a feature also present in triclinic NbS3-i that leads to semiconductor properties. The stacking arrangement of chains is different in these polymorphs, however, with NbS3-i having an ABCDE repeating sequence of chain bilayers and NbS3-iv having an AB repeating sequence. HRTEM studies show the presence of topotactically-oriented intergrown zones and numerous dislocations, which result in mosaic structuring. A second new polymorph, NbS3-v, crystallizes in the monoclinic space group P21/m with lattice parameters a = 4.950(5) Å, b = 3.358(4) Å, c = 9.079(10) Å, β = 97.35(2)°. In contrast to NbS3-iv, NbS3-v maintains fixed a Nb–Nb bond distance of 3.358(4) Å along the chains, and it has an ABCDE repeating sequence of chain bilayers similar to NbS3-i. High resolution scanning transmission electron microscopy (HR-STEM) imaging of an exfoliated NbS3-v nanoribbon shows the continuous [NbS6] chains oriented along the b-axis. These results provide the first firmly established structural data for monoclinic NbS3. In addition, SEM images show the formation of NbS3 rings and cylinders, and a combination of powder x-ray diffraction and Raman spectroscopy provides a way to distinguish between NbS3 polymorphs.
url http://dx.doi.org/10.1063/1.5005813
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