Abstract:
A conductive polymer gel contains water, as a main component, a conductive conjugated polymer, and a surfactant and/or an alcohol, and also it may contain an electrolyte. The conductive conjugated polymer may further be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a conductive conjugated polymer colloidal dispersion and/or a conductive conjugated polymer solution and leaving the mixture to stand, thereby to gelatinize the mixture.
Abstract:
A conductive polymer gel contains water, as a main component, a conductive conjugated polymer, and a surfactant and/or an alcohol, and also it may contain an electrolyte. The conductive conjugated polymer may further be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a conductive conjugated polymer colloidal dispersion and/or a conductive conjugated polymer solution and leaving the mixture to stand, thereby to gelatinize the mixture.
Abstract:
A conductive polymer gel contains water, as a main component, a conductive conjugated polymer, and a surfactant and/or an alcohol, and also it may contain an electrolyte. The conductive conjugated polymer may further be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a conductive conjugated polymer colloidal dispersion and/or a conductive conjugated polymer solution and leaving the mixture to stand, thereby to gelatinize the mixture.
Abstract:
A conductive polymer gel contains water, as a main component, a conductive conjugated polymer, and a surfactant and/or an alcohol, and also it may contain an electrolyte. The conductive conjugated polymer may further be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a conductive conjugated polymer colloidal dispersion and/or a conductive conjugated polymer solution and leaving the mixture to stand, thereby to gelatinize the mixture.
Abstract:
A conductive polymer gel which comprises water as a major component, a conductive conjugated polymer, and a surfactant and/or an alcohol. It may contain an electrolyte. The conductive conjugated polymer may be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a colloidal dispersion of a conductive conjugated polymer and/ or to a solution of a conductive conjugated polymer and allowing the mixture to stand to thereby cause it to gel.
Abstract:
A conductive polymer gel contains water, as a main component, a conductive conjugated polymer, and a surfactant and/or an alcohol, and also it may contain an electrolyte. The conductive conjugated polymer may further be doped with a dopant. The conductive polymer gel is obtained by adding a surfactant and/or an alcohol to a conductive conjugated polymer colloidal dispersion and/or a conductive conjugated polymer solution and leaving the mixture to stand, thereby to gelatinize the mixture.
Abstract:
PROBLEM TO BE SOLVED: To avoid both deterioration on a communication performance in an antenna and adverse effect on display in an information display layer when a power source for displaying information on the information display layer is secured via the antenna.SOLUTION: An electronic paper 30 having an overall electrode provided thereon and changeably displaying information depending on an electric potential is juxtaposed to an antenna 21 supplying a power supply acquired by noncontact communication to the electronic paper 30. In the constitution in which they have each attachment surface which is attached to an object, the electronic paper 30 has an aluminium layer 50 provided on its attachment surface side, and the antenna 21 has a magnetic layer 90 on its attachment surface side.
Abstract:
PROBLEM TO BE SOLVED: To make it possible to store while winding by generating no blocking with an adhesive coated and to avoid generation of folding unevenness in folding portions when folding. SOLUTION: Preprinting layers are formed on a base sheet 1, adhesive layers 13a, 13b overlie the preprinting layers 12a, 12b by coating a radiation curable adhesive adhering by compressing, the adhesive layers 13a, 13b are cured, thereafter the base sheet 1 is wound and stored. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an electrochromic element with excellent response even under low temperature. SOLUTION: The electrochromic element 1 comprises a solid electrolyte layer 12 and an electrochromic element layer 11 interposed between a pair of electrodes 13a, 13b wherein the solid electrolyte layer 12 is at least constructed with water as a main component, a conductive conjugate polymer, a conductive polymer gel including a surfactant and/or an alcohol and an electrolyte included in the conductive polymer gel. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide a toner having a low content of metal powder and reducing the environmental load, and to provide an antistatic sheet and a printed circuit board using the toner. SOLUTION: The toner 1 comprises at least a core part 11 made of a conductive polymer gel 2 essentially comprising water and containing a conductive conjugated polymer, a surfactant and/or an alcohol, and a resin part 12 applied on the surface of the core part 11. COPYRIGHT: (C)2005,JPO&NCIPI