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1.
Reactions of Zinc and Cadmium Halides with Tris(trimethylsilyl)phosphane and Tris(trimethylsilyl)arsane ZnCl2 reacts with E(SiMe3)3 (E = P, As) in toluene in the presence of PnPr3 to give the binuclear complexes [Zn2Cl2{E(SiMe3)2}2(PnPr3)2] · C7H8 (E = P 1 , As 2 ). Therefore by the use of PiPr3 clusters consisting of ten metal atoms are obtained, [Zn10Cl12(ESiMe3)4(PiPr3)4] (E = P 3 , As 4 ). As a result of the reaction of CdBr2 with P(SiMe3)3 the compound [CdBr2{P(SiMe3)3}]2 ( 5 ) can be isolated at –40 °C. In the presence of PnPr3 CdBr2 reacts with P(SiMe3)3 forming the binuclear complex [Cd2Br2{P(SiMe3)2}2(PnPr3)2] · thf ( 6 ). The same reaction with PiPr3 yields to the cluster [Cd10Br12(PSiMe3)4{P(SiMe3)3}4] · 2 C7H8 ( 7 ). ZnI2 and CdI2 react with As(SiMe3)3 to yield the complexes [MI2{As(SiMe3)3}]2 (M = Zn 8 , Cd 9 ). In the case of CdI2 additionally the cluster [Cd10I12(AsSiMe3)4 · {As(SiMe3)3}4] · 4,5 C7H8 ( 10 ) is formed which is analogous to the compounds 3 , 4 and 7 . In the presence of [PnBu4]I 8  reacts in THF to give the ionic compound [PnBu4]2[Zn6I6(AsSiMe3)4(thf)2] · C6H6 ( 11 ).  相似文献   

2.
By the reaction of alkali salts of triorgano-silanols, -silanethiols and trimethylsilylmethanol as well as of triorganosilyllithium compounds with tris(chloromethyl)amine, silyl derivatives of tris(hydroxymethyl)-, tris(mercaptomethyl)- and tris(methyl)amine were prepared.  相似文献   

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Zusammenfassung Die Darstellung der bisher unbekannten Verbindungen (CH3COO)3SiH und (CF3COO)3SiH wird beschrieben, ihre Schwingungs- und Kernresonanzspektren werden mitgeteilt. Die extrem liegenden Werte der Fluorverbindung werden im Zusammenhang mit den bisher bekannten Werten diskutiert.
Triacetoxy silane and tris(trifluoroacetoxy) silane
The preparation of the formerly unknown compounds (CH3COO)3SiH and (CF3COO)3SiH is described, their vibrational and NMR-spectra are reported. Some extreme values of the latter compound are discussed.


Mit 1 Abbildung

Herrn Prof. Dr.A. Wacek zum 75. Geburtstag gewidmet.  相似文献   

5.
Tris(trimethylsilyl)methaneselenenyl Halides and Chalcogenides . Ditrisyldiselenide ( 1 ) (trisyl = TSi = (Me3Si)3C) reacts with SOCl2, Br2 and I2 to provide trisylselenenyl halides TSiSeX ( 2 : X = Cl; 3 : X = Br, 4 : X = I). Insertion of S and Se into the Se? Se bond of 1 to yield (TSiSe)2Sn ( 5 : n = 1; 6 : n = 2) and (TSiSe)2Sen ( 7 : n = 1; 8 : n = 2) was catalysed by iodine. 5 was isolated in pure state and examined by X-ray diffraction. Triselenide 7 can be cleaved by I2 in CS2 to give 4 and Se2I2 ( 9 ). From 2 with Me3SiCN and Me3SiNCS, the new selenenyl pseudohalides TSiSeCN ( 10 ) and TSiSeSCN ( 11 ) were prepared. The compounds were characterised by 1H, 13C- and 77Se n.m.r. spectra.  相似文献   

6.
The vibrational spectra of Tris(trimethylsilyl)phosphane-d 0 and -d 27 as well as Tris(triphenylsilyl)phosphane are reported and assigned. A normal coordinate analysis has been performed. The resulting SiP valence force constants (190 and 200 N/m) are compared with the force constants of other silylphosphanes.
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7.
Halogeno- and Aminofunctional Tris(trimethylsilyl)silyl-silanes Lithium-tris(trimethylsilyl)silane 1 reacts with halogenosilanes to give thermally stable compounds of the type ( 2 – 11 ). The substitution of the bulky (trimethylsilyl)amino group occurs in reactions of 1 with aminofluorosilanes — ( 12 – 14 ). In excess 1 reacts with 2–14 under formation of (Me3Si)4Si. The substitution compounds 15–17 are obtained in the reaction of 3 and 9 with lithium salts of primary amines. The 1,3-diaza-2,4-disilacyclobutan 18 is formed by HF-elimination of 15 .  相似文献   

8.
Preparation and properties of N(HgCH3)3 are described and the mass spectrum. 1H-nmr spectrum and the vibrational spectrum (IR, RAMAN ) were recorded and assigned. In the solid state N(HgCH3)3 belongs to the point group C1, whereas in solution the molecule becomes more symmetric (C3v). On the contrary, the structure of the isoelectronic [O(HgCH3)3]+1 is trigonal planar (D3h). The vibrational spectrum of O(HgCH3)2 has been reinvestigated.  相似文献   

9.
Syntheses and Properties of Some New Tris(fluorophenyl)antimony and -bismuth Compounds. Crystal Structure of Tris(2,6-difluorophenyl)bismuth (2,6-F2C6H3)3Bi, (2,4,6-F3C6H2)3Bi, and (2,6-F2C6H3)3Sb are prepared via Grignard reactions with BiBr3 and SbBr3, respectively. The syntheses and properties of the new compounds and the crystal structure of (2,6-F2C6H3)3Bi are described. From the reaction of BiBr3 with Ag(OCOC6H3F2) the bismuth benzoate Bi(OCOC6H3F2)3 is formed in 83% yield. Attempts to prepare (2,6-F2C6H3)3Bi by decarboxylation of the bismuth benzoate failed.  相似文献   

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Lithium Bis(silyl)amides and Tris(silyl)amines Synthesis and Crystal Structures Lithiated di-tert-butylfluorosilylamine reacts with difluorosilanes by substitution ( 1, 2 ). The siloxy-( 3, 4 ) and tert-butyloxy-( 5 )-silylamines are formed in reaction of 1 and 2 with LiOR (R = SiMe3, CMe3). The lithium derivatives of 3 and 4 are dimers forming an (LiFSiN)2-eight-membered ring ( 6, 7a ). Using 12 crown-4 the amide and the coordinated lithium are forming free ions ( 7 c ). The lithium derivative of 5 ( 8 ) crystallizes as a dimeric LiF-adduct of an iminosilane, forming a LiF-four-membered ring. In thf 7 reacts with Me3SiCl by a fluorine/chlorine exchange and 9 is obtained. In 9 lithium is coordinated with nitrogen, oxygen and two thf molecules, forming an (SiNOLi)-four-membered ring. 6 and 7 react with fluorosilanes to give tris(silyl)amines 10 – 12 .  相似文献   

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Ohne ZusammenfassungMit 1 Abbildung77. Mitt.:U. Wannagat undM. Schulze, Z. Chem.8, 255 (1968).Vorläufige Mitt.:U. Wannagat, Angew. Chem.78, 648 (1966).Auszugsweise vorgetragen auf dem 155th National Meeting der American Chemical Society, San Francisco, April 1968.Sonderdrucke überU. W., D-33 Braunschweig, Pockelsstr. 4, Inst. für Anorg. Chem. der Techn. Universität.Mit Auszügen aus der DissertationO. Smrekar, Techn. Hochschule Graz 1969.  相似文献   

15.
Synthesis of Bis- and Tris(trimethylsilyl)-methyl-aminofluorosilanes Lithium-tris(trimethylsilyl)methane reacts with fluoro-silanes to give (Me3Si)3C—SiF2R ( 1—3 , R = F, C6H5, CMe3). 1 and 2 react with lithiated amines to aminofluorosilanes 4 a, 5 a, 6 a , and with a 1, 3-migration of a silyl group to the structure isomeric trimethylsilylaminofluorsilanes 4 b, 5 b, 6 b, 7, 8 . The disubstituted NH-compound 9 is obtained in the reaction of 1 with LiNH2.  相似文献   

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Monomeric Bis and Tris(amides) of Indium The synthesis of tris(2,2,6,6-tetramethylpiperidino)indium 1 and of bis(2,2,6,6-tetramethylpiperidino)indium bromide 2 are described. Both compounds were characterized by NMR and mass spectroscopy. They are monomeric in solution and gasphase. A crystal structure analysis of 1 , also described in this work, proofs monomeric 1 in the solid state, too.  相似文献   

19.
Preparation and Properties of Tris (diphenylamino) Phosphine The synthesis and some properties of tris(diphenylamino)phosphine are described. Displacement of the chlorine atom is readily achieved by reaction of (Ph2N)2PCl with Ph2NSime3. Thus tris(diarylamino)phosphine (Ph2N)3P is obtained almost in quantitativ yield. The aminolysis reaction of PCl3 or (Ph2N)2PCl with Ph2NH gives also (Ph2N)3P. The properties and structure of the phosphine on basis of spectroscopical and X-ray investigations are discussed.  相似文献   

20.
Preparation and Properties of New Tris(fluoroaryl)boranes B(2-FC6H4)3, B(4-FC6H4)3, B(2,6-F2C6H3)3 and B(C5F4N)3 are prepared from the reactions of RMgX with boron trifluoride, B(OC6F5)3 and B(SC6F5)3 from C6F5XH (X = O, S) and boron trichloride. The synthetic routes and the properties of these mainly new compounds are described.  相似文献   

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