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Porphyrins solution studies

Solution studies on the adducts formed by various heterocyclic bases with some nickel porphyrins have been reported.2899-2902 From these studies one can conclude that pyridine and substituted pyridines form predominantly 1 1 adducts while piperidine, imidazole and substituted imidazoles also form 1 2 complexes or a mixture of both 1 1 and 1 2 complexes. Electrochemical redox reactions of nickel porphyrins have been investigated.2903,2904... [Pg.274]

Studies on porphyrins in aqueous solution are complicated by their lack of solubility (in acidic solutions) and their tendency to associate (in basic solutions). These difliculties may be overcome by using soluble porphyrins with carboxylate or sulfonate substituents, although the uroporphyrins are convenient to study as they are freely soluble, and do not aggregate at concentrations necessary for many solution studies. [Pg.616]

A second type of mechanism would be the reductive or oxidative demetallation of Intermediate metalloporphyrlns, allowing nickel and vanadium to complex. From the electrochemistry of porphyrins, and solution studies Involving oxidizing and reducing... [Pg.200]

Utilizing FT-EPR teclmiques, van Willigen and co-workers have studied the photoinduced electron transfer from zinc tetrakis(4-sulfonatophenyl)porphyrin (ZnTPPS) to duroquinone (DQ) to fonn ZnTPPS and DQ in different micellar solutions [34, 63]. Spin-correlated radical pairs [ZnTPPS. . . DQ ] are fomied initially, and the SCRP lifetime depends upon the solution enviromnent. The ZnTPPS is not observed due to its short T2 relaxation time, but the spectra of DQ allow for the detemiination of the location and stability of reactant and product species in the various micellar solutions. While DQ is always located within the micelle, tire... [Pg.1614]

Sapphyrins were discovered serendipitously by Woodward33 during the course of synthetic studies directed towards the total synthesis of vitamin B, 2. The sapphyrins were the first example of expanded porphyrins in the literature. Due to sapphyrin exhibiting a deep-blue color in the crystalline state and intense green in solution. Woodward coined the expression sapphyrin with reference to the deep-blue color of sapphire stones. [Pg.702]

Mechanisms of micellar reactions have been studied by a kinetic study of the state of the proton at the surface of dodecyl sulfate micelles [191]. Surface diffusion constants of Ni(II) on a sodium dodecyl sulfate micelle were studied by electron spin resonance (ESR). The lateral diffusion constant of Ni(II) was found to be three orders of magnitude less than that in ordinary aqueous solutions [192]. Migration and self-diffusion coefficients of divalent counterions in micellar solutions containing monovalent counterions were studied for solutions of Be2+ in lithium dodecyl sulfate and for solutions of Ca2+ in sodium dodecyl sulfate [193]. The structural disposition of the porphyrin complex and the conformation of the surfactant molecules inside the micellar cavity was studied by NMR on aqueous sodium dodecyl sulfate micelles [194]. [Pg.275]

The chemical reactivity of the organoruthenium and -osmium porphyrin complexes varies considerably, with some complexes (M(Por)R2, M(Por)R and Os(OEP)(NO)R) at least moderately air stable, while most are light sensitive and Stability is improved by handling them in the dark. Chemical transformations directly involving the methyl group have been observed for Ru(TTP) NO)Me, which inserts SO2 to form Ru(TTP)(N0) 0S(0)Me and Ru(OEP)Me which undergoes H- atom abstraction reactions with the radical trap TEMPO in benzene solution to yield Ru(OEP)(CO)(TEMPO). Isotope labeling studies indicate that the carbonyl carbon atom is derived from the methyl carbon atom. "" Reaction of... [Pg.269]

A poly(L-lysine) dendrimer 23 which carries 16 free-base porphyrins in one hemisphere and 16 Zn porphyrins in the other has been synthesized and studied in dimethylformamide solution [54]. In such a dendrimer, energy transfer from the Zn porphyrins to the free-base units can occur with 43% efficiency. When the 32 free base and zinc porphyrins were placed in a scrambled fashion, the efficiency of energy transfer was estimated to be 83% [55]. Very efficient (98%) energy transfer from Zn to free-base porphyrins was also observed in a rigid, snowflake-shaped structure in which three Zn porphyrin units alternate with three free-base porphyrin units [56]. [Pg.174]


See other pages where Porphyrins solution studies is mentioned: [Pg.662]    [Pg.178]    [Pg.291]    [Pg.138]    [Pg.100]    [Pg.145]    [Pg.340]    [Pg.100]    [Pg.249]    [Pg.140]    [Pg.138]    [Pg.245]    [Pg.466]    [Pg.17]    [Pg.1]    [Pg.696]    [Pg.3790]    [Pg.1964]    [Pg.916]    [Pg.251]    [Pg.24]    [Pg.29]    [Pg.301]    [Pg.249]    [Pg.304]    [Pg.80]    [Pg.176]    [Pg.362]    [Pg.653]    [Pg.653]    [Pg.654]    [Pg.668]    [Pg.674]    [Pg.30]    [Pg.38]    [Pg.40]    [Pg.439]    [Pg.324]    [Pg.138]   
See also in sourсe #XX -- [ Pg.616 ]

See also in sourсe #XX -- [ Pg.616 ]




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Solution studies

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