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1.
Abstract— A correction is offered to the approximate values previously given by Mendenhall (1978) for the enthalpy of formation and entropy of O2(a1Δg) and O2(b1+) between 298 and 1500 K. Accurate values have been calculated for the functions together with the equilibrium constants for the formation of these species from O2(X3σg-).  相似文献   

2.
Abstract— Using isolated chloroplasts and techniques as described by Joliot and Joliot[6] we studied the evolution of O2 in weak light and light flashes to analyze the interactions between light induced O2 precursors and their decay in darkness. The following observations and conclusions are reported: 1. Light flashes always produce the same number of oxidizing equivalents either as precursor or as O2. 2. The number of unstable precursor equivalents present during steady state photosynthesis is ∼ 1.2 per photochemical trapping center. 3. The cooperation of the four photochemically formed oxidizing equivalents occurs essentially in the individual reaction centers and the final O2 evolution step is a one quantum process. 4. The data are compatible with a linear four step mechanism in which a trapping center, or an associated catalyst, ( S ) successively accumulates four + charges. The S 4+ state produces O2 and returns to the ground state S 0. 5. Besides S 0 also the first oxidized state S + is stable in the dark, the two higher states, S2+ and S3+ are not. 6. The relaxation times of some of the photooxidation steps were estimated. The fastest reaction, presumably S *1← S 2, has a (first) half time ≤ 200 μsec. The S *2 state and probably also the S *0 state are processed somewhat more slowly (˜ 300–400 μsec).  相似文献   

3.
Abstract— During the reaction HO2+ HO2 (or O2-) = H2O2+ O2 in aqueous solution, no luminescence in the region 620–720 nm, expected if the product O2 were formed in a singlet state, could be detected. If any singlet O2 is formed, its yield must be less than 10%. Faint luminescence, sometimes found at shorter wavelengths, was shown to arise from reaction of HO2 with impurities in the reagents present.  相似文献   

4.
Abstract— Recent experimental data obtained using the separated sensitizer and substrate method to investigate the interaction of O2(1δg) with various substances has been re-interpreted by means of a more complete theory. Comparison of experimental and recalculated values of the dependence of relative reaction rates on the sensitizer-substrate separation indicate general accord for experiments in which singlet oxygen acceptors in aqueous solution were used. The presumption is therefore that singlet molecular oxygen O2(1δg) is indeed the active oxidizing agent and that the theory presented and experiment are entirely in agreement.
For experiments in which bacterial targets were used a very distinct disagreement between theory and experiment is evident, the conclusion being that the kill rate does not depend linearly on the O2(1δg) concentration in the immediate proximity of the bacteria. However, the data is consistent with a quadratic dependence on the 1δg concentration. A possible conclusion therefore is that the cytotoxic species is actually O2(1σ+g), formed by an energy pooling reaction involving two O2(1δg) molecules.  相似文献   

5.
Abstract— In aqueous solutions α-hydroxyalkylperoxyl radicals undergo a spontaneous and a base catalysed HO2 elimination. From kinetic deuterium isotope effects, temperature dependence, and the influence of solvent polarity it was concluded that the spontaneous reaction occurs via an HO2 elimination followed by the dissociation of the latter into H+ and O2-. The rate constant of the spontaneous HO2 elimination increases with increasing methyl substitution in α-position ( k (CH2(OH)O2) < 10s-1 k (CH3CH(OH)O2) = 52s-1 k ((CH3)2C(OH)O2) = 665 s-1). The OH- catalysed reaction is somewhat below diffusion controlled. The mixture of peroxyl radicals derived from polyhydric alcohols eliminate HO2 at two different rates. Possible reasons for this behaviour are discussed. The mixture of the six peroxyl radicals derived from d -glucose are observed to eliminate HO2 with at least three different rates. The fastest rate is attributed to the HO2 elimination from the peroxyl radical at C-l ( k > 7000s-1). Because of the HO2 eliminations the peroxyl radicals derived from d -glucose do not undergo a chain reaction in contrast to peroxyl radicals not containing an α-OH group. In competition with the first order elimination reactions the α-hydroxylalkylperoxyl radicals undergo a bimolecular decay. These reactions are briefly discussed.  相似文献   

6.
Abstract— The spectra and molar absorbances of the HO2 and O2- free radicals have been redetermined in aqueous formate solutions by pulse and stopped-flow radiolysis as well as by 60Co gamma-ray studies. The extinction coefficients at the corresponding maxima and 23°C are 225= 1400 ± 80 M -1 cm-1 and 225= 2350 ± 120 M -1 cm-1 respectively. Reevaluation of earlier published rate data in terms of the new extinction coefficients yielded the following rate constants for the spontaneous decay of HO2 and O2-: K Ho2+HO2= (8.60 ± 0.62) × 105 M -1 s-1; K Ho2+O2-= (1.02 ± 0.49) × 108 M -1 s-1; K Ho2+O2- < 0.35 M -1 s-1. For the equilibrium HO2→ O2-+ H+ the dissociation constant is K Ho2= (2.05 ± 0.39) × 10-5 M or p K HO2= 4.69 ± 0.08. G (O2-) has been evaluated as a function of formate concentration.  相似文献   

7.
Abstract— The apparent K m for O2 in the photoreduction of molecular oxygen by spinach class II chloroplasts and photosystem I subchloroplast fragments was determined. In both cases, a value of 2 ∼ 3 μ M O2 was obtained. The reaction rate constant between O2 and P-430, the primary electron acceptor of PS I, is estimated to be ∼ 1.5 × 107 M -1 s-1 and the factors affecting the production of superoxide by the photoreduction of O2 in chloroplasts are discussed. Preliminary evidence is presented indicating the occurrence of an azide-insensitive scavenging system for H2O2 in chloroplast stroma.  相似文献   

8.
Abstract— The rapid bimolecular reaction SO + O3= SO2+O2+ 106 kcal/mole
yields electronically excited SO2 in the 3B 1 and 1B2 states with some vibrational excitation, as well as SO2 in its electronic ground state. It is shown that k1 = 1.5 x 1012 exp (-2100/ RT ) cm2 mole-1 s-1 and that the formation of electronically excited SO2 involves higher activation energies.  相似文献   

9.
New photochemical studies of the reactivity of biopterin (BPT) and neopterin (NPT) in acidic (pH = 5.5) and alkaline (pH = 10.5) aqueous solutions at 350 nm and room temperature were performed. The photochemical properties of BPT are of particular interest because the photolysis of this compound takes place in the white skin patches of patients affected by vitiligo. The photochemical reactions were followed by UV/VIS spectrophotometry, HPLC, electrochemical measurement of dissolved O2 and enzymatic methods for hydrogen peroxide (H2O2) and superoxide anion (O2•−) determinations. When BPT or NPT are exposed to UVA radiation, a red intermediate, very likely 6-formyl-5,8-dihydropterin, is generated in an O2-independent process. That product is rapidly oxidized on admission of O2 to yield 6-formylpterin and H2O2. When the photolysis takes place in aerobic conditions, no additional pathways exist. On the other hand, in the absence of O2, the intermediate generated is not stable and leads to the formation of many products. O2•− is also generated during photo-oxidation of BPT and NPT. The quantum yields of reactant consumption depends on the O2 concentration: the higher the O2 concentration, the lower the quantum yields. This behavior is discussed in connection with the excited state of the pterins.  相似文献   

10.
Abstract— Photolysis of naphthalene on the surface of SiO2 under an atmosphere of air produces phthalic acid as the only major photoproduct, accounting for 49%o of the consumed naphthalene. Photolysis on Al2O3 also produces phthalic acid, in 31% yield. Photolysis of 1 -methylnaphthalene on SiO2 proceeds under similar conditions to produce 2-acetylbenzoic acid (35%) as the major photoproduct with the production of a small amount of I-naphthaldchyde (6%). 1-Cyanonaphthalene does not photooxidize under similar conditions. The presence of oxygen is necessary for the photodecomposition of naphthalene and 1-methylnaphthalene to proceed. Superoxide formed from the photolysis of naphthalene at the SiO2/air interface is readily observed by electron paramagnetic resonance spectroscopy. In the absence of naphthalene no superoxide is observed. A mechanism involving electron transfer from the S1 state of the naphthalene to O2 is proposed on the basis of these observations and related literature precedent.  相似文献   

11.
Abstract— The possibility of 1O2 (1Δg) participation in the oxidation of polyphenols and quinones has been investigated in two systems: (1) the system involving autooxidation leading to oxidative polymerization and destruction, and (2) the modified Trautz-Schorigin reaction, i.e. oxidation of polyphenols and HCHO with H2O2 in concentrated alkaline solutions. The red band with maximum at 635 nm observed in chemiluminescence of pyrocatechol, adrenaline, pyrogallol, gallic acid, adrenochrome and p -benzoquinone corresponds to the transition 2O2(1Δg) → 2O2(3Σ-g). Emission bands in the range 475–540 nm arise from the superposition of the 2O2(1Δg) → 2O2(3Σ-g) transition and radiative deactivation of excited oxidation products. In system (2) chemiluminescence has a broad band from 580 nm beyond 800 nm and much higher intensity than in system (1). Formaldehyde was found to enhance light emission in system (1) by a factor of about 30. The influence of solvents, including D2O in which 1O2 has varying lifetimes, on kinetics of chemiluminescence as well as quenching effect of β-carotene, hydroquinone, cysteine, bilirubin and biliverdin strongly support the involvement of 1O2 in the chemiluminescence of both systems.  相似文献   

12.
Abstract— A direct process for an activationless electron transfer from photoexcited tryptophan to molecular oxygen is proposed. By photodetachment of mass-selected indole-O2- clusters in gas phase a neutral indole+ O2- charge-separated exciplex state is found at 2.25 0.2 eV above the neutral ground state. By theory also, the existence of an excited charge separated state at 3.05 0.2 eV is postulated. In gas phase both charge-separated cluster states are energetically below the first singlet states 1Lb and 1La and the lower even below the first triplet state T1 of indole. In gas-phase clusters these energetics imply a very efficient quenching of photoexcited indole by fast electron transfer to oxygen. We discuss a similar mechanism for tryptophan-O2 in aqueous environment and find it without activation barrier and presumably extremely fast. In the collisional tryptophan*-O2 complex the efficiency and the time scale of the charge transfer process should be mostly solvent independent. In polar solvent a complete charge separation and free superoxide formation are expected. We correlate this model with previous fluorescence and phosphorescence quenching data of excited tryptophan by O2 and propose electron transfer to be the relevant process.  相似文献   

13.
Abstract— –In the light, isolated spinach thylakoids consumed O2 in the presence of methylviologen, and ascorbate was found to interact with this reaction in various ways. Chelating-resin was used to remove metal impurities from the assay medium. Ascorbate diminished the H202 pool in resin-untreated solutions, while in resin-treated solutions ascorbate had no effect on H2O2 concentrations. A Fenton catalyst (Fe-EDTA) increased O2 uptake in the presence of ascorbate and decreased the amount of O2 recovered by catalase. Ascorbate tripled the rate of the methylviologen-mediated Mehler reaction, and the O2 consumed was liberated to 50% of its original concentration by catalase. Superoxide dismutase reversed the effects of ascorbate on the Mehler reaction rates. These results indicate that ascorbate can stimulate Mehler reactions indirectly by promoting a Fenton-type reaction as well as stimulating Mehler reactions directly by reducing 2O2- to 2H2O2. The promotion of a Fenton-type reaction by ascorbate appears to be the cause of H2O2 depletion in resin-untreated solutions.  相似文献   

14.
Abstract— In many biological systems, the role of O2- in hydroxylation and toxic processes was assumed to be due to the formation of OH radicals. The Haber-Weiss reaction (Haber and Weiss, 1934)—(H2O2+ O2-→ OH + OH-+ O2) was suggested as the origin of this activity.
In this study it is shown that this reaction pathway is too slow, and that OH is probably formed from the reaction of complexed superoxide with H2O2 or/and from the reduction of Fe(III), bound to biological compounds, by O2-; the reduced Fe(II) can then react with H2O2 as a Fenton reagent, to yield OH.
It is also shown that singlet oxygen cannot be formed in these biological systems neither from the dismutation of OJ nor from the reaction of O2- with OH. Singlet oxygen may be formed from the reduction of metal complexes by O2-.  相似文献   

15.
Abstract— The bioluminescent oxidation of reduced flavin mononucleotide by bacterial luciferase involves a long-lived flavoenzyme intermediate whose chromophore has been postulated to be the 4a-sub-stituted peroxy anion of reduced flavin. Reaction of long chain aldehyde with this intermediate results in light emission and formation of the corresponding acid. These experiments show that the typical aldehyde-dependent, luciferase-catalyzed bioluminescence can also be obtained starting with FMN and H2O2 instead of FMNH2 and O2. We postulate that the 4a-peroxy anion intermediate is formed directly by attack of H2O2 on FMN. The latter may be bound to luciferase. An enzyme bound intermediate is formed which by kinetic analysis, flavin specificity for luminescence, aldehyde dependence, and bioluminescent emission spectrum appears to be identical with the species generated by reaction of FMNH, and O2 with luciferase. The quantum yield of the H2O2-- and FMN-initiated biolumlnescence is low but can be enhanced by certain metal ions, which also stimulate a chemiluminescent reaction of oxidized flavin with H2O2. The peak of this chemiluminescence. however, appears to be at a shorter wavelength than that (490 nm) of the bioluminescence.  相似文献   

16.
Kinetic and mechanistic aspects of the vitamin B2 (riboflavin [Rf])-sensitized photo-oxidation of the imidazoline derivates (IDs) naphazoline (NPZ) and tetrahydrozoline (THZ) were investigated in aqueous solution. The process appears as important on biomedical grounds, considering that the vitamin is endogenously present in humans, and IDs are active components of ocular medicaments of topical application. Under aerobic visible light irradiation, a complex picture of competitive interactions between sensitizer, substrates and dissolved oxygen takes place: the singlet and triplet (3Rf*) excited states of Rf are quenched by the IDs: with IDs concentrations ca.  5.0 m m and 0.02 m m Rf, 3Rf* is quenched by IDs, in a competitive fashion with dissolved ground state oxygen. Additionally, the reactive oxygen species: O2(1Δg), O2•−, HO and H2O2, generated from 3Rf* and Rf •−, were detected with the employment of time-resolved methods or specific scavengers. Oxygen uptake experiments indicate that, for NPZ, only H2O2 was involved in the photo-oxidation. In the case of THZ, O2•−, HO and H2O2 were detected, whereas only HO was unambiguously identified as THZ oxidative agents. Upon direct UV light irradiation NPZ and THZ generate O2(1Δg.), with quantum yields of 0.2 (literature value, employed as a reference) and 0.08, respectively, in acetonitrile.  相似文献   

17.
HYDROGEN AND OXYGEN PHOTOPRODUCTION BY TITANATE POWDERS   总被引:1,自引:0,他引:1  
Abstract— Uncoated powders of TiO2 or SrTiO3 did not produce H2 or O2 on UV irradiation of aqueous suspensions of the powders. TiO2 powders coated with platinum or rhodium photoproduced H2 on irradiation (effective wavelengths 334 and 366 nm) and the reaction was stimulated by catalytic quantities of methyl viologen. The turnover numbers for H2 production relative to TiO2 were very low suggesting that the powders were not acting catalytically. Hydrogen production was never stoichiometric with respect to TiO2 and the kinetics of H2 production were first order, not zero order as would be expected for catalytic photolysis of water. Oxygen was never detected and it appears that H2 did not arise from water photolysis but rather from oxidation of reduced sites in TiO2. A rhodium-coated SrTiO3 powder prepared photochemically produced both H2 and O2 on irradiation but the turnover numbers were very low. A Rh-SrTiO3 powder prepared thermally showed higher turnover numbers for H2 photoproduction and may be acting catalytically. However, little O2 was detected with this powder. When the turnover numbers for the different titanate powders were expressed with respect to the number of surface monolayer hydroxyl groups calculated from the surface area of the powders, some turnover numbers greater than one were obtained.  相似文献   

18.
Abstract— The mechanism for photodegradation of the ultraviolet photostabilizer 2-(2'-hydroxy-5'-methylphenyl)benzotriazole (TIN P) upon direct and dye-sensitized (singlet molecular oxygen [O2(1Δg)]-mediated) irradiation was studied. From the experimental TIN P photodegradation rate data, and low temperature (77 K) fluorescence and phosphorescence quantum yields, one can conclude that the photodegradative process involves phosphorescent states of TIN P. The open conformer of TIN P quenches O2(1Δg) by physical scavenging with a rate constant (kq) in dimethylsulfoxide of 2.8 times 106 M -1 s-1. The intramolecular hydrogen-bonded conformer does not appreciably interact with O2(1Δg). In the presence of a relatively high concentration of OH- (either 5 times 10-2 M KOH in ethanol or water at pH 13), the ionic form of TIN P (with an ionized phenol group) physically and chemically quenches O2(1Δg). The reaction rate constant ( k r) is 1 times 10 8 M -1 s-1, and the ratio k q/ k r is approximately three in alkaline aqueous media.  相似文献   

19.
Abstract— The effect of UVB and ozone (O3) on growth and ascorbate-glutathione cycle were investigated in Arabidopsis thaliana wild-type Landsberg erecta (LER) and its transparent testa ( tt 5) mutant differing in UVB sensitivity. Ultraviolet-B radiation decreased dry matter production of tt5, while the dry weight of LER remained unaltered. Ozone exposure decreased dry weight of both genotypes. Ultraviolet-B radiation decreased the Fv/Fm ratio in tt5 but not in LER plants, while O3 exposure decreased the Fv/Fm ratio in both genotypes. Ultraviolet-B radiation enhanced total ascorbic acid, total glutathione and their redox state and superoxide dismutase and glutathione reductase activities in both genotypes and the increases were greater in tt5 compared to UVB-irradiated LER. Although O3 exposure enhanced total ascorbic acid and total glutathione in both genotypes, the redox state was significantly higher in tt5. Ozone exposure enhanced superoxide dismutase and glutathione reductase activities in tt5 while there were no major changes in LER. These results suggested that (1) plants blocked in flavonoid biosynthesis are sensitive to UVB in spite of their ability to maintain efficient oxygen free radical scavenging systems and (2) plants sensitive to UVB are comparatively tolerant of O3 compared to UVB-insensitive plants. The differential responses of plants are discussed with reference to their ability to maintain high redox states of ascorbate and glutathione.  相似文献   

20.
Abstract— Radiolytic formation and peroxidation of fatty acid radicals have been investigated by pulse radiolysis techniques in oleate, linoleate, linolenate and arachidonate systems. A strong absorption band at 280 nm associated with conjugated radicals, Rconj, formed in polyunsaturated fatty acid moieties has been used as a probe for kinetic processes occurring at doubly allylic sites in the hydrocarbon chain. Formation of Rconj by O- has been found to be more efficient than the less selective OH radical. Peroxidation of Rconj is shown to be somewhat slower, ( k R+ O2˜ 3 × 108 M -1 s-1), than O2 reactions with radicals in oleate ( k R+ O2= 1 × 109 M -1 s-1). Peroxy radicals generated in these reactions disappear slowly by essentially second order processes (2 k RO1˜ 107 M -1 s-1). The superoxide radical, O-2, shows little if any reactivity towards 0.01 M linolenate or arachidonate over periods of 20 s.  相似文献   

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