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1 fraction on samples cocrystallized with NiII(octaethylporphyrin).
2 n D(5h)-Sc(3)N@C(80).Ni(OEP).2benzene (OEP = octaethylporphyrin).
3 o liberated are trapped by complexation with octaethylporphyrin.
4 strated using a mixture of nickel and cobalt octaethylporphyrin.
5 y in the presence of the sensitizer platinum octaethylporphyrin.
6  in the complete series of nitro-substituted octaethylporphyrins.
7 nt phase containing a benchmark platinum(II) octaethylporphyrin/9,10-diphenylanthracene sensitizer/ac
8 pyrrole bound to d(T(2)AG(3))(4) better than octaethylporphyrin, a finding rationalized by cyclo[6]py
9 ists of a lipid bilayer containing magnesium octaethylporphyrin, an aqueous or interfacial electron a
10 cal sensor based on the use of aluminum(III)-octaethylporphyrin and a lipophilic pH indicator (4',5'-
11 MTO)/pyrazole-mediated H(2)O(2) oxidation of octaethylporphyrin and a number of meso-tetraarylporphyr
12 romatography (HPLC), cocrystallized with Ni-(octaethylporphyrin), and characterized by single-crystal
13 ion energies of Zn(protoporphyrin IX) and Zn(octaethylporphyrin) are determined from band-shape analy
14 by cyclo[6]pyrrole having a 2+ charge, while octaethylporphyrin bears no charge.
15      The crystal structure of the nickel(II) octaethylporphyrin/ benzene solvate shows no significant
16 atment of the mono-meso-substituted iron(II) octaethylporphyrin complexes, (py)2Fe(II)(meso-NO2-OEP),
17                         Moreover, cobalt(II) octaethylporphyrin (CoOEP) and NiOEP desorb at different
18 e reversible binding of O(2) with cobalt(II) octaethylporphyrin (CoOEP) supported on highly oriented
19 pectra of Co(II)(OEP) (OEP is the dianion of octaethylporphyrin) doped into a range of diamagnetic cr
20 ment is based on the oxygen-sensitive dye Pt-octaethylporphyrin embedded in a polystyrene matrix.
21 ptor systems, a symmetrical parachute-shaped octaethylporphyrin-fullerene dyad has been synthesized.
22 n and then used directly in the synthesis of octaethylporphyrin (H2OEP, 14) and octaethyltetraphenylp
23 is based on the equilibrium of a indium(III) octaethylporphyrin hydroxide ion-bridged dimer species w
24 plasticized PVC films containing indium(III) octaethylporphyrin hydroxide, along with optimized level
25 roelectrochemistry and voltammetry of nickel octaethylporphyrin (Ni(OEP)) and nickel octaethylporphin
26 -opening/pinacol-pinacolone rearrangement of octaethylporphyrin (OEP) generates a beta-ketochlorin an
27   Starting from commercially available Ni(II)octaethylporphyrin (OEP), an efficient approach for the
28 itylporphyrin (TMP), and 2,3,7,8,12,13,17,18-octaethylporphyrin (OEP).
29                          meso-(2-Formylvinyl)octaethylporphyrin on reaction with cyanotrimethylsilane
30  yield is higher; (ii) in the presence of an octaethylporphyrin Pd complex, as sensitizer, it undergo
31  of a dye cocktail composed of palladium(II) octaethylporphyrin (PdOEP, triplet sensitizer) and 9,10-
32 iplet is observed in phosphorescent platinum octaethylporphyrin (PtOEP), on a graphene substrate.
33 zed PVC films containing In(III) and Ga(III) octaethylporphyrins suggests that, in the absence of pre
34 2-MeHIm)(NO)]ClO(4).0.5CH(2)Cl(2) (H(2)OEP = octaethylporphyrin), there are two independent molecules
35  (1) (H(2)N-OEP is the dianion of meso-amino-octaethylporphyrin) to air results in the immediate form