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1.
On Chalcogenolates. 94. Studies on Trithioallophanic Acid. 3. Esters of Trithioallophanic Acid. The esters of trithioallophanic acid H2N? CS? NH? CS(SR) with R = CH3, CH2C6H5 have been characterized by means of electron absorption spectra, infrared spectra, 1H NMR spectra, and mass spectra.  相似文献   

2.
On chalcogenolates. 138. Studies on Dialkyl Esters of Chalcogenocarbonic A cids. 1. O, Se-Dialkyl Monoselenocarbonates The esters RSe? CO? OR′ with R = R′ = C2H5 as well as with R = nC3H7 and R′ = CH3, C2H5 have been prepared by reaction of sodium alkane selenolates with alkyl esters of chloroformic acid. The compounds have been characterized by means of electron absorption, infrared, nuclear magnetic resonance (1H, 13C, and 77Se), and mass spectra.  相似文献   

3.
On Chalcogenolates. 137. Alkyl Esters of Isothiocyanoformic, Isothiocyanomonothioformic and Isothiocyanodithioformic Acids The esters RO? CO? NCS, where R = CH3, C2H5, as well as RS? CO? NCS and RS? CS? NCS with R = C2H5, nC3H7 have been prepared by three different methods. The reaction between the corresponding chloro compound and KSCN in the presence of the phase transfer catalyst 18-crown-6 gives the highest yields. The electron absorption, infrared, nuclear magnetic resonance, and mass spectra of these compounds are reported.  相似文献   

4.
On Chalcogenolates. 205. Reaction of Acetamide with Carbon Disulfide. 2. Esters of N-Acetyl Dithiocarbamic Acid The prepared yellow esters of N-acetyl dithiocarbamic acid H3C? CO? NH? CS? SR with R = CH3, C2H5 have been characterized by means of mass, electron absorption, infrared, and nuclear magnetic resonance spectra.  相似文献   

5.
On Chalcogenolates. 203. Derivatives of Selenodithioallophanic Acid. 2. Preparation and Properties of Alkyl Esters Synthesis and properties of selenodithioallophanic acid esters H2N? CSe? NH? CS? SR where R = CH3, C2H5 as well as their characterization by means of electron absorption, infrared, and nuclear magnetic resonance spectra are described.  相似文献   

6.
On Chalcogenolates. 127. Diesters of Cyanimino Diformic Acid NC? N(CO? OR)2, where R = CH3, C2H5, and C6H5. Thiolysis of these Diesters The diesters NC? N(CO? OR)2 have been prepared by reaction of the sodium salt of cyanamide with the corresponding chloroformic acid ester. The thiolysis of these esters yields H2N? CS? NH? CO? OR. The compounds with R = CH3, C2H5, and C6H5 have been characterized by means of diverse methods.  相似文献   

7.
On Chalcogenolates. 139. Studies on Dialkyl Esters of Chalcogenocarbonic Acids. 2. O,Se- and S, Se-Dialkyl Monothiomonoselenocarbonates The hitherto unknown esters RSe? CS? OR′, where R = C2H5, nC3H7 and R′ = C2H5, nC3H7, are formed by reaction of NaSeR with Cl? CS? OR′ and of RSe? CS? Cl with HOR′. At the first time, the esters RSe? CO? SR′ with R = R′ = C2H5, nC3H7 have been prepared by reaction between NaSeR and Cl? CO? SR′. The compounds have been characterized by means of diverse spectroscopic methods.  相似文献   

8.
Esters of the trimeric dithioformic acid [HCS(SR)]3 were prepared by interaction of K[HCS2] with alkyl iodides (R = CH3, C2H5). Orthoesters HC(SR)3 and di-orthoesters of the monomeric dithioformic acid were formed by reaction of formic acid with thioles (RSH mit R = CH3, C2H5, CH2C6H5) or dithioles (HS? (CH2)n? SH with n = 2, 3,4). The prepared compound were characterised by different methods.  相似文献   

9.
On Chalcogenolates. 156. Reaction of N-Methyl Formamide with Carbon Disulfide. 3. Alkyl Esters of N-Methyl N-Formyl Dithiocarbamic Acid The hitherto unknown esters of N-methyl N-formyl dithiocarbamic acid H? CO? NCH3? CS? SR, where R = CH3 and C2H5, have been characterized by means of electron absorption, infrared, nuclear magnetic resonance (1H and 13C), and mass spectra.  相似文献   

10.
On Chalcogenolates. 85. Studies on Hemiesters of Trithiocarbonic Acid 3. Vibrational Spectra of Alkyl Thioxanthic Acids and Hydrogen Bondings in the Free Acids The IR spectra of alkyl thioxanthic acids RS? CS(SH) with R = CH3, C2H5, nC3H7, iC3H7, nC4H9, sC4H9, tC4H9, and CH3S? CS(SD) as well as the Raman spectrum of the Compound with R = CH3 have been assigned. The formation of hydrogen bondings in the free acids has been studied by means of i.r. spectra, 1H-n.m.r. spectra, and electron absorption spectra. The energies of the hydrogen bondings have been calculated.  相似文献   

11.
On Chalcogenolates. 140. Studies on Dialkyl Esters of Chalcogenocarbonic Acids. 3. S,Se-Dialkyl Dithiomonoselenocarbonates. Evidence for the Existence of Alkyl Selenoxanthates [S2C? SeR]? The esters RSe? CS? SR′ with R = R′ = C2H5, nC3H7 as well as with R = nC3H7 and R′ = C2H5 have been produced by three different methods. The compounds have been characterized by means of electron absorption, infrared, nuclear magnetic resonance (1H, 13C, and 77Se), and mass spectra. The unstable alkyl selenoxanthates M[S2C? SeR], where M = Na, K and R = C2H5, nC3H7, are formed by reaction of carbon disulfide with the corresponding alkane selenolate. Freshly prepared they react with alkyl iodides R′I to yield RSe? CS? SR′.  相似文献   

12.
On Chalcogenolates. 81. Studies on N-Hydroxy Dithiocarbamic Acid. 3- Esters of N-Hydroxy Dithiocarbimic Acid and Dithiocarbamic Acid The reaction between hydroxylamine, carbon disulfide, and alkyl halide leads to the corresponding ester of N-hydroxy dithiocarbimic acid HO? N?C(SR)2 with R = CH3, C2H5; R2 = ? CH2? CH2? . The phenyl ester of N-hydroxy dithiocarbamic acid HO? NH? CS(SC6H5) has been prepared by reaction of hydroxylammonium chloride with the phenyl ester of chlorodithioformic acid. N-Methyl hydroxylammonium chloride reacts with carbon disulfide and alkyl iodide to form the corresponding ester of the dithiocarbamic acid HO? N(CH3)? CS(SR) with R = CH3, C2H5. The unstable compounds have been characterized by different methods.  相似文献   

13.
The trisulfinic esters of germanium RGe(O2SR′)3 (R = R′ = CH3; R = C6H5, R′ = CH3, C2H5), which are sensitive to hydrolysis and temperature, are obtained by reaction of the corresponding trichlorides RGeCl3 with anhydrous silver sulfinates. Aromatic trisulfinic esters as well as tetrasulfinic esters of germanium could not be obtained because of steric reasons. The esters, in which the RSO2?-residues are linked to germanium via oxygen, are investigated on the basis of their 1H NMR, mass, IR and Raman spectra.  相似文献   

14.
On Chalcogenolates. 83. Studies on Hemiesters of Trithocarbonic ACld. 1. Preparation and Properties of Thoxanthates Thioxanthates of alkli metals K[S2C? SR] · H2O with R = CH3, C2H5, nC3H7, iC3H7, sC4H9, tC4H9 M[S2C? S-nC4H9] · H2O with M = Na, K, Rb, Cs have been prepared by reaction of alkanethiols with OS2 and the corresponding hydroxide. The i.r. spectra, electron absorption spectra, and 1H-n.m.r. spectra have been assigned.  相似文献   

15.
Metal Complexes of Biologically Important Ligands, CLVII [1] Halfsandwich Complexes of Isocyanoacetylamino acid esters and of Isocyanoacetyldi‐ and tripeptide esters (?Isocyanopeptides”?) N‐Isocyanoacetyl‐amino acid esters CNCH2C(O) NHCH(R)CO2CH3 (R = CH3, CH(CH3)2, CH2CH(CH3)2, CH2C6H5) and N‐isocyanoacetyl‐di‐ and tripeptide esters CNCH2C(O)NHCH(R1)C(O)NHCH(R2)CO2C2H5 and CNCH2C(O)NHCH(R1)C(O)NHCH (R2)C(O)NHCH(R3)CO2CH3 (R1 = R2 = R3 = CH2C6H5, R2 = H, CH2C6H5) are available by condensation of potassium isocyanoacetate with amino acid esters or peptide esters. These isocyanides form with chloro‐bridged complexes [(arene)M(Cl)(μ‐Cl)]2 (arene = Cp*, p‐cymene, M = Ir, Rh, Ru) in the presence of Ag[BF4] or Ag[CF3SO3] the cationic halfsandwich complexes [(arene)M(isocyanide)3]+X? (X = BF4, CF3SO3).  相似文献   

16.
On Chalcogenolates. 136. Alkyl Esters of Cyanoformic Acid and of Cyanomonothioformic Acid By use of the phase transfer catalyst 18-crown-6 the esters CH3O—CO—CN, C2H5O—CO—CN, C2H5S—CO—CN, and nC3H7S—CO—CN have been prepared by reaction of the corresponding chloro compound with potassium cyanide. The prepared compounds have been characterized by means of electron absorption, infrared, nuclear magnetic resonance (1H and 13C), and mass spectra.  相似文献   

17.
K[HCS2] was prepared by interaction of chloroform with K2S. Rb[HCS2] and Cs[HCS2] were formed by reaction of trimeric dithioformic acid with alcoholates (X-ray data see ?Inhaltsübersicht”?). The dithioformates T1[HCS2], In[HCS2]3, and M[HCS2]2 with M = Pb, Zn, Cd, Hg, and M[HCS2] with M = [(C6H5)4P], [(C6H5)4As], [(C2H5)4N], (C6H5)3Sn have been prepared. The prepared compounds are investigated by different methods.  相似文献   

18.
RAMAN and IR spectroscopic investigation of alkyl derivatives of arsenic acid. II. Vibrational spectra of some alkanearsonic acid dialkylesters RAMAN and IR spectra of CH3AsO(OCH3)2, CH3AsO(OC2H5)2, C2H5AsO(OCH3)2, and C2H5AsO(OC2H5)2, are communicated and discussed. Their skeleton CAsO(OC)2 has very probably Cs symmetry.  相似文献   

19.
The behaviour under electron impact (70 eV) which includes some rearrangement processes of some tetraorganodiphosphanedisulfides R2P(S)-P(S)R2 (R ? CH3, C2H5, n-C3H7, n-C4H9, C3H5, C6H5) and CH3RP(S)–P(S)CH3R (R ? C2H5, n-C3H7, n-C4H9, C6H5, C6H5, C6H5,CH2) is reported and discussed. Fragmentation patterns which are consistent with direct analysis of daughter ions and defocusing metastable spectra are given. The atomic composition of many of the fragment ions was determined by precise mass measurements. In contrast to compounds R3P(S) loss of sulphur is not a common process here. The first step in the fragmentation of these compounds is cleavage of one P–C bond and loss of a substituent R?. The second step is elimination of RPS leading to [R2PS]+ from which the base peaks in nearly all the spectra arise. The phenyl substituted compounds give spectra with very abundant [(C6H5)3P]+. and [(C6H5)2CH3P]+. ions respectively, resulting from [M]+. by migration of C6H5. Rearrangement of [M]+. to a 4-membered P-S ring system prior to fragmentation is suggested.  相似文献   

20.
The compounds M(CO)5 · THF (M = Cr, Mo, W) react with sodium mercaptide, NaSR (R = C6F5, C6H5, C2H5), to give the mercapto-pentacarbonylmetallate anions [M(CO)5 · · SR]?. The preparation of some pentafluorophenylthio complexes, e. g. [(C6H5)3P]2MSC6F5(M = Cu, Ag, Au), [(C6H5)3P]2Hg(SC6F5)2, is reported.  相似文献   

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