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C5H5FeC5H3CCH3NCP(C6H5)2COC6H5PdC3H5(1+)*BF4(1-)=C5H5FeC5H3CCH3NCP(C6H5)2COC6H5PdC3H5BF4 is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

506430-99-5

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506430-99-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 506430-99-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 5,0,6,4,3 and 0 respectively; the second part has 2 digits, 9 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 506430-99:
(8*5)+(7*0)+(6*6)+(5*4)+(4*3)+(3*0)+(2*9)+(1*9)=135
135 % 10 = 5
So 506430-99-5 is a valid CAS Registry Number.

506430-99-5Downstream Products

506430-99-5Relevant articles and documents

1,2-ferrocenediylazaphosphinines: An unusual coordination behavior and application to allylic alkylation

Co, Thanh Thien,Paek, Seung Whan,Shim, Sang Chul,Cho, Chan Sik,Kim, Tae-Jeong,Choi, Dong Woong,Kang, Sang Ook,Jeong, Jong Hwa

, p. 1475 - 1482 (2003)

The reaction of 1,2-ferrocenediylazaphosphinines (1a, R1 = H; 1b, R1 = Me; 1c, R1 = Ph) with M(CO)6 (M = Mo, W), MX(CO)5 (M = Mn, Re; X = Br, Cl), and [Pd(η3-C3H5)Cl]2 shows a strong tendency to adopt an unusual chelating bidentate coordination through nitrogen and the carbonyl oxygen, yielding M(η2-N,O)(CO)4 (2, M = Mo; 3, M = W), M(η2-N,O)(X)-(CO)3 (6, M = Mn, X = Br; 7, M = Re, X = Cl), and [Pd(η2-N,O)(η3-C3H5)]BF 4 (after treatment with AgBF4) (8), respectively. X-ray crystallographic structure determinations of 3a (R1 = H) and 8a (R1 = H) show the formation of a five-membered metallacycle with the distance of the metal - carbonyl oxygen bond being shorter than that of the metal - nitrogen bond in both compounds. The complexes 2 and 3 further undergo oxidative addition with allyl iodide to yield the corresponding M(II) complexes of the type [M(η2-N,O)(η3-C3H5)(I)CO) 2] (4, M = Mo; 5, M = W). Complexes 2-5 and 8 were employed as catalysts for nucleophilic allylic substitution of allyl acetates as a probe for both regio- and enantioselectivities of the reaction. All reactions involving unsymmetrical allyl acetates (E)-RCH=CHCH2OAc (R = Pr, Ph) led exclusively to the formation of achiral linear product (E)-RCH=CHCH2Nu regardless of the type of catalysts, the ligand, or the allyl substrate employed. One exception to the above statement is the observation that Mo- and W-based catalysts (2-5) are totally inactive toward the allylic substitution of cinnamyl acetate (R = Ph). Asymmetric allylic alkylation of a symmetrically 1,3-disubstituted substrate, PhCH=CHCH(OAc)Ph, is accomplished only by Pd-catalysts (8) with enantiomeric excesses up to 50% ee.

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