Poly(3,4-alkylenedioxypyrrole)s: Highly stable electronically conducting and electrochromic polymers

被引:164
作者
Schottland, P [1 ]
Zong, K [1 ]
Gaupp, CL [1 ]
Thompson, BC [1 ]
Thomas, CA [1 ]
Giurgiu, I [1 ]
Hickman, R [1 ]
Abboud, KA [1 ]
Reynolds, JR [1 ]
机构
[1] Univ Florida, Dept Chem, Ctr Macromol Sci & Engn, Gainesville, FL 32611 USA
关键词
D O I
10.1021/ma000490f
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A series of poly(3,4-alkylenedioxypyrrole)s are reported as a new class of electronically conducting polymers exhibiting especially low oxidation potentials from ca. -0.6 to -0.4 V vs Fc/Fc(+) (equivalent to -0.15 to +0.05 V vs SCE) as desired for ambient stability of the doped and conducting states. These polymers exhibit unique combinations of multicolor electrochromism, switching from a red or orange neutral state to a light blue/gray doped state, passing through a darker intermediate state (brown), as examined by in situ colorimetry. High spectral contrast ratios have been measured throughout the visible region with a maximum Delta%T = 76% at 534 nm for poly[3,4-(2,2-dimethylpropylenedioxy)pyrrole) (PProDOP-(CH3)(2)). PProDOP-(CH3)(2) exhibits outstanding redox switching stability, being able to undergo 40 000 deep double-potential switches between its doped and neutral states (1 s, Delta%T-max = 76%) while retaining more than 90% of its electroactivity. A high level of stability to overoxidation has also been observed as these materials show limited degradation of their electroactivity at potentials 2 V above their half-wave potential. Triflate-doped free-standing films of PEDOP and PProDOP, having high electrical conductivities of 83 and 95 S/cm, respectively, have been obtained by galvanostatic deposition at low temperature (-7 degrees C).
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页码:7051 / 7061
页数:11
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共 52 条
[21]  
MASTROGOSTINO M, 1993, APPL ELECTROACTIVE P
[22]   Tailoring electrochromic properties using poly(N-vinylcarbazole) and poly(N-phenyl-2-(2′-thienyl)-5-(5"-vinyl-2"-thienyl)pyrrole) blends [J].
Meeker, DL ;
Mudigonda, DSK ;
Osborn, JM ;
Loveday, DC ;
Ferraris, JP .
MACROMOLECULES, 1998, 31 (09) :2943-2946
[23]  
MERZ A, 1995, SYNTHESIS-STUTTGART, P795
[24]  
Monk P.M. S., 1995, ELECTROCHROMISM FUND
[25]   The effect of ferrocyanide on the performance of heptyl viologen-based electrochromic display devices [J].
Monk, PMS .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1997, 432 (1-2) :175-179
[26]   Organic electrochromic materials [J].
Mortimer, RJ .
ELECTROCHIMICA ACTA, 1999, 44 (18) :2971-2981
[27]   Electrochromic materials [J].
Mortimer, RJ .
CHEMICAL SOCIETY REVIEWS, 1997, 26 (03) :147-156
[28]   Compositional control of electrochromic properties in copolymers of N-vinylcarbazole and N-phenyl-2-(5′-vinyl-2′-thienyl)-5-(2"-thienyl)pyrrole [J].
Mudigonda, DSK ;
Meeker, DL ;
Loveday, DC ;
Osborn, JM ;
Ferraris, JP .
POLYMER, 1999, 40 (12) :3407-3412
[29]  
Nassau Kurt., 1998, Color for Science, Art and Technology
[30]   Effect of electrolyte solvent on the conductivity and structure of as-prepared polypyrrole films [J].
Ouyang, J ;
Li, YF .
POLYMER, 1997, 38 (08) :1971-1976