Show/Hide Menu
Hide/Show Apps
Logout
Türkçe
Türkçe
Search
Search
Login
Login
OpenMETU
OpenMETU
About
About
Open Science Policy
Open Science Policy
Open Access Guideline
Open Access Guideline
Postgraduate Thesis Guideline
Postgraduate Thesis Guideline
Communities & Collections
Communities & Collections
Help
Help
Frequently Asked Questions
Frequently Asked Questions
Guides
Guides
Thesis submission
Thesis submission
MS without thesis term project submission
MS without thesis term project submission
Publication submission with DOI
Publication submission with DOI
Publication submission
Publication submission
Supporting Information
Supporting Information
General Information
General Information
Copyright, Embargo and License
Copyright, Embargo and License
Contact us
Contact us
DISPLACEMENT KINETICS OF 1,5-CYCLOOCTADIENE FROM MO(CO)4(ETA(2-2)-1,5-CYCLOOCTADIENE) BY BIS(DIPHENYLPHOSPHINO)METHANE
Date
1994-05-25
Author
TEKKAYA, A
KAYRAN, C
Özkar, Saim
KREITER, CG
Metadata
Show full item record
This work is licensed under a
Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License
.
Item Usage Stats
133
views
0
downloads
Cite This
The kinetics of the thermal substitution of 1,5-cyclooctadiene (COD) from [Mo(CO)4(eta2:2-COD)] (1) by bis-(diphenylphosphino)methane (DPPM) and the formation of [Mo(CO)4(DPPM)] (6) was studied by quantitative FT-IR spectroscopy. The reaction rate exhibits first-order dependence on the concentration of 1, and the observed rate constant, k(obs), depends on the concentrations of both leaving COD and entering DPPM ligand. From the evaluation of data collected, one can propose a mechanism in which the rate-determining step is the cleavage of one of two Mo-olefin bonds. A rate law is derived from the proposed mechanism. The evaluation of the kinetic data gives the enthalpy of activation DELTAH* = 80 (+/-1) kJ.mol-1 and the entropy of activation DELTAS* = -55 (+/-2) J.mol-1.K-1. The negative entropy value obtained tends to suggest an associative mechanism in transition states. Material balance and yield of product do not show any significant depletion implying that there is no decomposition in noticeable amounts during the substitution reaction.
Subject Keywords
Physical and Theoretical Chemistry
,
Inorganic Chemistry
URI
https://hdl.handle.net/11511/37686
Journal
INORGANIC CHEMISTRY
DOI
https://doi.org/10.1021/ic00089a020
Collections
Department of Chemistry, Article
Suggestions
OpenMETU
Core
Displacement kinetics of 1,5-cyclooctadiene from M(CO)(4)(eta(2:2)-1.5-cyclooctadiene) (M=Cr, Mo, W) by bis(diphenylphosphino)alkane
Kayran, C; Okan, E; Özkar, Saim; Ozturk, O; Saldamli, S; Tekkaya, A; Kreiter, CG (Walter de Gruyter GmbH, 1997-01-01)
The thermal substitution kinetics of 1,5-cyclooctadiene (COD) from M(CO)(4)(eta(2:2)-COD) (M = Cr, Mo, W) by bis(diphenylphosphino)alkane, (C6H5)(2)P(CH2)(n)-P(C6H5)(2) (n = 1, 2, 3), was studied by quantitative FT-IR spectroscopy. The reaction rate exhibits first-order dependence on the concentration of starting complex and the observed rate constant depends on the concentrations of both the leaving COD and entering diphosphine ligand. In the proposed mechanism the rate determining step is the cleavage of ...
Synthesis and structural characterization of a novel seven-coordinate cobalt(II) complex: 2,9-Bis(ethanolamine)-1,10-phenanthrolinechlorocobalt(II) chloride
BAYSAL, AKIN; AYDEMİR, MURAT; DURAP, FEYYAZ; Özkar, Saim; Yildirim, Leyla Tatar (Elsevier BV, 2011-05-31)
Condensation reaction of 2,9-dicarboxaldehyde-1,10-phenanthroline with 2-aminoethanol followed by NaBH4 reduction yielded the polydentate Schiff base ligand 2,9-bis(ethanolamine)-1,10-phenanthroline in its reduced form. This ligand was characterized by elemental analysis, LC-MS, IR, UV-Vis and NMR spectroscopy. Reaction of the reduced Schiff base ligand with aqueous solution of cobalt(II) chloride affords 2,9-bis(ethanolamine)-1,10-phenanthrolinechlorocobalt(II) chloride in high yield. Single crystals of th...
Synthesis and electrochemistry of Group 6 tetracarbonyl (N,N '-bis(ferrocenylmethylene)ethylenediamine)metal(0) complexes
Kocak, F. Sanem; Kavakli, Cuneyt; Akyol, Ceyhun; Önal, Ahmet Muhtar; Özkar, Saim (Elsevier BV, 2006-11-15)
Thermal substitution reaction of Cr(CO)4(η2:2-1,5-cyclooctadiene), Mo(CO)4(η2:2-norbornadiene), and W(CO)5(η2-bis(trimethylsilyl)ethyne) with N,N′-bis(ferrocenylmethylene)ethylenediamine (bfeda) yields M(CO)4(bfeda) complexes which could be isolated from the reaction solution and characterized by elemental analysis, MS, IR, and NMR spectroscopy. In the case of tungsten, W(CO)5(bfeda) is formed as intermediate and then undergoes the ring closure reaction yielding the ultimate product W(CO)4(bfeda). The elect...
ELECTRONIC ABSORPTION AND MAGNETIC CIRCULAR-DICHROISM SPECTRA FOR BINUCLEAR PT2(SO4)4X2N- AND PT2(HPO4)4X2N- IONS IN AQUEOUS-SOLUTION
GOKAGAC, G; ISCI, H; MASON, WR (American Chemical Society (ACS), 1992-05-27)
Electronic absorption and 7-T magnetic circular dichroism (MCD) spectra in the UV-visible region are reported for the binuclear diplatinum(III) ions: Pt2(SO4)4X2n-, n = 2, X = H2O, NH3; n = 4, X = Cl-, Br-, OH-. Pt2(HPO4)4X2n-, n = 2, X = H2O, Me2S; n = 4, X = Cl-, Br-. Both the absorption spectra and the MCD spectra for complexes with the same axial ligand X are similar for oxo-bridging SO42- or HPO42-. However, the MCD spectra show marked differences depending upon the nature of the X ligand. The mos...
Ligand substitution kinetics in M(CO)(4)(eta(2 : 2)-1,5-cyclooctadiene) complexes (M = Cr, Mo, W) - substitution of 1,5-cyclooctadiene by bis(diphenylphosphino)alkanes
Kayran, C; Kozanoglu, F; Özkar, Saim; Saldamli, S; Tekkaya, A; Kreiter, CG (1999-01-30)
The thermal substitution kinetics of 1,5-cyclooctadiene (COD) by bis(diphenylphosphino)alkanes (PP), (C6H5)(2)P(CH2)(n)P(C6H5)(2) (n = 1, 2, 3) in M(CO)(4)(eta(2:2)-COD) complexes (M = Cr, Mo, W), were studied by quantitative FT-LR spectroscopy. The reaction rate exhibits first-order dependence on the concentration of the starting complex, and the observed rate constant depends on the concentration of the leaving COD ligand and on the concentration and the nature of the entering PP ligand. In the proposed m...
Citation Formats
IEEE
ACM
APA
CHICAGO
MLA
BibTeX
A. TEKKAYA, C. KAYRAN, S. Özkar, and C. KREITER, “DISPLACEMENT KINETICS OF 1,5-CYCLOOCTADIENE FROM MO(CO)4(ETA(2-2)-1,5-CYCLOOCTADIENE) BY BIS(DIPHENYLPHOSPHINO)METHANE,”
INORGANIC CHEMISTRY
, pp. 2439–2443, 1994, Accessed: 00, 2020. [Online]. Available: https://hdl.handle.net/11511/37686.