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1.
The magnitudes of the two spin-spin coupling constants J(N1H …? 13C), and all relatives signs of the couplings J(1H …? 1H) and J(1H …? 13C) of formamide-14N, were determined by triple resonance experiments of the types 1H—{13C}—{14N} and 1H—{1H}—{14N}.  相似文献   

2.
Acid—base theory can be rationalized by introducing the concept of the proton function, HC. Specifically, the pH of any solution is given by HC = 0, the buffer strength is given by B = [H+]dHC/d[H+], and the titration of any acid or mixture of acids with a base or mixture of bases (or its inverse) is given by HCt Vt = -HC8V8, where t and s denote titrant and sample respectively. The same unifying approach can be extended to complexation, precipitation, and redox equilibria.  相似文献   

3.
Incubation of the geraniols (R)-(8-2H1)[8-3H1]- 1 and (S)-(8-2H1)[8-3H1]- 1 with microsomal cytochrome P-450Cath. from the subtropical plant Catharanthus roseus (L.)G. DON resulted in the formation of the chiral 8-hydroxygeraniols (S)-(8-2H1)[8-3H1]- 2 and (R)-(8-2H1)[8-3H1]- 2 . Their absolute configuration was assigned on the basis of the 1H-decoupled 3H-NMR Spectra of the corresponding dicamphanates (S)-(8-2H1)[8-3H1]- 9 and (R)-(8-2H1)[8-3H1]- 9 , of which the configurations are established in relation to the synthetic reference samples. The results clearly indicate retention of configuration during the allylic oxidation of 1 .  相似文献   

4.
Transpiration method was used to measure the equilibrium water vapor pressures of the dehydration of the respective hydrates, such as oxalates, sulfates,chlorides and acetate, and the enthalpies of dehydrations (ΔH Tr 0) of these hydrates were obtained. The heats of dehydrations (ΔH DSC 0) were also determined by TG-DSC method. From the comparison with ΔH Tr 0 of ΔH DSC 0, the relation of ΔH DSC 0H Tr 0=R (=dehydration molar number determined by TG-DSC peak/stoichiometric dehydration molar number) was yielded. From these results, the following relations were found: ΔH DSC 0(corrected)=ΔH DSC 0/RH Tr 0 This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

5.
A series of novel heterochelates of the type [Fe(An)(L)(H2O)2]?mH2O [where H2An = 4,4′‐(arylmethylene)bis(3‐methyl‐1‐phenyl‐4,5‐dihydro‐1H‐pyrazol‐5‐ol); aryl = 4‐nitrophenyl, m = 1 (H2A1); 4‐chlorophenyl, m = 2 (H2A2); phenyl, m = 2 (H2A3); 4‐hydroxyphenyl, m = 2 (H2A4); 4‐methoxyphenyl, m = 2 (H2A5); 4‐hydroxy‐3‐methoxyphenyl, m = 1.5 (H2A6); 2‐nitrophenyl, m = 1.5 (H2A7); 3‐nitrophenyl, m = 0.5 (H2A8); p‐tolyl, m = 1 (H2A9) and HL = 1‐cyclopropyl‐6‐fluoro‐4‐oxo‐7‐(piperazin‐1‐yl)‐1,4‐dihydroquinoline‐3‐carboxylic acid] were investigated. They were characterized by elemental analysis (FT‐IR, 1H‐ & 13C‐NMR, and electronic) spectra, magnetic measurements and thermal studies. The FAB‐mass spectrum of [Fe(A3)(L)(H2O)2]?2H2O was determined. Magnetic moment and reflectance spectral studies revealed that an octahedral geometry could be assigned to all the prepared heterochelates. Ligands (H2An) and their heterochelates were screened for their in‐vitro antibacterial activity against Bacillus subtilis, Staphylococcus aureus, Escherichia coli and Serratia marcescens bacterial strains. The kinetic parameters such as order of reaction (n), the energy of activation (Ea), the pre‐exponential factor (A), the activation entropy (ΔS#), the activation enthalpy (ΔH#) and the free energy of activation (ΔG#) are reported. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

6.
Zusammenfassung Auf Grund von pH-Messungen wurden die erste und zweite Dissoziationskonstante der Weinsäure und Dissoziationskonstanten der KomplexionenLnH2 T +,Ln 2H2 T 4+,Ln(H2 T)2-undLnHT bestimmt.
The first and second constant of dissociation of tartaric acid, and the constants of dissociation of the complex ionsLnH2 T +,Ln 2H2 T 4+,Ln(H2 T)2- andLnHT were determined, making use of pH-measurements.


Zugl. 30. Mitt. der Reihe: Koordinationsverbindungen mit organischen Hydroxysäuren.

Ln 3+=La3+, Ce3+.

H4 T=C4H6O6.  相似文献   

7.
Biotransformation of (±)‐threo‐7,8‐dihydroxy(7,8‐2H2)tetradecanoic acids (threo‐(7,8‐2H2)‐ 3 ) in Saccharomyces cerevisiae afforded 5,6‐dihydroxy(5,6‐2H2)dodecanoic acids (threo‐(5,6‐2H2)‐ 4 ), which were converted to (5S,6S)‐6‐hydroxy(5,6‐2H2)dodecano‐5‐lactone ((5S,6S)‐(5,6‐2H2)‐ 7 ) with 80% e.e. and (5S,6S)‐5‐hydroxy(5,6‐2H2)dodecano‐6‐lactone ((5S,6S)‐5,6‐2H2)‐ 8 ). Further β‐oxidation of threo‐(5,6‐2H2)‐ 4 yielded 3,4‐dihydroxy(3,4‐2H2)decanoic acids (threo‐(3,4‐2H2)‐ 5 ), which were converted to (3R,4R)‐3‐hydroxy(3,4‐2H2)decano‐4‐lactone ((3R,4R)‐ 9 ) with 44% e.e. and converted to 2H‐labeled decano‐4‐lactones ((4R)‐(3‐2H1)‐ and (4R)‐(2,3‐2H2)‐ 6 ) with 96% e.e. These results were confirmed by experiments in which (±)‐threo‐3,4‐dihydroxy(3,4‐2H2)decanoic acids (threo‐(3,4‐2H2)‐ 5 ) were incubated with yeast. From incubations of methyl (5S,6S)‐ and (5R,6R)‐5,6‐dihydroxy(5,6‐2H2)dodecanoates ((5S,6S)‐ and (5R,6R)‐(5,6‐2H2)‐ 4a ), the (5S,6S)‐enantiomer was identified as the precursor of (4R)‐(3‐2H1)‐ and (2,3‐2H2)‐ 6 ). Therefore, (4R)‐ 6 is synthesized from (3S,4S)‐ 5 by an oxidation/keto acid reduction pathway involving hydrogen transfer from C(4) to C(2). In an analogous experiment, methyl (9S,10S)‐9,10‐dihydroxyoctadecanoate ((9S,10S)‐ 10a ) was metabolized to (3S,4S)‐3,4‐dihydroxydodecanoic acid ((3S,4S)‐ 15 ) and converted to (4R)‐dodecano‐4‐lactone ((4R)‐ 18 ).  相似文献   

8.
Using the experimental values ΔH Hexc and ΔS HexcH Nexc and ΔS Nexc) for solid solutions of hydrogen and nitrogen in molybdenum, we calculate the parameters ɛHMand ɛNM of interaction between hydrogen (nitrogen) and molybdenum lattice doped with small additives of transition metals M; the values of the activity coefficients on hydrogen and nitrogen γHM and γNM, ΔH H, ΔH N, ΔS H, ΔS N; enthalpy (ηHM and ηNM) and entropy (σHM and σNM) parameters of interaction over the 1100–1300 K range for alloys of Mo1 − y M y H x and Mo1 − y M y N x types (y = 0.01 and 0.02; x = 0.01 and 0.02).  相似文献   

9.
Freezing-point depression of mixtures of H 2 16 O and H 2 18 O were measured. The results showed that the freezing point of the mixture rose linearly with an increase in the molal concentration of H 2 18 O. The results suggested the formation of a solid solution of H 2 16 O and H 2 18 O by freezing, similar to that formed by H 2 O–D 2 O, and that H 2 18 O behaves as a different molecule than H 2 16 O.  相似文献   

10.
Summary The synergistic solvent extraction of Pr, Gd, and Yb with mixtures of 1-phenyl-3-methyl-4-benzoyl-pyrazol-5-one (HP) and tridodecylammonium (TDAHA), trioctylammonium (TOAHA), and dioctylammonium (DOAHA) salts (A =Cl, NO 3 , and ClO 4 ) in C6H6 has been studied. The composition of the extracted species has been determined asAmH+[LnP 4] (AmH+: ammonium salt cation). The values of the equilibrium constant have been calculated. The influence of the ammonium salt ions on the extraction process is discussed.
Synergetische Extraktion von Lanthaniden mit Mischungen aus 1-Phenyl-3-methyl-4-benzoyl-pyrazol-5-on und aliphatischen Aminen: Einfluß der Ammoniumsalzionen
Zusammenfassung Die synergetische Extraktion von Pr, Gd und Yb mit Mischungen aus 1-Phenyl-3-methyl-4-benzoyl-pyrazol-5-on (HP) und Tridodecylammonium-(TDAHA), Trioctylammonium-(TOAHA) und Dioctylammoniumsalzen (DOAHA) (A =Cl, NO 3 und ClO 4 ) in C6H6 wurde untersucht. Die Zusammensetzung der Extraktionskomplexverbindungen wurde zuAmH+[LnP 4] bestimmt; die Gleichgewichtskonstanten wurden berechnet. Der Einfluß der Ionen des Ammoniumsalzes auf die Extraktion wird diskutiert.
  相似文献   

11.
Zusammenfassung Es wurde ein systematisches Studium des Systems im sauren Bereich durchgeführt. Aus den Ergebnissen der pH-Messungen wurden die Gleichgewichtskonstanten der Komplexe [YH3 T]2+, [YH2 T]+, [Y2H2 T]4+, [Y(H2 T)2] und HYT bestimmt. Es wurden die Verbindungen Y2(H2 T)3 · 8 H2O, Y2(H2 T)3 · 5 H2O und H[Y(H2 T)2] · 3 H2O isoliert. Diese wurden mit Hilfe von Röntgenstreuung, Thermoanalyse und IR-Absorptionsspektren untersucht.
A systematic investigation of the system in the acidic range was undertaken. The equilibrium constants of the complexes [YH3 T]2+, [YH2 T], [Y2H2 T]4+, [Y(H2 T)2] and HYT were determined, making use of the results of pH-measurements. The compounds Y2(H2 T)3 · 8 H2O, Y2(H2 T)3 · 5 H2O and H[Y(H2 T)2] · 3 H2O were isolated. Their X-ray diffraction, thermal analysis and IR spectra were investigated.


Mit 2 Abbildungen

Zugleich 24. Mitt. der Reihe: Koordinationsverbindungen von organischen Oxoubstanzen; H4 T=C4H6O6.  相似文献   

12.
The protonation constants for oxidized glutathione, H i−1L(4−i+1)−, K i H=[H i L(4−i)−]/[H i−1L(4−i+1)−][H+] i=1,2,…,6 have been measured at 5, 25 and 45 °C as a function of the ionic strength (0.1 to 5.4 mol⋅[kg(H2O)]−1) in NaCl solutions. The effect of ionic strength on the measured protonation constants has been used to determine the thermodynamic values (K i H0) and the enthalpy (ΔH i ) for the dissociation reaction using the SIT model and Pitzer equations. The SIT (ε) and Pitzer parameters (β (0), β (1) and C) for the dissociation products (L4−, HL3−, H2L2−, H3L, H4L, H5L+, H6L2+) have been determined as a function of temperature. These results can be used to examine the effect of ionic strength and temperature on glutathione in aqueous solutions with NaCl as the major component (body fluids, seawater and brines).  相似文献   

13.
Zusammenfassung Der Hamiltonoperator H eines Einzentren-Problems sei derart in H = H 0 + H 1 aufgeteilt, daß das Problem mit H 0 exakt lösbar ist und H 1 nur Anteile potentieller Energie enthält. Dann kann man zeigen, daß der Erwartungswert der Störung H 1 im Minimum der Gesamtenergie exakt verschwindet.
Let the Hamiltonian H of a one-center problem be so partitioned in H = H 0 + H 1 that the problem with H 0 is exactly soluble and H 1 contains potential energy terms only. One, then, can show that the average value of the perturbation H 1 vanishes identically if the total energy is minimized.

Résumé L'opérateur hamiltonien H d'une problème à un centre est séparé en deux parties: H = H 0 + H 1, de manière à ce que le problème relatif à H 0 soit exactement soluble et à ce que H 1 tienne compte d'une part seulement de l'énergie potentielle. On peut, alors montrer que l'espérance mathématique de la perturbation H 1 au minimum de l'énergie totale s'annule exactement.


Erstmalig vor einem kleineren Kreis in Frankfurt am Main am 28. Juli 1962, zuletzt auszugsweise auf der 65. Hauptversammlung der Deutschen-Bunsen-Gesellschaft für Physikalische Chemie in Freudenstadt, 19. bis 22. Mai 1966, vorgetragen.

Die vorliegende Arbeit wurde überwiegend in den Jahren 1960 bis 1962 durchgeführt. Für das in dieser Zeit gewährte Stipendium danke ich der Deutschen Forschungsgemeinschaft.

Herrn Professor Dr. H. Hartmann danke ich für die großzügige Förderung in der Folgezeit (und dafür, daß er mich vor dem publish-or-perish bewahrt hat).  相似文献   

14.
catena-Poly[[tetraaquabis(1H-pyrazole-κN2)nickel(II)] [[diaquabis(1H-pyrazole-κN2)nickel(II)]-μ-benzene-1,2,4,5-tetracarboxylato-κ2O1:O4] tetrahydrate], {[Ni(C3H4N2)2(H2O)4][Ni(C10H2O8)(C3H4N2)2(H2O)2]·4H2O}n, (I), and poly[[(μ4-benzene-1,2,4,5-tetracarboxylato-κ4O1:O2:O4:O5)octakis(1H-pyrazole-κN2)dicobalt(II)] tetrahydrate], {[Co2(C10H2O8)(C3H4N2)8]·4H2O}n, (II), are polymeric compounds crystallizing in the space group P, with two independent metallic cations and one benzene-1,2,4,5-tetracarboxylate (btc) anion, each lying on symmetry centres. Individual coordination polyhedra are regular and the main differences are in the way the btc anion binds [μ2 in (I) and μ4 in (II)], promoting a `chain-like' one-dimensional structure in (I) and a `sieve-like' two-dimensional motif in (II).  相似文献   

15.
The 1H and 13C NMR spectra of trans- and cis-tert-butyl 2-methoxy-5,6-dihydro-2H-pyran-6-carboxylates (1 and 2) and 6,6′-disubstituted 2-methoxy-5,6-dihydro-2H-pyrans (3-7) have been recorded. HH and CH coupling constants are discussed in terms of the 1H6?6H1 conformational equilibrium. It has been found that 1 occurs exclusively in the 1H6 conformation, whereas its cis isomer, 2, exists in an equilibrium of both half-chair forms. 6,6′-Disubstituted 2-methoxy-5,6-dihydro-2H-pyrans 3-6 display spectral and conformational behaviour similar to that of 1, whereas 7 resembles 2 in this respect.  相似文献   

16.
The collision-induced dissociation (CID) mass spectra of protonated cocaine and protonated heroin have been measured using a triple quadrupole mass spectrometer at 50 eV ion/neutral collision energy for protonated molecules prepared by different protonating agents. The CID mass spectra of protonated cocaine using H+(H2O)n, H+(NH3)n and H+((CH3)2NH)n as protonating agents are essentially identical and it is concluded that, regardless of the initial site of protonation, the fragmentation reactions occurring on collisional activation are identical. By contrast, protonated heorin prepared with H+(H2O)n and H+(NH3)n as protonating agents show substantial differences. That formed by reaction of H+(H2O)n shows a much more abundant peak corresponding to loss of CH3CO2H. From a comparison with model compounds, and from a consideration of the three-dimensional structure of heroin, it is concluded that with H+(H2O)n as protonating agent significant protonation occurs at the acetate group attached to the alicyclic ring, leading to acetic acid loss on collisional activation, but that reaction of H+(NH3)n leads to protonation at the nitrogen function. The proton attached to nitrogen cannot interact with the acetate group and, consequently, the probability of loss of acetic acid on collislional activation is greatly reduced.  相似文献   

17.
The collision-induced dissociation (CID) spectra of five alkylmethyleneimmonium ions (H2C-N+R1R2, (a) R1 = R2 = C2H5, (b) R1 = n-C3H7, R2 = H, (c) R1 = n-C3H7, R2 = CH3, (d) R1 = n-C3H7, R2 = C2H5, (e) R1 = R2 = n-C3H7) are reported and discussed in terms of the mechanism of alkane loss. The most abundant alkane losses result from 2-azaallylic bond cleavages within R1 and R2 leading to daughter ions of m/z 84. Ion d (R1 = n-C3H7, R2 = C2H5) was chosen for a deuterium-labelling study because it exhibited methane loss nearly free from interferences with other fragmentations. The methane lost consists to a great extent (95%) of the methyl moiety of R2. Whereas the methyl moiety obviously stays intact during the fragmentation process, the hydrogen additionally needed originates from all positions of R1 and the double-bonded methylene in an approximately random distribution, suggesting extensive hydrogen migrations preceding the transfer step.  相似文献   

18.
Four different types of new ligands Ar[COC(NOH)R] n (Ar=biphenyl, n = 1 H2L1; Ar=biphenyl, n = 2 H4L2; Ar=diphenylmethane, n = 1 H2L3; Ar=diphenylmethane, n = 2 H4L4; R=2-amino-4-chlorophenol in all ligands) have been obtained from 1 equivalent of chloroketooximes Ar[COC(NOH)Cl] n (HL1-H2L4) and 1 equivalent of 2-amino-4-chlorophenol (for H2L1 and H2L3) or 2 equivalent of 2-amino-4-chlorophenol (for H4L2 and H4L4). (Mononuclear or binuclear cobalt(II), nickel(II), copper(II) and zinc(II) complexes were synthesized with these ligands.) These compounds have been characterized by elemental analyses, AAS, infra-red spectra and magnetic susceptibility measurements. The ligands have been further characterized by 1H NMR. The results suggest that the dinuclear complexes of H2L1 and H2L3 have a metal:ligand ratio of 1:2; the mononuclear complexes of H4L2 and H4L4 have a metal:ligand ratio of 1:1 and dinuclear complexes H4L2 and H4L4 have a metal:ligand ratio of 2:1. The binding properties of the ligands towards selected transition metal ions (MnII, CoII, NiII, CuII, ZnII, PbII, CdII, HgII) have been established by extraction experiments. The ligands show strong binding ability towards mercury(II) ion. In addition, the thermal decomposition of some complexes is studied in nitrogen atmosphere.  相似文献   

19.
Crystals of hypoxanthinium (6‐oxo‐1H,7H‐purin‐9‐ium) nitrate hydrates were investigated by means of X‐ray diffraction at different temperatures. The data for hypoxanthinium nitrate monohydrate (C5H5N4O+·NO3?·H2O, Hx1 ) were collected at 20, 105 and 285 K. The room‐temperature phase was reported previously [Schmalle et al. (1990). Acta Cryst. C 46 , 340–342] and the low‐temperature phase has not been investigated yet. The structure underwent a phase transition, which resulted in a change of space group from Pmnb to P21/n at lower temperature and subsequently in nonmerohedral twinning. The structure of hypoxanthinium dinitrate trihydrate (H3O+·C5H5N4O+·2NO3?·2H2O, Hx2 ) was determined at 20 and 100 K, and also has not been reported previously. The Hx2 structure consists of two types of layers: the `hypoxanthinium nitrate monohydrate' layers (HX) observed in Hx1 and layers of Zundel complex H3O+·H2O interacting with nitrate anions (OX). The crystal can be considered as a solid solution of two salts, i.e. hypoxanthinium nitrate monohydrate, C5H5N4O+·NO3?·H2O, and oxonium nitrate monohydrate, H3O+(H2O)·NO3?.  相似文献   

20.
High‐resolution mass spectra of helium nanodroplets doped with hydrogen or deuterium reveal that copious amounts of helium can be bound to H+, H2+, H3+, and larger hydrogen‐cluster ions. All conceivable HenHx+ stoichiometries are identified if their mass is below the limit of ≈120 u set by the resolution of the spectrometer. Anomalies in the ion yields of HenHx+ for x=1, 2, or 3, and n≤30 reveal particularly stable cluster ions. Our results for HenH1+ are consistent with conclusions drawn from previous experimental and theoretical studies which were limited to smaller cluster ions. The HenH3+ series exhibits a pronounced anomaly at n=12 which was outside the reliable range of earlier experiments. Contrary to findings reported for other diatomic dopant molecules, the monomer ion (i.e. H2+) retains helium with much greater efficiency than hydrogen‐cluster ions.  相似文献   

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