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  • 1
    ISSN: 0044-2313
    Keywords: Phosphanes ; silylphosphanes ; 1,1,3,3-tetrakis(trimethylsilyl)triphosphane ; tetracarbonyl {1,1,3,3-tetrakis(trimethylsilyl)triphosphane-1k2P1P2}chromium ; tetracarbonyl{1-lithio-1,3,3-tris(trimethylsilyl)triphosphane-1k2P1P2}chromium ; tetracarbonyl{1,3,3-tris(trimethylsilyl)triphosphane-1k2P1P2}chromium ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Transition Metal Complexes of P-rich Phosphanes and Silylphosphanes. X. The Influence of the Formation of Complex Compounds on the Reactivity of [(Me3Si)2P]2PHWhereas [(Me3Si)2P]2PH 1 by BuLi is attacked at the PH group to give [(Me3Si)2P]2PLi 2, the related chromium carbonyl complex (Me3Si)12PIV — 2PIV(H) — 3PIII(Si—Me3)2 · Cr(CO)4 3 with BuLi yields Li(Me3Si)1PIV — 2PIV(H) — 3PIII(SiMe3)2 · Cr(CO)4 4 by cleaving a Si—P bond at the chromium substituted 1P atom. Dissolved in ether, 4 is stable for a longer time, while under comparable conditions 2 forms Li3P7 which is not obtained from 4. MeOH in 3 cleaves selectively the Me3Si groups from the complex substituted P atom yielding (Me3Si)(H)1PIV — 2PIV(H) — 3PIII(SiMe3)2 · Cr(CO)4 5 and H21PIV — 2PIV(H) — 3PIII(SiMe3)2Cr(CO)4 6. 5 and 6 seem to be stable in contrast to the uncoordinated triphosphanes which are not known.
    Notes: Während [(Me3Si)2P]2PH 1 mit LiBu unter Substitution der PH-Gruppe [(Me3Si)2P]2PLi 2 bildet, reagiert dessen Chromcarbonylkomplex (Me3Si)12PIV — 2PIV(H) — 3PIII(SiMe3)2 · Cr(CO)4 3 mit LiBu unter Spaltung einer Si—P-Bindung am komplexierten 1P-Atom zum Li(Me3Si)1PIV — 2PIV(H) — 3PIII(SiMe3)2 · Cr(CO)4 4. 4 ist in etherischer Lösung über längere Zeit beständig, während 2 unter diesen Bedingungen umgehend unter Bildung von Li3P7 weiterreagiert, das von 4 nicht gebildet wird. Mit MeOH werden in 3 selektiv die Me3Si—P-Gruppen am komplexierten 1P-Atom unter Bildung von (Me3Si)(H)1PIV — 2PIV(H) — 3PIII(SiMe3)2 · Cr(CO)4 5 und H21PIV — 2PIV(H) — 3PIII(SiMe3)2Cr(CO)4 6 gespalten. In 5 und 6 sind die im unkomplexierten Zustand bisher nicht bekannten Triphosphane offensichtlich stabilisiert.
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  • 2
    ISSN: 0044-2313
    Keywords: Li(THF)2[η2-(tBu2P)2P] ; Li(TMEDA)[η2-(tBu2P)2P] ; Li(THF)2[η2-(iPr2P)2P] ; Li(THF)2[η2-(Et2N)2P—P—PtBu2] ; Li(THF)2[η2-(tBu2P—P—PiPr2)] ; (tBu2P)2P—SiMe3 ; crystal structures ; 1H, 31P, 7Li-NMR spectra ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Formation and Structure of Li(THF)2[η2-(tBu2P)2P], Li(TMEDA)[η2-(tBu2P)2P], Li(THF)2[η2-(iPr2P)2P], Li(THF)2[η2-(Et2N)2P—P—PtBu2], Li(THF)2[η2-(tBu2P—P—PiPr2] and (tBu2P)2P—SiMe3The formation and crystal structures of the compounds (tBu2P)2P—SiMe3 1, Li(THF)2[η2-(tBu2P)2P] 2, Li(TMEDA)[η2-(tBu2P)2P] 3, Li(THF)2[η2-(iPr2P)2P] 4, Li(THF)2[η2-(Et2N)2P—P—PtBu2] 5 and Li(THF)2[η2-(tBu2P—P—PiPr2)] 6 are reported. Compounds 3-6 are formed by reacting the corresponding silylated triphosphanes with nBuLi: 2 and 3 result from (tBu2P)2P—SiMe3 1, 4 from (iPrP)2P—SiMe3, 5 from (Et2N)2P—P(SiMe3)—PtBu2 and 6 from tBu2P—P(SiMe3)—PiPr2. 1 crystallizes in the orthorhombic space group P212121 (no. 19) with a = 910.87(7) pm, b = 1132.5(1) pm, c = 2373.5(2) pm (determined at 90 K). The structure determination of 2 was performed at 293 K and 200 K, respectively. 2 crystallizes in the monoclinic space group P21/n (no. 14) with a = 1069.7(3) pm, b = 1802.5(3) pm, c = 1604.0(7) pm, β = 98.11(2)° (200 K); 3 also in P21/n (no. 14) with a = 904.3(2) pm, b = 1936.4(5) pm, c = 1653.2(3) pm, β = 94.52(1)° (200 K). 4 crystallizes monoclinically in C2/c (no. 15) with a = 1650.0(5) pm, b = 945.6(3) pm, c = 1779.8(5) pm, β = 108.81(2)° (200 K); 5 in P21/n (no. 14) with a = 939.4(5) pm, b = 1736.8(6) pm, c = 1943.3(7) pm, β = 98.17(4)° (200 K). All compounds contain Z = 4 molecules in the unit cell.The 1H, 31P and 7Li NMR spectra of 2-6 are discussed.
    Notes: Es wird über die Verbindungen (tBu2P)2P—SiMe3 1, Li(THF)2[η2-(tBu2P)2P] 2, Li(TMEDA) · [η2-(tBu2P)2P] 3, Li(THF)2[η2-(iPr2P)2P] 4, Li(THF)2[η2-(Et2N)2P—P—PtBu2] 5 und Li(THF)2[η2-(tBu2P—P—PiPr2)] 6 berichtet. Letztere bilden sich durch Umsetzung der entsprechenden silylierten Triphosphane mit nBuLi: 2 und 3 aus (tBu2P)2P—SiMe3 1, 4 aus (iPr2P)2P—SiMe3, 5 aus (Et2N)2—P · (SiMe3)—PtBu2, 6 aus tBu2P—P(SiMe3)—PiPr2.1 kristallisiert orthorhombisch in P212121 (Nr. 19) mit a = 910,87(7) pm, b = 1132,5(1) pm, c = 2373,5(2) pm (bei 90 K bestimmt). Die Strukturbestimmung von 2 erfolgte bei 293 K und 200 K. 2 kristallisiert monoklin in P21/n (Nr. 14) mit a = 1069,7(3) pm, b = 1802,5(3) pm, c = 1604,0(7) pm, β = 98,11(2)° (200 K), 3 ebenfalls in P21/n (Nr. 14) mit a = 904,3(2) pm, b = 1936,4(5) pm, c = 1653,2(3) pm, β = 94,52(1)° (200 K). 4 kristallisiert monoklin in C2/c (Nr. 15) mit a = 1650,0(5) pm, b = 945,6(3) pm, c = 1779,8(5) pm, β = 108,81(2)° (200K), 5 in P21/n (Nr. 14) mit a = 939,4(5) pm, b = 1736,8(6) pm, c = 1943,3(7) pm, β = 98,17(4)° (200 K). Alle fünf Verbindungen enthalten jeweils vier Formeleinheiten in der Elementarzelle.Es wird über die Untersuchung der 1H-, 31P- und 7Li-NMR-Spektren der Verbindungen 2-6 berichtet.
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  • 3
    ISSN: 0044-2313
    Keywords: Phosphanes ; Phosphinophosphinidene-phosphoranes ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Reactions of tBu2P—P=P(Br)tBu2 with Phosphanes A Route to Variously Substituted Phosphinophosphinidene-phosphoranestBu2P—P=P(Br)tBu2 1 reacts with PR3 [R3 = Et3, tBu3, Ph3, (NMe2)3, (NEt2)3, (NEt2)2Me, Me2SiMe3] according totBu2P—P=P(Br)tBu2 + PR3 → tBu2P—P=PR3 + tBu2PBrWhile 1 decomposes above -30°C yielding tBu2PBr and the cyclophosphanes (tBu2P)3P3 and (tBu2P)4P4, there is no condensation to give any cyclophosphanes from the intermediately formed tBu2P—P in the presence of PR3. The chlorophosphanes tBu2PCl, tBuPPhCl, (Et2N)2PCl and Ph2PCl as well as (CF3)2PBr react quite analogously to the above equation yielding tBu2P—P=P(Cl)tBu2, tBu2P—P=PtBuPhCl, tBu2P—P=P(NEt2)2Cl and tBu2P—P=P(NEt2)2Br.
    Notes: tBu2P—P=P(Br)tBu2 1 reagiert mit PR3 [R3 = Et3, tBu3, Ph3, (NMe2)3, (NEt2)3, (NEt2)2Me, Me2SiMe3] nachtBu2P—P=P(Br)tBu2 + PR3 → tBu2P—P=PR3 + tBu2PBrWährend 1 oberhalb -30°C unter Bildung von tBu2PBr und der Cyclophosphane (tBu2P)3P3, (tBu2P)4P4 zerfällt, unterbleibt die Kondensation des intermediär auftretenden tBu2P—P zu den Cyclophosphanen in Anwesenheit von PR3 aufgrund der Addition des Phosphans. Die Chlorphosphane tBu2PCl, tBuPhPCl, (Et2N)2PCl und Ph2PCl sowie (CF3)2PBr reagieren weitgehend entsprechend Gl. (1) unter Bildung von tBu2P—P=PtBu2Cl, tBu2P—P=PtBuPhCl, tBu2P—P=P(NEt2)2Cl, tBu2P—P=P(NEt2)2Br.
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