Electrochemically polymerized polypyrrole(PPy) shows changes in visibl
e light spectrum during electrochemical reduction revealing changes in
electron states of the conjugated double bond. The concentration of p
olarons increases fast in the early stage during reduction on expense
of bipolarons but drops off momentarily to show an increase of bipolar
on concentration which again decreases with further reduction. The red
uced PPy is unstable to show changes in the visible light spectrum in
less than one minute after cutting off applied potential. The absorpti
on peak at 420nm assigned as pi-pi transition in the conjugated doubl
e bond shrinks fast to show a strong absorption around 800nm assigned
as bipolaron. It is observed that the spectral changes slow down when
hydroquinone is added to the system. The addition of hydroquinone in t
he system stabilizes polaron not to couple with each other during natu
ral oxidation of PPy and makes the polymer segments not to turn easily
into a bipolaron state from a polaron state. Hydroquinone is oxidized
in an aqueous system to produce protons which seem to stabilize free
radicals in the polaron state. It is suggested that deprotonation of -
N+H in the pyrrole ring develops into production of an imine structure
to loose the electrochemical reactivity.