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The chemical compound "W(CO)2(C5H5)(SP(C6H5)2)" is a complex organometallic molecule consisting of a tungsten (W) center. It features two carbonyl (CO) ligands, which are common in transition metal complexes and provide stability through back-bonding. The compound also includes a cyclopentadienyl (C5H5) ligand, which is a well-known π-electron donor ligand that forms a stable η5 bond with the metal center. Additionally, it has a diphenylphosphine sulfide (SP(C6H5)2) ligand, which is a chelating ligand with both a sulfur and two phenyl groups attached to a phosphorus atom. This ligand can provide both steric bulk and electronic effects, influencing the reactivity and properties of the complex. Overall, the compound is a representative of organometallic chemistry, with potential applications in catalysis and materials science due to its unique electronic and steric properties.

76374-51-1

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76374-51-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 76374-51-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,6,3,7 and 4 respectively; the second part has 2 digits, 5 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 76374-51:
(7*7)+(6*6)+(5*3)+(4*7)+(3*4)+(2*5)+(1*1)=151
151 % 10 = 1
So 76374-51-1 is a valid CAS Registry Number.

76374-51-1Downstream Products

76374-51-1Relevant academic research and scientific papers

Preparation, properties, and structural studies of molybdenum and tungsten complexes with [Ph2P(S)C(S)NR]- (R = Me, Ph) or Ph2PS- ligands. X-ray structure analysis of Mo(CO)2(η5-C5H5)[Ph 2P(S)C(S)NPh]

Ambrosius,Van Hemert,Bosman,Noordik,Ariaans

, p. 2678 - 2685 (2008/10/08)

M(CO)3(η5-C5H5)Cl (M = Mo, W) reacts with Ph2P(S)C(S)N(H)R (R = Ph, Me) and a base to yield three different products depending on reaction time and temperature. At room temperature complexes of composition M(CO)2(η5-C5H5)[Ph 2P(S)C(S)NR] are obtained, in which the ligands are coordinated by both sulfur atoms. At higher temperature mixtures are obtained of M(CO)2(η5-C5H5)[Ph 2P(S)C(S)NR] (M = Mo, R = Ph, Me; M = W, R = Me), in which the ligand is coordinated through S(C) and N, and M(CO)2(η5-C5H5)(η 2-SPPh2) (M = Mo, W). The last complexes can also be prepared from M(CO)3(η5-C5H5)Cl in a direct reaction with SPPh2H and Et3N. M(CO)3(PPh3)2Cl2 (M = Mo, W) reacts with 2 equiv of Ph2P(S)C(S)N(H)Ph in the presence of a base to form M(CO)2(PPh3)[Ph2P(S)C(S)NPh]2, in which the ligands show a dynamic behavior with respect to the coordinating mode. The starting complexes react with SPPh2H and Et3N to M(CO)2(PPh3)(η2-SPPh2) 2. Under similar conditions Mo(CO)4Cl2 gives Mo(CO)3(η2-SPPh2)2. The complexes are characterized by means of elemental analyses, infrared spectroscopy, and 1H and 31P NMR spectroscopy. The X-ray structure analysis of Mo(CO)2(η5-C5H5) [Ph2P(S)C(S)NPh] is presented: a = 10.390 (4) A?, b = 14.328 (5) A?, c = 9.602 (3) A?, a = 73.02 (2)°, β = 108.49 (2)°, and γ = 112.39 (2)° in space group P1 and Z = 2.

TRANSITION METAL SUBSTITUTED PHOSPHANES: SYNTHESIS, REACTIVITY AND PYRAMIDAL INVERSION

Malisch, W.,Maisch, R.,Meyer, A.,Greissinger, D.,Gross, E.,et al.

, p. 299 - 302 (2007/10/02)

The synthesis of transition metal substituted phosphanes C5H5(CO)2M-PPh2, C5H5(CO)2(Me3P)M-PPh2 (M = Mo, W) and C5H5(CO)(Me3P)FePPhR (R = Me, Ph) is described as well as their reactivity towards a series of electrophilic and oxidizing reagents.

Molybdenum and Tungsten Complexes with Side-on Co-ordinated SPPh2-Ligands. X-Ray Crystal Structure Determination of Mo(CO)2(PPh3)(η2-SPPh2)2CH2Cl2

Ambrosius, Huub P. M. M.,Noordik, Jan H.,Ariaans, Gerry J. A.

, p. 832 - 833 (2007/10/02)

M(CO)3Cl(η5-C5H5) and M(CO)3(PPh3)2Cl2 (M = Mo, W) react with SPPh2H and Et3N to give M(CO)2(η5-C5H5)(η2-SPPh2) and M(CO)2(PPh3)(η2-SPPh2)2, respectively; an X-ray crystal structure determination of Mo(CO)2(PPh3)(SPPh2)2 reveals a 7-co-ordinate pseudopentagonal bipyramidal geometry for the molybdenum atom with an almost planar configuration for the sulphur and phosphorus atoms.

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