William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
Doping of polyacetylene with arsenic pentafluoride is found to involve oxidation of the polymer according to the mechanism: 2(CH)x + 3AsF5 → 2(CH)+x + 2AsF-6 + AsF3. The AsF-6 ions intercalate beteeen the polymer chains in a nonrandom fashion. Oxidation of the polymer is accompanied by replacement of the original interband transition in the visible by a featureless transition extending into the infrared. Treatment of the doped polyacetylene with ammonia destroys the enhanced conductivity and regenerates a visible spectrum similar to that of the undoped polymer but somewhat blue-shifted. Possible explanations are offered for these results in terms of the proposed mechanism of doping. © 1979.
William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010
Oliver Schilter, Alain Vaucher, et al.
Digital Discovery
Michael Ray, Yves C. Martin
Proceedings of SPIE - The International Society for Optical Engineering
J.R. Thompson, Yang Ren Sun, et al.
Physica A: Statistical Mechanics and its Applications