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1.
Abstract

Several 2-pyridyl sulfides (1) (e.g., methyl (1a), ethyl (1b), isopropyl (1c), benzyl (1d), 1-phenylethyl (1e), l-menthyl (If) 2-pyridyl sulfides; and bis(2-pyridylthio)methane (1g), and methyl 2-(N-oxy-pyridyl) sulfide (1h) were prepared by the usual method. Sulfoxides (2) were prepared by oxidation of the corresponding sulfides with m-chloroperbenzoic acid in good yields. A few sulfoxides were found to work as phase-transfer catalysts for some typical nucleophilic reactions in nonpolar solvents such as benzene, and in two-phase systems such as benzene-water. S-2-Pyridyl-N-(p-toluenesulfonyl) sulfilimines (3) were prepared upon treatment of sulfides with Chloramine-T. Hydrolysis of N-(p-toluenesulfonyl)-2-pyridyl-o-tolylsulfilimine (3i) with conc. sulfuric acid gave the corresponding free sulfilimine in a moderate yield. S-2-Pyridyl sulfoximines (4) were not obtained by the general method from the sulfoxides and hydrazoic acid. Alkyl-2-pyridyl sulfoximines, however, were obtained by oxidation of the free sulfilimines derived from the corresponding aminosulfonium salts (5) prepared by reaction of the sulfides with mesitylene-sulfonylhydroxylamine (MSH). These free sulfilimines and sulfoximines thus prepared were found to give adducts with a few copper salts.  相似文献   

2.
Nitrodiene 1 reacted with 2a, b and gave the novel compounds 3a, b, 4a, b, and 5a. Monosubstituted diene compound 3a gave the compounds 9a with morpholine, 11a with piperidine, and 13a with homopiperazine. Compound 3a gives the thioether compound 15 by the reaction with the dithiol (HS─(CH2)2─O─(CH2)2─SH) in ethanol containing sodium hydroxide.  相似文献   

3.
Metal-assisted heterocyclic ligand syntheses are reported using 2-H-azaphosphirene complex 1 or 7-phosphanorbornadiene complex 7 as starting material. Thermal decomposition of complex 1 led to 1,2dihydro-1,2,3-azadiphosphete complex 2, which was transformed into 2,6-dihydro-1,3,2,6-diazadiphosphinines 5a, b via ring expansion with carbonitriles 3a, b. Insertion of tert-butyl isonitrile into the P─ P bond of 2 at ambient temperature furnished the first Δ 1 -1,3,5-azadi-phospholene complex 6─P bond of 2 using 7 failed. The 1,2,3,4-azatriphospholene complexes 9a, b were obtained by thermolysis of complex 2 in the presence of functionalized carbonitriles 8a, b.  相似文献   

4.
Abstract

1-Cyano-isothiochromane (1a) can be alkylated in position 1, using the carbanion that is formed from sodium amide, sodium hydride, or n-butyllithium. With methyl iodide or ethyl iodide 1c and 1d are formed; with α-halogenated ether or thioether, 1e and 1f; with propargyl bromide, 1h; with bromo acetophenone, li; and with ethyl chloroacetate, 1k. Similarly, acylation with benzoyl chloride leads to 11, and with 2,4-dinitrofluorobenzene to 1m. The alkylation products of 1a can be oxidized with peracids to the sulfones 2 and with LiAlH4 reduced to 1-aminomethyl-isothiochroman (3): Acid hydrolysis of 1 gave isothiochromane-1-carboxylic acids, 4, whereas when 1 is treated with hydrogen peroxide in alkaline medium the S-dioxide and the S-oxide acid amides, 5 and 6 respectively, are formed.  相似文献   

5.
Abstract

The three isomers possible for oxidized 1,1-dialkyl-2,2-dialkoxydiphosphines, R2(O)P–P(OR')2 1, R2P–O–P(OR')2 2, and R2P–P(O)(OR')2 3, have been synthesized. Irreversible transformations of 1 to 2 and 2 to 3 have been found and the rearrangement patterns, the role of electrophilic and nucleophilic catalysts are discussed. The fact that 3 is more stable than 1 is attributed to higher donor activity of the ligands attached to the four-coordinate phosphorus in 3. Acid chlorides have been shown to attack the phosphorus atom of ambident anions of trivalent phosphorus acids (the products are 1 and 3) whereas the acids proper react with the acid halides at the oxygen atom, to give 2.  相似文献   

6.
《Analytical letters》2012,45(15):941-945
Abstract

A gas-liquid chromatographic system was developed for separation and measurement of residue quantities of propanethiol, propylamine, dipropylamine, and propanol. The 9% Amine 220 on Chromosorb W column with flame ionization detection was utilized for levels of 200 nanograms.  相似文献   

7.
8.
Abstract

A series of new dibenzophosphoranes (1-6) bearing uncommon functions such as hydroxy-, alkoxy-, oxo-, amide- and dihydride- attached to the phosphorus atom have been prepared and characterized. The reactivities of the alkoxy derivative 1 and the amide 2 towards alcohols, amines, water and borane were studied mainly by 31P NMR. The structure of the diphenoxyamine-bis-phoshorane 4 was established by single crystal X-ray diffraction studies.  相似文献   

9.
Abstract

Di-, and trimethylphosphites react with enaminolactone, 4, only in methanol to give N-benzoyl-3-phenyl-3-phosphonoalanine-trimethylester (7) in good yields. Diphenylphosphinodithioic acid also reacts with 4 to give N-benzoyl-3-phenylcysteine-methyl ester-diphenylphosphinodithioate (9). A mechanism is proposed to account for the formation of 7. Compatible analytical and spectroscopic results were obtained for the new compounds.  相似文献   

10.
Abstract

A new vicinal dioxime, l,15-bis(hydroxyimino)-2,14-dithia-5,8,11-trioxacyclopentadecane (H2L) was synthesized by the reaction of (E,E)-dichloroglyoxime (1) with 1,11-dithio-3.6.9-trioxaundecane (2). Mononuclear copper(II) complexes with a metal/ligand ratio of 1/2 were prepared. The two ligands coordinate to copper(II) through the deprotonated oximate oxygens which then afford the trinuclear structure bridged by the oximate groups with 1,10-phenan-throline or 2,2′-dipyridyl as the end-cap ligand.  相似文献   

11.
Abstract

Three zinc(II) complexes, [Zn(bipy)(dmit)]2 (1), [Zn(phen)(dmit)]2 (2) and Zn(py)(mnt) (3), where bipy = 2,2′-bipyridine, phen = 1,10-phenanthroline, py = pyridine, H2dmit = 4,5-dimer-capto-1,3-dithiol-2-thione, mnt = maleonitriledithiolate, have been synthesized and their crystal structures determined. Complex 1 is monoclinic, space group P21/c, with a = 11.570(3), b = 9.137(3), c = 15.051(6)Å, β = 109.56(2)°, Z = 2 and was refined to R 1 = 0.039. Complex 2 is monoclinic, space group P21/n, with a = 9.363(2), b = 13.732(3), c = 12.767(3), β = 94.06(3)°, Z = 2 and was refined to R 1 = 0.038. Complex 3 is orthorhombic, space group P212121, with a = 8.621(3), b = 10.546(4), c = 16.848(2), Z = 4 and was refined to R 1 = 0.040. IR and electronic absorption spectra were investigated.  相似文献   

12.
Abstract

The following β-ketoamides and β-ketothioamides were prepared through Stork reaction.3–6  相似文献   

13.
Compounds 3a–k were obtained from the reactions of compounds 1a–k with homopiperazine (2) in CH 2 Cl 2 . Compounds 1a–b, 1d–f, and 1h–l gave compounds 5a–b, 5d–f, and 5h–l with 2-methylpiperazine (4) in dichloromethane. Compounds 7c and 9c were obtained from the reactions of compound 1c with 4-ethoxycarbonyl piperazine (6) and 4-piperidinol (8) in CH 2 Cl 2 . Compounds 1a and 1f gave compounds 11a and 11f with 4-methylpiperazine (10), and compound 13f was obtained from the reactions of compound 1f with 4-methylpiperidine (12) in CH 2 Cl 2 .  相似文献   

14.
《合成通讯》2013,43(22):3399-3405
ABSTRACT

A general and highly convenient procedure for the synthesis of 3-heteroaryl and 3-aryl substituted-1H-indazoles has been developed. These compounds (3a–f) were synthesized in good yield by refluxing the NaHSO3 adduct of heteroaromatic and aromatic aldehyde and phenyl hydrazine in DMF. This procedure is more general and shorter than earlier methods. Five new 3-hetero-aryl substituted-1H-indazoles were synthesized and characterized. New Mannich derivatives of 3-(1H-pyrrol-2-yl)-1H-indazole (3a) and 3-(1H-indol-3-yl)-1H-indazole (3b) were prepared from morpholine and formaldehyde.  相似文献   

15.
New halo compounds of Si, P, As, and Sb, potential precursors of doubly-bonded derivatives of these elements, have been synthesized: dichloro-and difluorosilanes 2–6 bearing a methylfluorenyl group and a second substituent of various size (Me, Ph, Mes, R2CMe); dichlorophosphines 13 and 14, fluoro- and difluoroarsines 15 and 16 and fluorostibine 17, substituted by the diphenyl (or dimesityl) phosphinofluorenyl group. Phosphine oxide and sulfide 9 and 10 also have been prepared.

  相似文献   

16.
Abstract

The reactions of S,S' methyl cyanodithioimidocarbonate with potassium hydroxide in alkyl or benzyl alcohol furnished the O-alkyl and benzyl O-potassium cyanoimidocarbonates (1–5). The reaction of the potassium salts (1,3, or 4) with a 10% excess of alkyl, allyl or benzyl halides afforded the unknown titled carbamates (6–17). The reaction of 2 with 10% excess benzyl bromide or 5 with 10% excess methyl iodide gave the same product, N-benzyl-N-methyl cyanamide (18). The reactions of 2 with 10% and 55% excess allyl bromide afforded N-allyl-N-methyl cyanamide (19) and N,N-diallyl cyanamide (20), respectively. The reaction of 3 with 28% excess of allyl iodide furnished N-allyl-N-propyl cyanamide (21).

Possible mechanisms and supporting NMR, IR and mass spectra data are discussed.  相似文献   

17.
Abstract

This review summarizes the data for over five hundred and fifty six-, seven- and eight-coordinate Cu(II) coordination compounds. The six-coordinate derivatives are mostly distorted tetragonal (elongation along a single C 4 axis). The seven-coordinate derivatives are only penta-gonal-bipyramidal with different degrees of distortion and the eight-coordinate complexes are dodecahedral. The most common ligands are O- and N-donors. There is a trend for the Cu-L distance to increase with covalent radius of the coordinated atom and also increasing coordination number. In general, Cu(II) compounds “prefer” a monoclinic class and are blue or green. Several relationships were found and discussed. The data are compared and discussed with those of four- and five-coordinate Cu(II) compounds.  相似文献   

18.
Abstract

The 1:1 molar ratio reaction of p-phenylenediamine with isonitrosoacetylacetone in chloroform led to the formation of the half unit ligand (HL); (1). Two types of the trans octahedral (L)2Ni 2H2O complex were characterized; the green molecular complex (2) and the associated supramolecular dark brown complex (3). Molecular association in (3) took place via inter-molecular hydrogen bonding between the amino group of a molecule and the oxygen sites of an adjacent molecule. The 1:1 molar ratio reactions of (2) with the metal acetates M(OAc)2 (M = divalent nickel, copper or cobalt) produced the self-assembly structure (4) whereby the metal acetate is coordinated to the amino groups of the nickel(II) complex. Reaction of the dinuclear (4) with another metal acetate (1:1 molar ratio) gave the trinuclear terminated structure (5). Similar reactions of (3) with nickel acetate (1:1 or 1:2) led to formation of complexes with metallosupramolecular structures. An antiferromagnetic interaction between the peripheral and central paramagnetic units was observed from those complexes with copper(II) at the peripheral location. In all these cases the metal ions are bridged via the aromatic Schiff-base moiety. The suggested structures of the mono-, di- and trinuclear coordination compounds are in accordance with the analytical, spectral and magnetic moment data.  相似文献   

19.
Abstract

The conformation of the heterocyclic eight-membered ring in 16H-dinaphtho and 12H-dibenzo [d,g][1,3,2]dioxasilocine was investigated in solution by 1H NMR spectroscopy. The barrier to ring inversion in the 16H-dinaphtho compound 3a was found to be 8.6±0.2 Kcal/mol and for the 12 H-dibenzo compound 4a, 8±0.2 Kcal/mol. Molecular mechanics calculations show three energy minima conformations for both compounds, boat chair(BC), twist boat(TB) and twist boat boat(TBB). Twist boat form is estimated to be the global minimum for the dibenzo compounds while TBB is the global conformation of the dinaphtho compounds. The result of molecular mechanics calculations are supported by analysis of the 1H-NMR spectra.  相似文献   

20.
Stereochemistry (absolute or relative) of four compounds have been established by x-ray diffraction analysis, namely: 3(R)-[4′(R)-(phenyl) oxazolidin-2-one-1-yl]-4(S)-dimethoxyphosphoryl-4-methoxycarbonyl-1-cyclohexene (7), 3(R)-[4′-(R)-(phenyl)-oxazolidin-2-thione-1-yl]-4(S)dimethoxyphosphoryl-4-methoxycarbonyl-1-cyclohexene (8), methyl 1dimethoxyphosphoryl-2-succinimido-3,4-epoxy-cyclohexane-1-carboxylate (9), and 3-succinimido-4-methylcarbonyl-5-dimethoxyphosphoryl-1-cyclohexene (10). The ring conformations deduced from NMR analysis were thus fully confirmed.  相似文献   

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