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University of British Columbia

Dinitrogen complexes of titanium and vanadium stabilized by phosphine ligands

Abstract

dc:description

The goal of the work presented in this thesis is to investigate the preparation of dinitrogen complexes of titanium and vanadium from phosphine-based starting materials. The reactions of TiCl₄, TiCl₃(THF)₃, or VCl₂(TMEDA)₂ with LiN(SiMe₂CH₂PR₂)₂ (R = isopropyl or methyl) yielded the new phosphine complexes TiCl₃[N(SiMe₂CH₂PPri₂)₂] (1), TiCl₃[N(SiMe₂CH₂PMe₂)₂] (2), {TiCl₂[N(SiMe₂CH₂PPri₂)₂]}x (x = 1 or 2) (3), or [(Pri₂PCH₂SiMe₂)₂N]V(μ-Cl)₂Li(TMEDA) (4), respectively. NMR spectroscopy revealed that complexes 1 and 2 have C₂v symmetry. The titanium(III) species, 3, is likely to be a dimer as indicated by mass spectrometry. The structure of the vanadium mono(amido-diphosphine) complex, 4, is suggested to be a lithium-chloride adduct. The reduction of 1 with magnesium powder under dinitrogen resulted in the synthesis of the binuclear titanium dinitrogen complex, {[(Pri₂PCH₂SiMe₂)₂N]TiCl}₂(μ-η¹:η¹-N₂) (5). The unsuccessful reduction of 3 suggests that it is not an intermediate in the synthesis of 5. The most interesting structural feature of 5 is the end-on bound dinitrogen ligand with an N-N bond distance of 1.275 (7) Å, typical of other binuclear end-on bound dinitrogen complexes. The ¹H and ³¹P{¹H} NMR spectra indicate that this dinitrogen complex is fluxional at room temperature by a process that is proposed to involve dissociation of the phophorus atoms of the tridentate ligand and then rotation about the Ti-N (amide) bond, followed by reassociation. The low temperature ³¹P{¹H} NMR spectrum shows an AB quartet which is consistent with the solid state structure. Upon addition of HCl, 0.75 ± 0.04 equivalents of hydrazine and 0.29 ± 0.05 equivalents of dinitrogen were detected. The reaction between VCl₂(TMEDA)₂ and LiN(SiMe₂CH₂PRi₂)₂ under dinitrogen resulted in the formation of a similar vanadium dinitrogen complex, {[(Pri₂PCH₂SiMe₂)₂N]VCl}₂(μ-η¹:η¹-N₂) (7). An alternate synthetic route involves exposure of [(Pri₂PCH₂SiMe₂)₂N]V(μ-Cl)₂Li(TMEDA), 4, in the solid or solution state to one atmosphere of dinitrogen. Complex 7 was also characterized by X-ray crystallography; the end-on dinitrogen bond length is 1.257 (8) Å. Degradation of 7 with HCl produced 0.29 ± 0.04 equivalents of hydrazine.

Degree

thesis:*
Name thesis:degree_name
Master of Science - MSc
Level thesis:degree_level
master's
Discipline thesis:degree_discipline
Chemistry
Grantor dc:publisher
University of British Columbia
Year dc:date
1993

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Chow, Pauline Chang

Rights

dc:rights
Statement dc:rights
  • For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use.
Language dc:language
eng

Identifiers

dc:identifier.*
Handle dc:identifier
http://hdl.handle.net/2429/1315
OAI identifier oai:identifier
oai:circle.library.ubc.ca:2429/1315

Chain of custody

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University of British Columbia
Base URL
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Last updated
2026-07-24
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citation

Chow, Pauline Chang. Dinitrogen complexes of titanium and vanadium stabilized by phosphine ligands. master's thesis, University of British Columbia, 1993. http://hdl.handle.net/2429/1315