摘要:
The present invention relates to a method for producing an antistatic adhesive tape. More particularly, the present invention relates to an adhesive tape in which one surface of the tape can have a surface resistivity in the range of 106-1011Ω/□ by forming a conductive polymer-based antistatic layer on the surface, and the opposite surface can have a controllable surface resistivity in the range of 103-1010Ω/□ by forming a conductive polymer-based hard coating layer on the opposite surface, and at the same time, has excellent resistance, to various solvents. The adhesive tape produced by the inventive method does not cause static electricity when it is detached from the surface of electronic parts or films to which it had been attached. Also, the tape has an excellent antistatic property on its surface when it is stuck or attached to the electronic part or film surface. Also, it has excellent resistance to various solvents.
摘要:
This invention relates to a transparent electrode film for a touch screen panel using poly(3,4-ethylenedioxythiophene) (PEDOT) that is a kind of conductive polymer, and more particularly to a technique of manufacturing a transparent electrode film by forming a PEDOT coating on the surface of a transparent substrate such as polyester wherein a photocurable resin layer is formed on both surfaces of the substrate film to reduce changes in surface resistance upon aging testing, and an electrode layer containing PEDOT as an effective component is formed on the photocurable resin layer formed on one surface thereof.
摘要:
Disclosed herein is a method of synthesizing a conducting polymer using a polymer, having a substituent in a part thereof, as a dopant, in which a variety of polymers is substituted with a predetermined functional group to serve as a dopant such that the substituted functional group functions as the dopant of the conducting polymer, or a monomer having a substituent able to act as a dopant is copolymerized to prepare a polymer dopant having a substituent in a part thereof. The partially substituted polymer dopant used in this invention may serve as a dopant upon synthesis of the conducting polymer or upon additional doping of the synthesized polymer. Compared to a conventional monomer dopant, the polymer dopant does not emit low-molecular-weight material, and has higher solubility. Further, compared to a polymer dopant having a substituent such as a sulfonic acid group throughout, the synthesized conducting polymer can have superior mechanical properties and maximum conductivity amounting to 5×10″1 S/cm.
摘要翻译:本文公开了使用其部分具有取代基的聚合物作为掺杂剂合成导电聚合物的方法,其中各种聚合物被预定的官能团取代以用作掺杂剂,使得取代的官能团 作为导电性聚合物的掺杂剂,或具有能够作为掺杂剂的取代基的单体共聚以制备其一部分具有取代基的聚合物掺杂剂。 本发明中使用的部分取代的聚合物掺杂剂可以在合成导电聚合物时或在合成聚合物的额外掺杂时用作掺杂剂。 与常规单体掺杂剂相比,聚合物掺杂剂不会发射低分子量材料,并且具有较高的溶解度。 此外,与全部具有磺酸基的取代基的聚合物掺杂剂相比,合成的导电性聚合物可以具有优异的机械性能和最大导电率达5×10 -1 s / cm。
摘要:
Disclosed is an electrochemical device, using, as an electrode material, a poly(ionic liquid)-modified graphene manufactured by binding an ionic liquid polymer to the surface of graphene.
摘要:
Disclosed is a conductive polymer composition for a polarizer film to impart the surface of the polarizer film for liquid crystal displays with antistatic performance. The composition is applied on the surface of the polarizer film without additional surface treatment and is then dried, thereby manufacturing a highly reliable antistatic polarizer film, which has high adhesive strength between the polarizer film and the adhesive layer and also results in no transfer of the adhesive layer of the polarizer film to a glass or transparent polymer substrate when the polarizer film is attached to the substrate and then separated therefrom.
摘要:
Provided is a dust-free diffusion plate for a liquid crystal display (LCD) manufactured by coating and drying a conductive material to a thickness of no more than 2D on a surface of the diffusion plate to prevent degradation of image quality due to dust build-up on the diffusion plate.
摘要:
Disclosed is a method of manufacturing nano-sized metal wire having a length-to-diameter ratio of at least 50 by using an ionic liquid in a polyol reduction using a metal salt as a precursor.
摘要:
Disclosed is a conductive polymer which is easily dispersed in an organic solvent. A method of preparing the conductive polymer adapted to be dispersed in an organic solvent is also provided, which includes chemically polymerizing a monomer using as a dopant anion a phosphate-based compound having solubility in an organic solvent. The conductive polymer capable of being dispersed in various organic solvents can be obtained through a simple preparation process, and thus can be utilized in the fields of applied materials in which the use of conventional water-dispersible conductive polymers is limited.
摘要:
The present invention relates to a spacer for a flexible printed circuit board used in a high temperature process. In particular, in the spacer formed with a permanent anti-static layer for the flexible printed circuit board used in the high temperature process of the present invention, the anti-static layer is formed by coating an anti-static solution comprising a metal oxide, an organic or inorganic binder, and additives for supplying a releasing property, as effective ingredients, and drying it to thereby provide the permanent anti-static property and the releasing property on the surface of the spacer, and the spacer can be used at a high temperature process. The spacer of the present invention is not a spacer for use in general delivery, which can be used in room temperature, and the spacer of the present invention can be used at a high temperature of above 150° C., and does not produce black impurities, and further has the releasing property for preventing the separation of the solder resist of the flexible printed circuit board during the high temperature process.
摘要:
Disclosed is a method of manufacturing nano-sized metal wire having a length-to-diameter ratio of at least 50 by using an ionic liquid in a polyol reduction using a metal salt as a precursor.