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1.
Abstract— –Flash photolysis at 450 nm over the temperature range 0.8–60°C was used to determine Arrhenius parameters for the first and second order disappearance of triplet lumiflavin (1.66 µ .M ) at a flash energy of 2 kj in deaerated phosphate buffer at varying pH:
3Lf → Lf0
3Lf +3Lf → Lf0+ Lf0
Arrhenius parameters were also determined for the pseudo first-order quenching of triplet lumiflavin by 10 µ M ferri- and ferrocyanide ions,
3Lf + Fe3+→ Fe3+→ Lf0+ Fe3+ (energy transfer)
3Lf + Fe2+→ Lf-+ Fe3+ (electron transfer)
and for disappearance of the semireduced lumiflavin in the presence of ferrocyanide at pH 6.8, by the second-order reaction
Lf-+Lf -→ Lf0+ Lf=.  相似文献   

2.
Abstract— The rate of decay of the triplet state of lumiflavin in deaerated phosphate buffer at pH 6.9, has been studied using the flash photolysis technique, at various concentrations and flash energies. The decay of the transient appears as a mixture of first and second order processes, the relative importance of which depends on the experimental conditions.
The following competitive reactions have been found to explain the course of the reaction of the triplet excited state of lumiflavin.  相似文献   

3.
Abstract— Reactions of the triplet state of lumiflavin (3LF) in water adjusted at pH 7.2 were reexamined by means of a Xe-flash photolysis and a laser photolysis. Measurements of the decay of 3LF were made on solutions of LF ranging in the concentration from 4 to 61 times 10-6 mol/dm3. A one-electron reduced and a one-electron oxidized species of lumiflavin (LF- and LF+) were produced in the first decay stage of 3LF with a high efficiency (0.6 ± 0.1) in a bimolecular triplet-triplet reaction. The product radicals (LFH- and LF+) quench 3LF very efficiently (3 ± 0.8 × 109 mol-1dm3 s-1) compared with LF in the ground state (> 2 × 107 dm3 mol-1).  相似文献   

4.
Abstract— In the reaction center of photosynthetic bacteria, with the primary ubiquinone reduced, the triplet state PR of the primary electron donor (a pair of bacteriochlorophylls named P) is PO ulated with a takes place in a few ns. We measured by flash absorption spectroscopy the influence of temperature on formation and decay kinetics of PR and 3Car in the reaction center of several strains of R. sphaeroides . The rate of triplet energy transfer, measured as the decay of PR after a flash, decreases when the temperature is lowered. Between 60 and 30 K the half-time of energy transfer becomes longer than the 3Car half-time decay (about 6 μs) and below 20 K the transfer is slower than the internal decay of PR (about 100 μs). In several cases it is clear that PR and 3Car decay independently and are not in thermal equilibrium. The singlet energy transfer from carotenoid to P occurs with a high efficiency at all temperatures.
The data can be accounted for on the basis of estimated energy levels of PR and 3Car, in the context of the equilibrium 3P ←3D where 3P is the localized triplet state of P-870 and 3D is another triplet state. A reasonable kinetic scheme leads us to estimate that 3D is 0.0025 ± 0.005 eV above 3P. 3D may thus be the state observed by Shuvalov and Parson (1981). We propose that both triplet and singlet energy transfer between P and the carotenoid occur via a bacteriochlorophyll, to which the carotenoid should be tightly coupled via exchange interaction.  相似文献   

5.
Abstract— The triplet-triplet absorption spectra in aqueous solution of the acid (3LfH2+), the neutral (3LfH) and the basic (3Lf-) forms of lumifiavin (6,7,9-trimethylisoalloxazine) were measured by flash photolysis. The p K a values of the corresponding protolytic equilibria of the lumifiavin triplet were found to be 4.45±0.1 and 9.8±0.15.  相似文献   

6.
Effects of Photofrin II on energy metabolism and metabolic viability were studied in a mammalian transformed cell line (BHK-21) in dark and after photo-irradiation with visible light. Cells were allowed to accumulate Photofrin by incubating for 4 h in buffer containing Photofrin (5-60 micrograms/ml). The results show that Photofrin significantly affects the cellular energy metabolism even in the absence of light; activity of cytochrome c oxidase is decreased and glucose utilization and lactate production (glycolysis) are increased. Irradiation with light resulted in a significant decrease in the activity of cytochrome c oxidase, glycolysis, ATP content, energy charge, ratios of adenine nucleotides like ATP/ADP, ATP/AMP and cell viability (dye exclusion test). Presence of inhibitors of energy metabolism, potassium cyanide (respiration) and 2-deoxyglucose (glycolysis), further enhanced the cytotoxic effects induced by hematoporphyrin derivative and light.  相似文献   

7.
Abstract. The triplet-triplet absorption of all-trans and 11- cis retinal was measured as a function of the exciting radiation from 423 nm to 365 nm in a glass of 3-methylpentane at 77 K. This experiment was also accomplished with all-trans retinal in hexane at ambient temperature. The relative triplet formation quantum yields of all-trans and 11-cis retinal at 77 K were found to be independent (±10%) of the frequency of the exciting radiation. At room temperature we measured an increase in this relative quantum yield for all- trans retinal from 1.0 at 365 nm to 1.82 at 423 nm [Bensasson et al. (1975) measured an absolute quantum yield of 0.45 at 353 nm]. These results are used to evaluate previous interpretations for photophysical decay processes in all-trans retinal, and previous suggestions for wavelength dependent radiationless transitions are shown to be unacceptable. High energy excitation of 300 K solutions of all- trans retinal produce excited states that result in less efficient intersystem crossing. These states appear to be inaccessible in the 77 K matrices. We suggest that steric restrictions introduced by the retinal matrix interaction at 77 K are able to block this new internal conversion pathway back to the ground state.  相似文献   

8.
Abstract— The energetics of the proton pump in Halobacterium halobium is considered on a molecular level. It is proposed that absorption of light by bacteriorhodopsin leads to charge separation and sequential changes in the proton affinities some of the protein groups resulting in proton pumping against the pH gradient. Two alternative models of 'through-space' and 'through-bond' charge separation are proposed. Novel diagrams that describe the energetics of the pumping process are presented. These diagrams can be used both to examine different models of bacteriorhodopsin and for considering other photobiological processes that involve conversion of light energy to electrostatic energy.  相似文献   

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12.
Abstract—Energy migration has been studied in C-phycocyanin (C-PC) rods with traps located in the terminal trimer disc, using the Monte Carlo method and the system of differential equations. It has been found that jump time statistics can be described by the function F = C(t/0>)exp(-t/ < to>), where C is the constant, t and < t0 > are, respectively, the exciton jump time and its averaged value for chromophores of the corresponding spectral types (α 84 , β84 or β155). The values < t0 > were calculated for the cases of C-PC monomers, trimers and higher associates.
The C-PC model, which consists of three hexamers with traps located in the β84 chromophores of the peripheral trimer, was examined. It was found that the total efficiency of excitation capturing, øtr, exceeds 90%, provided "local" quantum yield of energy trapping ø0 > 10%. The ø0 value influences both the excitation lifetime (τ) and the mean number of excitation jumps (Niump) before its conversion. For the ø0 = 100% and 10%, the corresponding lifetimes and numbers of jumps were calculated to be τ= 75 and 155 ps and Njump= 105 and 222 jumps, respectively.
The dynamics of excitation redistribution along the C-PC rods and the fluorescence kinetics for various ø0 values were calculated for C-PC chromophores excited by a +, and the correlation between these processes and ø 0 , was disclosed. The transient processes of excitation redistribution were shown to proceed within a time period t < 30 ps.  相似文献   

13.
Abstract— Photosynthetic quantum conversion and early electron transport is modeled as a stochastic process on a digital computer to determine what free-energy losses are a necessary consequence of specific assumptions about the reaction structure, kinetics, and thermodynamics of the participating molecules. Maximal free-energy yield requires that all dark reactions be near equilibrium, so the potentials of all half-cells on each side of the light act are nearly the same. This near equilibrium requires that all forward rate constants be at least 102 times the rate of light absorption, and that all reverse rate constants be at least the rate of light absorption. The behavior of model systems with one primary donor and one primary acceptor is comparatively independent whether there is one or an infinite number of secondary electron donors and acceptors. A system having no metastable (e.g. triplet) state of the light-activated donor can convert light energy with nearly ideal efficiency, provided that the standard electrode potentials of the primary donor and primary acceptor half-cells are precisely located with respect to one another and to the potentials of the ultimate donor and acceptor. While not necessary for near maximal free-energy yield, a metastable intermediate allows a flexibility in the choice of half-cell potentials which is not possible in the absence of such an intermediate.  相似文献   

14.
Detection of triplet-triplet energy transfer in an aqueous solution of P-trypsin is reported. This conclusion is based on the observation that a light excited phenolate side chain can sensitize the destruction of an adjacent indole side chain. The role that the indole triplet might play in the UV-induced photolysis of /l-trypsin is also investi-gated. The results suggest that the UV (309 nm)-induced inactivation of P-trypsin is not caused by indole ring destruction but by the disruption of disulfide bonds without thiol formation.  相似文献   

15.
Irradiation of 1-(3,4-dioxopentyl)uracil (UPD) and 1-(3.4-dioxopentyl)thymine (TPD) in acetonitrile solution at 25°C, at the wavelength (280 nm) where only the pyrimidine absorbs the light, sensitizes both fluorescence and phosphorescence of the diketone chromophore in the sidechain. From comparison of the intensity in the corrected excitation spectra with the absorption spectra in acetonitrile solution, it was estimated that the yield of singlet energy transfer in UPD was 0.17 and in TPD was 0.44. It was also observed that the ratio of phosphorescence to fluorescence was greater in the sensitized emission than in that from direct excitation of the diketone chromophore. The yield of triplet energy transfer thus measured corresponds to minimum values for the yields of intersystem crossing from singlet excited state to triplet excited state of 0.075 in the uracil chromophore of UPD and of 0.14 in the thymine chromophore of TPD. These are in agreement with other recent values for these quantities. The value of this type of system as an intramolecular triplet counter is discussed.  相似文献   

16.
胺促进丙烯酸酯氧化和聚合与胺及丙烯酸酯结构有关。芳香胺氮原子或苯环上有正性取代基时,促进作用大。带醚键的丙烯酸酯氧化和聚合快。 胺引发丙烯酸酯聚合认为先是胺促进丙烯酸酯氧化,生成单体过氧化物,与胺再形成复合物,分解产生自由基,促进更多丙烯酸酯氧化,继而引起聚合。  相似文献   

17.
Abstract —Ultraviolet-radiation photolysis of thymine in the presence of cysteine gives rise to four isomeric dimers, dihydrothymine, and at least five cysteine addition products. Similar reactions occur for uracil but the products have not all been characterized in detail. The addition reactions arise from the triplet state of the pyrimidine. The initial step is production of a hydropyrimidine radical, which then reacts with cysteine to give the addition products. The triplet is quenched by cysteine with a rate constant of about 2 times 108 M-1 s-1 for thymine and 2–9 times 108 for uracil. The total yield of products gives a lower-limit estimate of the triplet yield and hence of the intersystem-crossing efficiency. These studies, combined with earlier determinations of dimer yields, show that 93% of the thymine triplets which interact with another thymine molecule are quenched without forming stable dimers. For uracil, the corresponding figure is 75%.  相似文献   

18.
Abstract —Sulfhydryl compounds such as cysteine and glutathione enhance the photochemical reactivity of 5-bromouracil irradiated in aqueous solution with ultraviolet light (Λ > 240 nm). Production of uracil and addition of the sulfhydryl compound to the 5-bromouracil residue are the major photoreactions.  相似文献   

19.
三核钨钼簇合物对苯乙烯氧化反应的催化   总被引:2,自引:0,他引:2  
关于烯烃的催化氧化,报道较多。Takao等研究了苯乙烯在Ir和Rh络合物存在下的氧化反应;Collman曾报道环己烯在Vaska络合物[IrX(CO)(PPh_3)_2]催化下氧化成环己酮和环已烯氧化物。本文采用Cotton合成的簇合物[W_3O_2(CH_3CO_2)_6(H_2O)_3]Br_2·  相似文献   

20.
Abstract— Energy-storing reactions in a system after light excitation transform the system into a thermo-dynamically metastable state. The effects of the microreversible back-reaction on the net yield of the storage process and on the stability of the products are discussed. It is shown that the inevitable losses of photon energy in the conversion process may be estimated and considered as roughly independent of the threshold frequency of the system. The best attainable conversion efficiency as a function of the threshold absorption wavelength may then be estimated. Rough calculations show an ultimate efficiency of about 20% with the optimum threshold wavelength in the range 600–800 nm.
Photochemical production of fuel, like hydrogen from water, requires that more than one photon of the solar spectrum is used per product molecule formed. The low photon density of sunlight leads to troublesome stability requirements on the intermediates in the reaction mechanism. Some features of consecutive two-photon mechanisms in organized systems and homogenous solutions are discussed.  相似文献   

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