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多通道Gamry多通道多功能電化學工作站
eQCM 10MGamry 電化學石英晶體微天平
Reference3000Gamry電化學工作站
Reference3000多功能電化學工作站
Gamry電化學工作站
Reference 600+Gamry電化學工作站
Gamry旋轉(zhuǎn)圓盤電極
Reference600+電化學工作站
Interface 1000Gamry電化學工作站
Interface 1000美國進口電化學工作站品牌
QCM-I高精度耗散型石英晶體微天平
IMPS/IMVSGamry太陽能電池測試用電化學工作站
Interface 1010Interface 1010電化學工作站
Interface 5000Gamry 電化學工作站
RDE710Gamry旋轉(zhuǎn)圓盤/旋轉(zhuǎn)環(huán)盤電極電化學測試系統(tǒng)
Gamry氧還原
發(fā)布時間:2017/4/16
點擊次數(shù):1921
This Application Note is intended to provide the reader with a general framework for
characterization of an electroactive polymer film. Electropolymerization is a convenient way
to control film growth either through repeated cycling, potential steps, or current steps.
Examination of the film redox behavior in monomer-free, fresh electrolyte provides insight on doping and dedoping of these polymer films.
Polybithiophene films were assembled by cycling an Au-coated 10 MHz quartz crystal
between 0 and 1.5 V in the presence of 1 mM bithiophene solution containing 100 mM
tetrabutylammonium perchlorate (TBAP) in acetonitrile (MeCN). Potentials are reported
against a Ag/Ag+ pseudo-reference electrode. The Teflon® cell was outfitted with a Teflon
o-ring to prevent swelling from the acetonitrile and placed inside a VistaShield™. The cell was
connected to an eQCM 10M™ which was coupled to a Reference 600™. Both instruments
were connected to a computer running Resonator™ version 5.67. Bithiophene,
electropolymerizes via a two-electron oxidation at potentials greater than ~1.25 V versus a
Ag/Ag+pseudo reference electrode.