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1.
Trichlorophosphazo-sulphurylchloride. Cl3P?N? SO2Cl, reacts with heptamethyldisilazane to yield the Si? N? P compound (I) formulated in ?Inhaltsübersicht”?. (I) reacts with PCl5 or C6H5? PCl4 forming the known 2,2,2,4,4,4-hexachloro-1,3-di-methylcyclo-diphosphazane(II), accompanied by the compound Cl3P?N? SO2Cl and C6H5? PCl2?N? SO2Cl, respectively, which were detected by means of 31P-NMR spectroscopy.  相似文献   

2.
On Trichlorophosphazo Compounds from Nitriles. III. The Reaction between Acrylonitrile and PCl3. The reaction of PCl3 with acrylonitrile at higher temperatures gives CH2Cl? CCl2? CCl2? N? PCl3 ( II ). On pyrolysis of (II), CH2Cl? CCl2? CN (IV) is form- ed. Treatment of (II) with SO, results in CHzCL? CCl2? CCl?N-P(0)Cl2 ( III ). At lower temperatures and/or in the presence of PCl3, acrylonitrile reacts with PCl3 to give the cis/ trans isomers VIa and VIb .  相似文献   

3.
Diphenylthiosemicarbazide reacts with PCl3 to form the fivemembered cyclic system Ia (see ”?Inhaltsübersicht?), whereas with PCl5 the compound II is formed. With PCl5 Ib is formed from Ia, with Cl2 II.  相似文献   

4.
Synthesis and Properties of Lineary Phosphorylchlorphosphazenes The phosphorylchlorphosphazenes, Cl2(O)P—[N?PCl2]n—Cl, (n = 1, 2, 3) react like POCl3 with hexamethyldisilazan forming silylamides, Cl2(O)P—[N ? PCl2]n—NHSi(CH3)3, (n = 0, 1, 2, 3). From these are obtained the phosphorylchlorphosphazenes by reaction with PCl5 containing one group —N ? PCl2 more.  相似文献   

5.
The compound [HCCl=C(NPCl3)(PCl3)[PCl6], VI, is formed in the reaction between acetonitrile and PCl5. Reaction of H2S with VI results in the formation of the chloride and by further reactions of this chloride with BCl3 and SbCl5 the tetrachloroborate and hexachloroantimonate salts respectively, are obtained. Chloroacetonitrile can be made to react with PCl5 to give HCCl?C(NPCl3)Cl, II, by use of suitable conditions. There is no indication that mixtures of cis/trans isomers of VI or II exist as has been previously postulated. The 1H and 31P NMR spectra of the above-mentioned compounds and numerous further products from the reactions of CH3CN, ClCH2CN and Cl2CHCN with PCl5 are discussed in detail. II occurs in a cisoid and a transoid conformation.  相似文献   

6.
This review deals with the phosphonate–phosphonochloridate conversion. The different phosphorus-chlorine bond forming reagents – COCl2, (COCl)2, SOCl2, PCl5, POCl3, Ph3PCl2, trichloro(o-phenylenedioxy)phosphorane – and the reaction conditions that they impose are considered.  相似文献   

7.
Reaction of CH3NH2 · BF3 and PCl5 yields CH3N(PCl3)(BCl3), (I), the behaviour of which to PCl5, pyridine and H2S is described. By using smaller amounts of PCl5, CH3N(PCl3)(BCl2F) (VI) is obtained. C6H5NH2 · BF3 reacts with PCl5 to give C6H5N(PCl3)(BCl3) (IX). Physical data, especially the NMR spectra of the new compounds, are given and discussed.  相似文献   

8.
Interaction between cyanamide and PCl5 in the mole ratio 1:3 yields the phosphazenium salt [Cl3P?N? C(Cl)?N? PCl3] [PCl6]. The reaction of sodium dicyanimide and PCl5 gives 1. 1. 3. 5-tetrachloro-1-phospha-2. 4. 6-triazine (compound B in ?Inhaltsübersicht”?). Dicyandiamide and PCl5 (1:2) give compound C and, at milder conditions the salt-like phosphatriazine D. Solvolysis of C with formic acid or of D with sulphur dioxide yields E.  相似文献   

9.
On reacting of oxamide with PCl5 the syntheses of the new N-, C- and pentavalent phosphorus containing heterocycles I and II (see “Inhaltsübersicht”), built up from interconnected four- and fivemembered ring systems, have been achieved. Reaction of N, N′- dimethyloxamide with PCl3 yields the compound III which may be chlorinated to IV. An intermolecular reaction between the PCl3- and carbonyl groups of IV gives V. The fivemembered ring systems III and V may each be linked together via N? CH3 bridges, i. e. via P? N(CH3)? P and P(O)? N(CH3)? P(O) units, respectively. N, N′- dimethyloxamide reacts with PCl5 to form a mixture of fivemembered heterocycles containing trivalent phosphorus (as a PCl group) and chlorinated carbon.  相似文献   

10.
Reaction of Adipic Acid Diamide with Phosphorus Pentachloride The reaction of adipamide (I) with phosphorus pentachloride in a solvent leads to (Cl3P?NCCl2CCl2CH2)2 (II). The stages of the reaction are: 1. chlorination of the keto and methylen groups 2. formation of the ? N?PCl3 group. This result is a supplement of the existing conception about the course of the reaction of carboxylic acid amides with phosphorus pentachloride. The reaction of (I) with PCl5 without any solvent has been reproduced and the course of reaction has also been investigated. This reaction gives mainly NC(CH2)4CN. The resulting product of a careful hydrolysis of (II) is (Cl2OPN?CClCl2CH2)2. A total hydrolysis gives back (I).  相似文献   

11.
On Phosphazo Compounds from Nitriles. IV. The Reaction of Tri, Di, and Monochloroacetonitrile with [Cl3P?N? PCl3]Cl. Improved Preparation of [Cl3P?N? PCl3]Cl Trichloroacetonitrile reacts with P2NCl7 to give Cl3C? CCl2? N?PCl2? N?PCl3 I , dichloroacetonitrile to give Cl2C?CCl? N?PCl2? N?PCl3 II , and chloroacetonitrile to give the ring compound III . Preparation, n.m.r. and mass spectra of the new compounds are described. The mechanism of formation is discussed. An improved procedure for the preparation of P2NCl7 is given.  相似文献   

12.
Zusammenfassung Monomere Phosphinimine der allgemeinen Formel C6H5N= =PCl n (NEt2)3-n (n=0,1,2) lassen sich (I) aus dimerem Phenylimino-phosphorsäure-trichlorid und Diäthylamin in Gegenwart eines Chlorwasserstoffakzeptors und (II) durch Reaktion der Phosphine PCl n (NEt2)3-n mit Phenylazid darstellen. Die Phosphorane Et2NPCl4, (Et2N)2PCl3 und (Et2N)3PBr2 reagieren mit Anilin nicht zu Phenylimino-Verbindungen. Durch alkalische Hydrolyse von C6H5N=PCl(NEt2)2 entsteht das Phosphorsäure-bis[diäthylamino]-anilid. Die IR- und1H- und31P-NMR-Spektren der Verbindungen werden mitgeteilt.
Monomeric phosphinimines of the general formula C6H5N= =PCl n (NEt2)3-n (n=0,1,2) are formed (I) from dimeric phenyliminophosphoricacid-trichloride and diethylamine in the presence of a HCl-acceptor and (II) by reacting the phosphines PCl n (NEt2)3-n with phenylazide. The phosphoranes Et2NPCl4, (Et2N)2PCl3 and (Et2N)3PBr2 do not give the corresponding phenylimines with aniline. Alkaline hydrolysis of C6H5N= =PCl(NEt2)2 gives bis[diethylamino]-anilido-phosphinoxid. IR-,1H- and31P-NMR-spectra are given.


Mit 1 Abbildung  相似文献   

13.
Reaction Products of Chloromethoxiphosphines and Antimony (V) Chloride. Vibrational Spectra of the 1:1-adducts of Methoxiphosphoryl Compounds and Antimony (V) Chloride Chloromethoxiphosphines react with antimony(V) chloride in a redox process to yield the chloromethoxiphospllonium hexachloroantimonates(V) (CH3O)3PCl2+SbCl6? (II) and CH3OPCl3+SbCl6? (III). II, III, (CH3O)3PCl+SbCl6?(1) and (CH3O)4P+SbCl6? eliminate easily methyl chloride and give the addition compounds OP(OCH3)3·SbCl5(IV), OPCl(OCH3)2 · SbCl5 (V), OPCl2(OCH3)·SbCl5 (VI) and OPCl3·SbCl5 (VII). The vibrational spectra of IV, V nnd VI are discussed.  相似文献   

14.
Synthesis of Lineary and Branched Phosphazenes from N-silylated Phosphoryl Amides The use of N-silylated phosphoryl amides in the reaction with PCl5 favours the KIRSANOV reaction and reduces undesirable substitution reactions. However, silylated monoamides, X2P(O)NHSiMe3 (X = OEt, NEt2), do not give the expected trichlorophosphazenes but the isomeric N-dichlorophosphoryl phosphazenes, Cl2P(O)? N?PClX2, which are also formed in the reaction of (EtO)2P(O)NCl2 with PCl5. As the first phosphoryl-P, P-bis(trichlorophosphazene) (EtO)P(O)(N?PCl3)2 could be obtained in the reaction of PCl5 with the silylated diamide (EtO)P(O)(NHSiMe3)2. Tris reactivity of silylated amides to P? Cl compounds decreases in the row PCl5 > POCl3 > CIP(O)(OEt)2 > ClP(O)(NEt2)2. In the reaction with phosphoryl chlorides the preferred formation of compounds with P? NH? P bridges could not be observed.  相似文献   

15.
Abstract

The reactions of the hexachloro γ5-diazadiphosphetidine, [(MeN)PCl3]2 (I) with NaOR′ (R = Ph or CH2CF3) lead to the isolation of the hitherto unprecedented hexa-(alkoxy)/(aryloxy) derivatives, [(MeN)P(OR′)3]2 (II) which have been characterized by mass spectrometry and NMR (1H and 31P) spectroscopy. The structure of the trifluoroethoxy derivative (II, R′ = CH2CF3) has been confirmed by single crystal X-ray analysis. Analogous reactions of the N-phenyl derivative [(PhN)PCl3]2 afford only the monophosphazenes, PbN=P(OR′)3. Aniline reacts with I in a Kirsanov type of reaction accompanied by ring opening to give a bis(phosphineimino)diphosphazane derivative, (PhN=)(NHPh)(NHMe)PN(Me)-P(NHPh)2(=NPh). The X-ray crystal structure of a related cyclic derivative trans-[PhNP(NMe2)(=NPh)]2 has been determined. The N2P2 ring and the aryl groups attached to the ring nitrogen atoms are coplanar; the exocyclic P=N bond (151.8 pm) is much shorter than the other P-N bonds (162.5, 169.8 pm).  相似文献   

16.
MoCl4, ReCl4, and ReCl5 react with PCl5 in sealed glass ampoules at temperatures between 220° and 320° to [PCl4]2[Mo2Cl10] ( 1 ) [PCl4]2[Re2Cl10] ( 2 ), and [PCl4]3[ReCl6]2 ( 3 ). 2 crystallizes isotypically to the previously reported 1 and the respective titanium and tin containing analogues. The structure (triclinic, P1, Z = 1, a = 897.3(2), b = 946.0(2), c = 687.13(9) pm, α = 95.59(2)°, β = 95.80(2)°, γ = 101.07(2)°, V = 565.4(2) 106 pm3) is built of tetrahedral [PCl4]+ and edge sharing double octahedral [Re2Cl10]2– ions and can be derived from a hexagonal closest packing of Cl ions with tetrahedral and octahedral holes partially filled by P(V) and Re(IV), respectively. 3 crystallizes isotypically to [PCl4]3[PCl6][MCl6] (M = Ti, Sn) (tetragonal, P 42/mbc, Z = 4, a = 1496.2(1), c = 1363.2(2) pm). Because no evidence was found for the presence of [PCl6] ions, Re in 3 has to be of mixed valency with ReIV and ReV sharing the same crystallographic site. The structure can be derived from a cubic closest packing or alternatively from an only sparsely distorted body centered cubic arrangement of Cl ions which is rarely found for anion arrays. The tetrahedral and octahedral holes are partially filled by PV and MIV/V, respectively. Magnetic measurements show all three compounds to be paramagnetic and confirm the oxidation state IV for Mo and Re in 1 and 2 and the mixed valence (IV/V) for Re in 3 .  相似文献   

17.
Tris-chloromethyl-phosphine oxide, (ClCH2)3 P?O(I), is obtained by chlorination of (HOCH2)3P?O with PCl5 or (C6H5)3PCl2, and also by oxidation of (CICH2)3P?O and (ClCh2)2(CH3)P?O. High yields of tris-(dialkyloxyphosphonly-methyl)-phosphine oxides, [RO2(O)PCH2]2P?O (II) (R?CH3, C2H5, iso-C3H7, n-C4H9, 2- ethyl-hexyl), tris (alkyloxyphosphinyl-methyl)-phosphine oxides, [R2(O)PCH2]3P?O(R = C6H5, CH3) are obtained by heating tris-chloromethyl-phosphine oxides, [(RO) (R′) (O)PCH2]3P?O (R = C4H9, R′? C6H5) and tris-(oxophosphoranyl-phosphine oxides with phosphites, phosphonites and phosphinites, respectively, at 170–180°C for several hours. Compounds II possess an extraordinarily high absorption capacity. Thus a warm. 2% solution of II (R = C2H5) in benzene solidifies completely on cooling so that no benzene can be poured off. Tris-dihydroxyphosphonyl-methyl)-phosphine oxide, [(HO)2(O)PCH2]3P?O, obtained by hydrolysis of II (R ? C2H5) with refluxing conc. HCl or by thermal decomposition of II (R ? iso-C3H7) at 190°, titrates in aqueous solution as a hexabasic acid with breaks at pH = 4,4 (three equivalents) and pH = 10,7 (three equivalents). It forms crystalline salts with amines, alkali and alkaline earth metals, and is an excellent chelating agent. The 1H- and 31?P-NMR. spectra of all the compounds prepared are discussed.  相似文献   

18.
Methyl Dichlorophosphates of Tin and Lead The compounds (CH3)3M(O2PCl2) (I), (M = Sn, Pb) and (CH3)2Sn(O2PCl2)2 (II), formed by the reaction of the corresponding methyltin and methylleadchlorides with P2O3Cl4 are described. The IR and Mössbauer spectra suggest that the tin compounds are polymerized through O? P? O bridges, whereby (I) and (II) contain metal atoms with coordination numbers five (D3h) and six (D4h), respectively.  相似文献   

19.
A New Contribution to the Phosphazo Reaction The reaction of acrylonitrile with phosphorus pentachloride gives ClCH2CCl2CCl2NPCl3 (I) and a hexachlorophosphate with the composition C3H2Cl14NP3 (II). For the first time the structure of (II) has been exactly determined by using 1H- and 31P-NMR-spectra. The course of reaction was studied in detail. 3-chloropropionitrile has been found as the product of a secondary reaction. The reaction of butyramide with PCl5 has also been investigated, and was found to be analogous.  相似文献   

20.
Dichlorophosphates of the Divalent Transition Metals Manganese, Iron, Cobalt, Nickel, and Copper The dichlorophosphates M(O2PCl2)2 · 2 POCl3 with M = Mn, Fe, Ni and Co(O2PCl2)2 are prepared from the metal acetates and POCl3, whereas Cu(O2PCl2)2 only yields from the formiate and P2O3Cl4. The finely distributed metals Fe, Co, and Ni react with excess dichlorophosphoric acid. forming the complexes M(O2PCl2)2 · 2 HOPOCl2. According to the vibrational spectra, the metal atoms are linked to polymeric 8-ring structures by O? P? O bridges. Moreover the dichlorophosphoric acid solvates are stabilized by hydrogen bridges.  相似文献   

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