Home / Publications / Synthesis and molecular structure of a chiral ferrocenylphosphine

Synthesis and molecular structure of a chiral ferrocenylphosphine

Andrey Anatol'evich Karasik 1
Andrey Anatol'evich Karasik
Yulia Sergeevna Spiridonova 1
Yulia Sergeevna Spiridonova
Peter Lönnecke 2
Peter Lönnecke
René Sommer 2
René Sommer
Evamarie Hey-Hawkins 2
Evamarie Hey-Hawkins
Published 2005-05-04
CommunicationVolume 15, Issue 3, 89-90
16
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Karasik A. A. et al. Synthesis and molecular structure of a chiral ferrocenylphosphine // Mendeleev Communications. 2005. Vol. 15. No. 3. pp. 89-90.
GOST all authors (up to 50) Copy
Karasik A. A., Spiridonova Y. S., Yakhvarov D. G., Sinyashin O. G., Lönnecke P., Sommer R., Hey-Hawkins E. Synthesis and molecular structure of a chiral ferrocenylphosphine // Mendeleev Communications. 2005. Vol. 15. No. 3. pp. 89-90.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1070/MC2005v015n03ABEH002119
UR - https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH002119
TI - Synthesis and molecular structure of a chiral ferrocenylphosphine
T2 - Mendeleev Communications
AU - Karasik, Andrey Anatol'evich
AU - Spiridonova, Yulia Sergeevna
AU - Yakhvarov, Dmitry Grigorievich
AU - Sinyashin, Oleg Gerol'dovich
AU - Lönnecke, Peter
AU - Sommer, René
AU - Hey-Hawkins, Evamarie
PY - 2005
DA - 2005/05/04
PB - Mendeleev Communications
SP - 89-90
IS - 3
VL - 15
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2005_Karasik,
author = {Andrey Anatol'evich Karasik and Yulia Sergeevna Spiridonova and Dmitry Grigorievich Yakhvarov and Oleg Gerol'dovich Sinyashin and Peter Lönnecke and René Sommer and Evamarie Hey-Hawkins},
title = {Synthesis and molecular structure of a chiral ferrocenylphosphine},
journal = {Mendeleev Communications},
year = {2005},
volume = {15},
publisher = {Mendeleev Communications},
month = {May},
url = {https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH002119},
number = {3},
pages = {89--90},
doi = {10.1070/MC2005v015n03ABEH002119}
}
MLA
Cite this
MLA Copy
Karasik, Andrey Anatol'evich, et al. “Synthesis and molecular structure of a chiral ferrocenylphosphine.” Mendeleev Communications, vol. 15, no. 3, May. 2005, pp. 89-90. https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH002119.

Abstract

The first chiral (aminomethyl)ferrocenylphosphine (S,S)-1,5-bis(α-methylbenzyl)-3,7-bisferrocenyl-1,5-diaza-3,7-diphosphacyclooctane was obtained via a condensation reaction of bis(hydroxymethyl)ferrocenylphosphine with chiral (S)-α-methylbenzylamine.

References

1.
K. S. Gan and T. S. A. Hor. in Ferrocenes. Homogeneous Catalysis, Organic Synthesis and Material Science, eds. A. Togni, T. Hayashi, VCH, Weinheim, 1995, Ch. 1 and references therein.
2.
The design and synthesis of a new potentially C3-symmetric ferrocenylphosphine
Butler I.R., Drew M.G., Caballero A.G., Gerner P., Greenwell C.H.
Journal of Organometallic Chemistry, 2003
4.
A New Class of Ferrocene-Based l,2-Bis(phosphanes) Possessing only Planar Chirality
Argouarch G., Samuel O., Riant O., Daran J., Kagan H.
European Journal of Organic Chemistry, 2000
5.
10.1070/MC2005v015n03ABEH002119_bib3_1
Ferrocenes. Homogeneous Catalysis, Organic Synthesis and Material Science, 1995
7.
10.1070/MC2005v015n03ABEH002119_bib4_1
Noyori
Modern Synthetic Methods, 1989
8.
10.1070/MC2005v015n03ABEH002119_bib4_2
Ojima
Catalytic Asymmetric Synthesis, 1993
9.
10.1070/MC2005v015n03ABEH002119_bib4_3
Seyden-Penne
Chiral Auxiliaries and Ligands in Asymmetric Synthesis, 1995
10.
Rapid Access to Diverse Arrays of Chiral 3,4-Diazaphospholanes
Landis C.R., Jin W., Owen J.S., Clark T.P.
Angewandte Chemie - International Edition, 2001
11.
Karasik A.A., Georgiev I.O., Vasiliev R.I., Sinyashin O.G.
Mendeleev Communications, 1998
12.
Chemical and Biomedical Motifs of the Reactions of Hydroxymethylphosphines with Amines, Amino Acids, and Model Peptides
Berning D.E., Katti K.V., Barnes C.L., Volkert W.A.
Journal of the American Chemical Society, 1999
13.
Novel chiral 1,5-diaza-3,7-diphosphacyclooctane ligands and their transition metal complexes
Karasik A.A., Naumov R.N., Sinyashin O.G., Belov G.P., Novikova H.V., Lönnecke P., Hey-Hawkins E.
Dalton Transactions, 2003
15.
Characterization of Supramolecular (H2O)18 Water Morphology and Water-Methanol (H2O)15(CH3OH)3 Clusters in a Novel Phosphorus Functionalized Trimeric Amino Acid Host
Raghuraman K., Katti K.K., Barbour L.J., Pillarsetty N., Barnes C.L., Katti K.V.
Journal of the American Chemical Society, 2003
16.
Chiroptical properties of dendrimers with stereogenic end groups
Lartigue M., Caminade A., Majoral J.P.
Tetrahedron Asymmetry, 1997
17.
Synthesis of D-Glucose-based Azacrown Ethers with Phosphinoxidoalkyl Side Chains and Their Application to an Enantioselective Reaction
Novák T., Bakó P., Keglevich G., Dobó A., Vékey K., Tóke L.
Journal of Inclusion Phenomena and Macrocyclic Chemistry, 2001
19.
10.1070/MC2005v015n03ABEH002119_bib5_10
Arbuzov
Adv. Heterocycl. Chem., 1994
20.
Water-soluble aminomethyl(ferrocenylmethyl)phosphines and their trinuclear transition metal complexes
Karasik A.A., Naumov R.N., Sommer R., Sinyashin O.G., Hey-Hawkins E.
Polyhedron, 2002
24.
Gold and Silver Complexes with the Ferrocenyl Phosphine FcCH2PPh2 [Fc = (η5-C5H5)Fe(η5-C5H4)]
Barranco E.M., Crespo O., Concepción Gimeno M., Laguna A., Jones P.G., Ahrens B.
Inorganic Chemistry, 2000
25.
Synthesis of ferrocenylphosphine-modified silicon surfaces
Eagling R.D., Bateman J.E., Goodwin N.J., Henderson W., Horrocks B.R.
Journal of the Chemical Society Dalton Transactions, 1998
26.
G.M.Sheldrick, SADABS, Program for Scaling and Correction of Area-Detector Data, Göttingen, 1997.
27.
10.1070/MC2005v015n03ABEH002119_bib10
Sheldrick
SHELXS97 and SHELXL97 – Programs for Crystal Structure Analysis, 1998