Lineare Oligophosphaalkane, III: Synthese und Stereochemie von Palladium(II)‐Komplexen chiraler Tetraphosphaalkane H 2−n R n P[CH 2 ] 3 PR′ m[CH 2 ] m PR′ [CH 2 ] 3 PR n H 2−n (R, R′, = Me, tBu; m = 2, 3; n = 1, 2)
Author:
Affiliation:
1. Fachbereich 9, Anorganische Chemie, Universität‐Gesamthochschule‐Wuppertal, Gaußstr. 20, D‐5600 Wuppertal 1
Publisher
Wiley
Subject
Inorganic Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/cber.19811141122
Reference20 articles.
1. Oligophosphaalkane, II. Tetra‐ und pentakoordinierte Komplexe α,ω‐PH‐funktioneller Triphosphaalkane H 2–n R n P–[CH 2 ] 3 –PR′–[CH 2 ] 3 –PR n H 2–n
2. Komplexe α,ω‐PH‐funktioneller Oligophosphaalkane H 2n R′ n P[CH 2 ] 3 PR′[CH 2 ] 3 PR′[CH 2 ] 3 PR′ n H 2n
3. Lit.(3) S.280.
4. Unsymmetrical bis-phosphorus ligands. IV. Group VI metal carbonyl derivatives of diphenylphosphinomethyl and diphenylphosphinomethyl phosphinites, (C6H5)2P(CH2)nOP(C6H5)2, n = 1 or 2, and an unusual phosphorus chemical shift chelate effect
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1. Polydentate Phosphines: Their Syntheses, Structural Aspects, and Selected Applications;Progress in Inorganic Chemistry;2007-03-09
2. Stereospezifische Synthese von Palladium(II)-Komplexen makrocyclischer vierzähniger Phosphanliganden;Angewandte Chemie;2006-01-16
3. Substitution of chloride in [PtCl2(PET3)2] by the chiral anionic ligand [Mo(CO)5(PPhH)]− to give mixed platinum-molybdenum compounds and a 31P∗1H∗ NMR analysis of their fluxionality. X-ray crystal structure of [PtCl(PEt3)2 (μ-PPhH) ∗Mo(CO)5∗] and trans-[Pt(PEt3)2 (μ-PPH)2 ∗Mo(CO)5∗2];Polyhedron;1997-03
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5. Stereochemical Control of Transition Metal Complexes by Polyphosphine Ligands;Chemical Reviews;1994-07
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