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1.
Fifteen amines having a profound effect on carotenogenesis in Marsh seedless grapefruit are reported. The compounds fall into three series: Et2N(CH2)nMe (n = 4–8), Et2N(CH2)nPh (n = 1–5), and Et2NCH2CH2OC6H4R (R=H, p-Me, p-Et, p-iso-Pr, p-tert-Bu), There was up to an 11-fold increase in the total carotene content. Lycopene, not normally accumulated, became a major pigment. The inducing ability of the amines on carotenoid biosynthesis is correlated with the octanol-water partition coefficient. The mode of action appears to be similar to that of 2-(4-chlorophenylthio)triethylamine hydrochloride.  相似文献   

2.
N-substituted ethylcarbamates form with thorium nitrate the complexes Th(NO3)4·3RHNC(O)OC2H5 (where R = CH3, C2H5, C6H5(CH3)CH) and with lanthanum nitrate the complexes La(NO3)3· 2RR′NC(O)OC2H5·3H2O (where R = CH3, C2H5, C6H5(CH3)CH; R′ = H and R = CH3, C6H5; R′ = C2H5 or R = R′ = CH3). In addition the anhydrous La(NO3)3·3(C2H5)2NC(O)OC2H5 has been isolated. From the IR spectra it is deduced that the carbamates coordinate the metal through the carbonyl oxygen atom and that the nitrato groups act as chelated ligands. 1H nmr spectral data of the complexes are reported and discussed.  相似文献   

3.
Acid-catalyzed condensations of 1,19-diunsubstituted 1,19-dideoxybiladiene-ac dihydrobromides with aldehydes, R · CHO, afford the corresponding meso-substituted porphyrins (R = C6H5, p-Me·C6H4, p-MeO·C5H4, p-O2N·C6H4, p-HOC·C6H4, p-(MeO)2CH·C6H4, Me, n-Pr, CO2Et), mostly in good yield.  相似文献   

4.
Second-order rate constants (k2) are reported for the reduction of 9-R-10-methylacridinium cations (5:R = H, CH3, CH3CH2, C6H5CH2, (CH3)2CH, C6H5, 4-(CH3)2NC6H4) by 1-benzyl-1,4-dihydronicotinamide (2:R = C6H5CH2) in 20% CH3CN-80% H2O at 25°C. All 5:R ≠ H are reduced in the range 20- to 140-fold more slowly than 5:R = H. However, there is no simple relationship between k2 and the nature of R, nor between k2 and the second-order rate constant for hydroxide ion attack at C-9 of these cations in pseudobase formation. Rates of reduction of 5 by 1-benzyl-4,4-dideuterio-1,4-dihydronicotinamide allow the calculation of the following kinetic isotope effects in this solvent medium: 5:R, kHkD:H, 1.56; C6H5CH2, 2.7; C6H5, 5.4. Substituent effects upon k2 were evaluated for the reduction of 5 by 1-(X-benzyl)-1,4-dihydronicotinamides, and lead to the following Hammett ? parameters: 5:R, ?: H, ?0.68; C6H5CH2, ?0.92; C6H5, ?0.96. The latter two values require essentially complete unit positive charge generation on the nicotinamide moiety in the rate-determining transition state. It is shown that these Hammett ? values and the above isotope effects can only be rationalized by a two-step e? + H? mechanism for hydride transfer from 2 to 5 in this solvent system. This result contrasts with our earlier conclusion of direct, one-step hydride transfer in the reduction of isoquinolinium cations by 2, but is consistent with our observation that acridinium cations are reduced 37500-fold faster by 2 than predicted on the basis of the relative rates of nucleophilic attack (hydroxide ion) on acridinium and isoquinolinium cations. It is suggested that the availability of both Hammett ? values and primary kinetic isotope effects will generally allow the establishment of the mechanism of hydride transfer in these systems. Application of these ideas to literature data suggests that 5:R = H is reduced by direct hydride transfer in acetonitrile solution, in contrast to the above result in predominantly aqueous solution. The ready formation of acridanyl radicals by electron transfer to acridinium cations is demonstrated by the formation of Wurster's Blue radical cation upon mixing solutions of acridinium cations with N,N,N′,N′-tetramethyl-p-phenylenediamine.  相似文献   

5.
《Inorganica chimica acta》1987,134(1):139-142
A new series of heterocyclic telluronium salts (C4H8OTeRX: R=CH3CH2, CH2CHCH2, CH3, C4H9, X=I; R=CH2CHCH2, X=Br; R=CH3, X=ClO4; R=CH3, CH3CH2, C6H5, X=BPh4) have been prepared. Conductivity measurements in dimethylsulphoxide (DMSO) and N,N-dimethytl- formamide (DMF) have shown that there is an ion pair interaction between the anion and the tellurium cation.1H NMR studies showed that there is no reaction between the solute and the solvent. All compounds are stable in solution in DMSO. Infra-red spectra are reported and discussed.  相似文献   

6.
Reactions of H[AuCl4] with N-substituted 2-pyridine thiocarboxamide ligands 2-(C5H4N)C(S)NHR (R = p-C6H4Me, CH2Ph, Me, p-C6H4OMe) gave cycloaurated derivatives {(C5H4N)C(S)NR}AuCl2, with the ligand bonded as the thiol tautomer through the deprotonated SH group and the pyridine N atom to give a five-membered metallacyclic ring. The X-ray structure determination of the R = CH2Ph derivative shows a square-planar gold(III) complex that dimerises in the solid state by weak Au···S intermolecular interactions. In contrast, in the reaction of H[AuCl4] with 2-(C5H4N)C(S)NHR where R = 2-pyridyl, the ligand was oxidised to give a 1,2,4-thiadiazolo[2,3-a]pyridinium heterocyclic ring that was crystallographically characterised.  相似文献   

7.
The photolytic CO-substitution reaction of the organoiron thiocarboxylate complexes CpFe(CO)2SCOR (R=CH3, 2-CH3C6H4, 2-NO2C6H4, 4-NO2C6H4, 3,5-(NO2)2C6H3) with diphosphines (Ph2P(CH2)nPPh2) [n=1 (dppm), n=2 (dppe), n=3 (dpppr), n=4 (dppb), n=5 (dppp), n=6 (dpph)] at room temperature using 1:2 (metal-ligand) molar ratio afforded exclusively the disubstituted complexes CpFe(Ph2P(CH2)nPPh2)SCOR when n=1, 2 and 3 and the monosubstituted analogs CpFe(CO)(Ph2P(CH2)nPPh2)SCOR when n=4, 5 and 6. This reaction was found to be strongly influenced by the backbone length of the diphosphine ligand, the nature of the R group of the thiocarboxylate moiety and the metal-ligand molar ratios. The crystal structure of CpFe(dppm)SCO(3,5-(NO2)2C6H3) was determined.  相似文献   

8.
cis,trans-Fe(CO)2(PMe3)2(p-Y-C6H4)X [X=Br, Y=H (4a), MeO (4b), Cl (4c), F (4d), Me (4e); X=I, Y=H (5); X=Cl, Y=H (6)] and cis,trans-Fe(CO)2(PMe3)2(σ-CHCH2)X [X=Br (7); X=I (8); X=Cl (9)] are prepared by reacting dihalide complexes cis,trans,cis- Fe(CO)2(PMe3)2X2 [X=Br (1), X=I (2), X=Cl (3)] with Grignard reagents p-Y-C6H4-MgBr (Y=H, OMe, Cl, F, Me) or CH2CH-MgBr and with lithium reagents PhLi, CH2CH-Li. With both reagents, the reaction proceeds following two parallel pathways: one is the metallation reaction which yields alkyl derivatives, the other affords 17 electron complexes [Fe(CO)2(PMe3)2X] via monoelectron reductive elimination. The influence of the halides and organometallic reagents on the yield of the metallation reaction is discussed. The solution structure of the complexes is assigned on the basis of IR and 1H, 13C, 19F, 31P NMR spectra. The solid state structure of complexes 4a, 5 and 6 is determined by single crystal X-ray diffractometric methods.  相似文献   

9.
《Inorganica chimica acta》1988,153(4):219-225
The preparations are reported of [Rh(RCO2)2L]2 [where R = CH3, C2H5, and CH3OCH2; L = 6-chloro-2-methoxy-9-[2(NR′2)ethyl]aminoacridine (R′ = H, CH3)]. X-ray structural studies have been carried out on two of the compounds [ R = C2H5, R′ = H, (1); R = CH3, R′ = CH3, (2)]. Compound 1 is monoclinic, space group C2/c, with a = 20.864(11), b = 15.736(4), c = 14.402(4) Å, β = 93.14(4)°, V = 4721 Å3, and Z = 4; 2 is monoclinic, space group P21/n, a = 8.861(2), b = 23.089(10), c = 12.014(2) Å, β = 105.84(2)°, V = 2365 Å3, and Z = 2. Both compounds comprise the standard dinuclear rhodium(II) carboxylate unit with the substituted acridine ligands coordinated to rhodium in the axial positions, via the NH2 group nitrogen in 1 and the N(CH3)2 nitrogen in 2.The dimethyl substitution on the tertiary amine group in 2, and an associated conformational change in the diamine chain, result in an increased separation of the acridine ligand from the metal centre. There is a pronounced acridine base stacking in 1 but not in 2.  相似文献   

10.
The thiocarbamate esters 4-RC6H4NHC(S)OMe (R = H, Cl, OMe, NO2, Me) react with cis-[PtCl2(PTA)2] (PTA = 1,3,5-triaza-7-phosphaadamantane) in the presence of base to afford the platinum(II) complexes trans-[Pt{SC(OMe)NC6H4R}2(PTA)2] (R = H, Cl, OMe, NO2, Me) in high yields. The complexes were fully characterised spectroscopically and, in case of the NO2 derivate, by X-ray crystallography. Cytotoxicity of these complexes was studied in vitro in four human cancer cell lines (CH1, HT29, A549, SK-OV-3) using the MTT assay. The results show that the Cl substituted derivate is the most potent of these compounds in vitro. Moreover, this derivative is capable of partially circumventing primary cisplatin resistance in ovarian and colon carcinoma cells.  相似文献   

11.
12.
The reduction of aromatic nitro compounds under CO under relatively mild conditions in the presence of NiX2L2 (XCl, Br, I; LPR3, RMe, Et, Ph) and NiI2(PhNH2)4 as catalyst precursors is described. The nitrobenzene is quantitatively converted into N,N′ diphenylurea in aniline solution and into alkylcarbanylate with a good yield, in aniline-alcohol mixtures. Nitrobenzene derivatives (p-RC6H4NO2; RCH3, Cl) and 2,4-dinitrotoluene, are also reduced in aniline solution; diphenylurea and amine, corresponding to the nitroderivatives, are the reaction products in these cases. This different behaviour is explained in terms of aminolysis of the expected N-aryl-N′-phenylurea. Sufficient data are produced to say that the observed increase of the catalytic activity, increasing in the sequence Cl, Br, I by changing the NiX2L2 complex, is due to an additional co-catalytic effect of the halide. On the basis of the chemical behaviour and IR evidence, the true catalytic species and some intermediates of reaction are suggested and a possible catalytic cycle is discussed.  相似文献   

13.
Reaction of ctc-OsBr2(RaaiR)2 [RaaiR=1-alkyl-2-(arylazo)imidazole, p-R-C6H4-NN-C3H2-NN-1-R, where R=H (a), Me (b), Cl (c) and R=Me (2), Et (3) and CH2Ph (4)] with 2,2-bipyridine (bpy) in presence of AgNO3 in EtOH followed by the addition of NH4PF6 afforded a mixed ligand complex [Os(bpy)(RaaiR)2](PF6)2. The structure of the complex, in one case [Os(bpy)(MeaaiMe)2](PF6)2 · 4H2O, has been confirmed by X-ray crystallography. The complexes are diamagnetic (low spin d6, s=0) and they show intense MLCT transition in the visible region (480-525 nm) and a weak transition at longer wavelength (>850 nm) in CH3CN solution. Cyclic voltammetry of the complexes show two metal oxidation, Os(II)/Os(III) at 0.72-0.76 V and Os(III)/Os(IV) at 1.34-1.42 V and three successive ligand reductions.  相似文献   

14.
Deprotonated 1,3-bis(4-nitrophenyl)triazene reacts with an aqueous solution of TlNO3 to give dark-red crystals of {[TlI(RC6H4NNNC6H4R)]2}n [R = p-NO2], a symmetric-substituted triazenide complex “polymer” of TlI. The centrosymmetric tectons [TlI(RC6H4NNNC6H4R)]2 are related by translation and attain unidimensional chains along the c-axis through Tl?O bonding. The supramolecular bidimensional (2D) assembling of the dimeric tectons is achieved through weak secondary π-interactions of the type Tl-η2-arene between the unidimensional chains.  相似文献   

15.
Solvothermal reactions in methanol of nickel acetate tetrahydrate, Ni(OAc)2 · 4H2O, with benzonitrile derivatives NC(C6H4)X, where X is one of the electron withdrawing substituents -CN, -NO2, or -CF3, located at the m- or p-positions relative to -CN, yield complexes of the general formula Ni{HNC(R)-NC(R)-NH}2. More specifically, 3-nitrobenzonitrile, 4-nitrobenzonitrile, 1,3-dicyanobenzene, 1,4-dicyanobenzene, and ααα-trifluoro-p-toluonitrile are found to react with Ni(OAc)2 · 4H2O to yield Ni{HNC(R)-NC(R)-NH}2, where R = 3-(NO2)C6H4, 4-(NO2)C6H4, 3-(CN)C6H4, 4-(CN)C6H4, or 4-(CF3)C6H4, respectively. Analogous reactions of nitriles lacking electron withdrawing groups do not occur under similar conditions. Solid-state structures have been determined for the complexes with p-NO2, p-CN, and p-CF3 substituents on the phenyl rings. In addition, we describe density functional theory (DFT) and natural bonding orbital theory (NBO) studies on a simplified analog of these compounds, aimed at understanding their molecular bonding. It is shown that the new compounds for which solid-state structures have been determined are model examples of coordination compounds containing robust ω-bonds.  相似文献   

16.
Linked bis(ketimine) (1) can be prepared with the reaction of excess 2,4-pentanedione and 4,4′-methylene-bis(2,6-diisopropylaniline) in methanol in the presence of catalytic amount of formic acid. The dialuminum alkyl complexes containing the linked bis(ketiminate) dianionic ligands, [OC(Me)CHC(Me)N(2,6-iPr2C6H2-4)AlR2]2CH2 (2, R = Me; 3, R = Et), were prepared by a reaction of 2 equiv AlR3 with [OC(Me)CHC(Me)NH(2,6-iPr2C6H2-4)]2CH2 in methylene chloride. Reactions of 2 with 2 and 4 equiv of I2 gave corresponding aluminum iodo complexes 4 and 5, respectively. Treatment of 5 with 2 equiv of AgBF4, however, gave a diboron complex, [OC(Me)CHC(Me)N(2,6-iPr2C6H2-4)BF2]2CH2 (6), in 18% isolated yield. All new complexes have been characterized by 1H and 13C NMR spectroscopy and complexes 2, 3, and 6 are also confirmed by X-ray diffraction.  相似文献   

17.
Equilibrium constants, Kdis, for the solvent- dependent, solution-phase disproportionation equilibria of monosubstituted pentakis(arlisocyanide)cobalt(I) complexes: 2[Co(CNR)4L]+?[Co(CNR)3L2]+ + [Co(CNR)5]+, Kdis = [Co(CNR)3L2][Co(CNR)5][Co(CNR)4L]2 are measured by planimeter-integration of proton- NMR spectra at ambient temperature. The complexes, [Co(CNR)4L]ClO4, R = 2,6-Me2C6H3, L = P(C6H5)3, P(C6H4Cl-p)3, P(OC6H5)3, P(OC6H4Cl-p)3; R = o-MeC6H4, L = P(C6H4Cl-p)3, P(OC6H5)3, P(OC6H4Cl-p)3; R = 2,4,6-Me3C6H2, L = P(C6H5)3; R = 2,6-Et2C6H3, L = P(C6H5)3; are investigated in the deuterated solvents, CDCl3, CD3CN, (CD3)2CO, C5D5N, CD3NO2, and (CD3)2SO. Disproportionation seems to occur in all [Co(CNR)4L]+, but NMR study is facilitated by utilizing equivalent alkyl protons (i.e., Me-groups) on the RNC ligands.Correlation of Kdis values with steric-hindrance of the RNC in sets of complexes with the same P-ligand is evident in all solvents: Kdis decreases with increased steric-hindrance in RNC. The Kdis values for complexes with the same RNC and analogous triarylphosphine, triarylphosphite ligands (i.e., PR3, P(OR)3, same R) are approximately equal. The Kdis values for complexes of P-ligands with Cl-substituent are significantly larger than Kdis values for complexes with the corresponding unsubstituted P-ligands (e.g., [Co(CNR)4P(C6H4Clp)3]ClO4vs. [Co(CNR)4P(C6H5)3]ClO4) in (CD3)2CO and C5D5N solution, but are smaller in CDCl3 and CD3CN, and approximately equal in CD3NO2 and (CD3)2SO. Properties of the solvents are also considered.  相似文献   

18.
Lithioamidines {R′N(Li)C(R)NR′, I; R = CH3, R′ = C6H5, p-CH3,C6H4} react with iron(III) chloride
in monoglyme to produce navy-blue, high spin Fe{R′NC(R)NR′}3 complexes which are extremely air and moisture sensitive. The corresponding reaction when R = R′ = C6H5 produces a soluble red complex and an air-stable green complex, whereas when R = H, R′ = C6H5 and R = R′ = C6H5 and the reaction is started at ca. ?20°, red and green complexes respectively are formed. Though all the complexes are formulated Fe{R′NC(R)NR′}3, their properties reflect association through bridging amidino-groups. Iron(II) chloride reacts with I(R = CH3, R′ = p-CH3C6H4) to form two complexes, one crimson and soluble in organic solvents, and one brown and insoluble, which are fomulated [Fe{R′NC(R)NR′}2]n. The iron(III) complexes failed to react with, or were decomposed by, a variety of reducing, electrophilic and nucleophilic reagents, though blue Fe{p-CH3C6H4NC(CH3)N-p-CH3C6H4}3 reacts readily with nitric oxide to form a purple addition complex from which the N-nitroso-compound p-CH3C6H4NC(CH3)N(NO)-p-CH3C6H4 was obtained in high yield. Treatment of the corresponding brown iron(II) complex with nitric oxide gave no reaction.  相似文献   

19.
Cell protection against different noxious stimuli like oxidative stress or chemical toxins plays a central role in the treatment of many diseases. The inducible heme oxygenase isoform, heme oxygenase-1 (HO-1), is known to protect cells against a variety of harmful conditions including apoptosis. Because a number of medium strong electrophiles from a series of α-X-substituted 2’,3,4,4’-tetramethoxychalcones (α-X-TMCs, X = H, F, Cl, Br, I, CN, Me, p-NO2-C6H4, Ph, p-OMe-C6H4, NO2, CF3, COOEt, COOH) had proven to activate Nrf2 resulting in HO-1 induction and inhibit NF-κB downstream target genes, their protective effect against staurosporine induced apoptosis and reactive oxygen species (ROS) production was investigated. RAW264.7 macrophages treated with 19 different chalcones (15 α-X-TMCs, chalcone, 2’-hydroxychalcone, calythropsin and 2’-hydroxy-3,4,4’-trimethoxychalcone) prior to staurosporine treatment were analyzed for apoptosis and ROS production, as well as HO-1 protein expression and enzyme activity. Additionally, Nrf2 and NF-κB activity was assessed. We found that amongst all tested chalcones only E-α-(4-methoxyphenyl)-2’,3,4,4''-tetramethoxychalcone (E-α-p-OMe-C6H4-TMC) demonstrated a distinct, statistically significant antiapoptotic effect in a dose dependent manner, showing no toxic effects, while its double bond isomer Z-α-p-OMe-C6H4-TMC displayed no significant activity. Also, E-α-p-OMe-C6H4-TMC induced HO-1 protein expression and increased HO-1 activity, whilst inhibition of HO-1 by SnPP-IX abolished its antiapoptotic effect. The only weakly electrophilic chalcone E-α-p-OMe-C6H4-TMC reduced the staurosporine triggered formation of ROS, while inducing the translocation of Nrf2 into the nucleus. Furthermore, staurosporine induced NF-κB activity was attenuated following E-α-p-OMe-C6H4-TMC treatment. Overall, E-α-p-OMe-C6H4-TMC demonstrated its effective cytoprotective potential via a non-toxic induction of HO-1 in RAW264.7 macrophages. The observed cytoprotective effect may partly be related to both, the activation of the Nrf2- and inhibition of the NF-κB pathway.  相似文献   

20.
The reactivity of the iron selenide complex (μ-Se)[CpFe(CO)2]2 toward chloroformates, ROCOCl, has been studied and the products CpFe(CO)2SeCO2R [R=Me (1), Et (2), iso-Bu (3), Ph (4), 2-C6H4Cl (5), 4-C6H4Cl (6), and 4-C6H4NO2 (7)] have been obtained. The novel complexes, 1-7, have been characterized by elemental analyses, IR and 1H NMR spectroscopy. The solid state structure of CpFe(CO)2SeCO2Et, 2, was determined by an X-ray crystal structure analysis.  相似文献   

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