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Pyrrolidine, 1-(diphenylphosphino)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

22859-55-8

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22859-55-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 22859-55-8 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,2,8,5 and 9 respectively; the second part has 2 digits, 5 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 22859-55:
(7*2)+(6*2)+(5*8)+(4*5)+(3*9)+(2*5)+(1*5)=128
128 % 10 = 8
So 22859-55-8 is a valid CAS Registry Number.

22859-55-8Downstream Products

22859-55-8Relevant academic research and scientific papers

Electron-donating ability of triarylphosphines and related compounds studied by 31P NMR spectroscopy

Chevykalova,Manzhukova,Artemova,Luzikov,Nifant'ev,Nifant'ev

, p. 78 - 84 (2003)

The influence of aryl, heterocyclic, amide, alkyl, alkoxyl, thioalkoxyl, and ferrocenyl substituents at the phosphorus atom on its electron-donating ability was studied by the measurement of direct 31P-77Se spin-spin coupling constants for the corresponding selenides. Series of diphenylorganylphosphines and their selenides were studied.

Synthesis and properties of highly lipophilic phosphazene bases

Selberg, Sigrid,Rodima, Toomas,L?kov, M?rt,Tshepelevitsh, Sofja,Haljasorg, T?iv,Chhabra, Sahil,Kadam, Sandip A.,Toom, Lauri,Vahur, Signe,Leito, Ivo

supporting information, p. 2098 - 2102 (2017/05/09)

Twelve novel phosphazene bases (X-C6H4-N[dbnd]N-C6H4-N[dbnd]PR3) with an unusual combination of properties – high lipophilicity of both neutral and charged forms, lack of localized charges in the cati

Broad HOMO-LUMO gap tuning through the coordination of a single phosphine, aminophosphine or phosphite onto a Ru(tpy)(bpy)2+ core

Dixon, Isabelle M.,Lebon, Emilie,Loustau, Gilles,Sutra, Pierre,Vendier, Laure,Igau, Alain,Juris, Alberto

body text, p. 5627 - 5635 (2009/02/07)

The synthesis of new ruthenium(ii) terpyridine bipyridine complexes bearing a phosphorus(iii) ligand is presented. The steric and electronic properties of the phosphorus ligand were varied using aminophosphines, alkyl and aryl phosphites and the bulky tri(isopropyl)phosphine. All complexes were characterized by multi-nuclear NMR spectroscopy, mass spectrometry and X-ray diffraction analysis. The electronic properties of the complexes were probed by cyclic voltammetry, absorption and luminescence spectroscopy. The complexes do not show luminescence at room temperature, whereas at 77 K in an alcoholic matrix, emission is observed in the range 600-650 nm with lifetimes of 3.5-5.5 μs, originating from 3MLCT states. The MLCT transition spans over 65 nm, which corresponds to a variation of 0.4 eV in the HOMO-LUMO gap. The oxidation potential of the ruthenium varies over a broad range of 290 mV, from +1.32 V vs. SCE with L = PiPr3 to +1.61 V vs. SCE with L = P(OPh)3. This range is unprecedented upon the variation of a single monodentate ligand coordinated by the same heteroatom in the same oxidation and charge states. This work underlines the specific capacity of phosphorus in bringing up a large variety of electronic properties by changing its substituents.

Efficient method for the preparation of carboxylic acid alkyl esters or alkyl phenyl ethers by a new-type of oxidation-reduction condensation using 2,6-dimethyl-1,4-benzoquinone and alkoxydiphenylphosphines

Shintou, Taichi,Kikuchi, Wataru,Mukaiyama, Teruaki

, p. 1645 - 1667 (2007/10/03)

A new-type of oxidation-reduction condensation proceeded smoothly to afford carboxylic acid alkyl esters or alkyl phenyl ethers in good to high yields by combined use of alkoxydiphenylphosphines (1) having primary, bulky secondary or tertiary alkoxy groups, a mild quinone-type oxidant such as 2,6-dimethyl-1,4-benzoquinone (DMBQ) and carboxylic acids or phenols. Generally, alkoxydiphenylphosphines were prepared easily from chlorodiphenylphosphine (2) and alcohols in the presence of pyridine, and were isolated by distillation. On the other hand, the phosphines 1 were also prepared in situ from N,N-dimethylaminodiphenylphosphine (3a) and primary or secondary alcohols while primary, bulky secondary or tertiary alkoxydiphenylphosphines were alternatively formed in situ by adding 2 to the "BuLi-treated alcohols in order to perform the above reactions by a one-pot procedure from alcohols and nucleophiles. The reaction of thus formed 1, DMBQ and carboxylic acids or phenols afforded the corresponding alkylated products, including hindered secondary and tertiary alkylated ones, in good to high yields at room temperature. In the case of using chiral secondary alcohols, the corresponding carboxylic acid alkyl esters were obtained as well in high yields with perfect inversion of stereochemistry by SN2 replacement.

Organic phosphorus compounds 106.1 a 31P-NMR study of phosphinous-, phosphinic-, and thiophosphinic amides

Maier, Ludwig,Diel, Peter J.

, p. 273 - 300 (2007/10/03)

The synthesis, physical, chemical and spectroscopic properties of eight different types of phosphinous-, phosphinic-and thiophosphinic amides are reported. It is shown that the 31P-chem. shifts of tertiary amides are at lower magnetic field than that of secondary amides. As an exception, in the bis(tertiary butyl) series this trend is reversed.

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