The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel protoporphyrins IX has been investigated over the pH 0–14 range. In the investigated potential domain the metalloporphyrins were observed in four different oxidation states (MI, MII, MIII and MIV). The metalloporphyrins differ in the potentials at which the redox transitions occur, but the observed pH dependence of the redox transitions was similar for the different metalloporphyrins and revealed that the MII/MIII and MIII/MIV transitions were accompanied by a hydroxide transfer at high pH. The fact that the metalloporphyrins are immobilized on graphite does not seem to have a large influence on their redox behavior, as can be deduced from the co...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
With the aim of better understanding the electronic and structural factors which govern electron-tra...
meso-(Tetrakis(benzo-15-crown-5)porphyrin (TCP) and its metal (Mg(II), $V^{IV}0$, Ni(II), Cu(II), Zn...
In the past researches, the redox chemistry of cobalt porphyrins have studied extensively. Scientist...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel prot...
With the aim of better understanding the electronic and structural factors which govern electron-tra...
meso-(Tetrakis(benzo-15-crown-5)porphyrin (TCP) and its metal (Mg(II), $V^{IV}0$, Ni(II), Cu(II), Zn...
In the past researches, the redox chemistry of cobalt porphyrins have studied extensively. Scientist...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...
International audienceThe redox and spin versatilities of manganese–porphyrin complexes [MnIIP] are ...