摘要:
An electronic device includes a substrate, a first conductive material layer formed on the substrate, a patterning layer formed on the first conductive material layer, the patterning layer including first and second patterning layer parts having different critical surface tension, an insulation layer formed on the second patterning layer part of the patterning layer, the insulation layer including first and second insulation layer parts having different critical surface tension, and a second conductive material layer formed on the first patterning layer part and the first insulation layer part.
摘要:
An electron device includes at least an electrode layer, a semiconductor layer and an insulator layer laminated on a substrate, wherein the insulator layer contains a polyimide material obtained by using at least one of a polyamic acid and derivatives of the polyamic acid, the polyamic acid being obtained by reacting one or more of tetracarbonic acid dianhydride compounds selected from the group consisting of a tetracarbonic anhydride and derivatives of the tetracarbonic anhydride, with a diamine compound, the tetracarbonic dianhydride compound containing one or more components of tetracarbonic dianhydride compound selected from a specific group of tetracarbonic acid dianhydrides and the derivatives thereof.
摘要:
An electronic device includes a substrate, a first conductive material layer formed on the substrate, a patterning layer formed on the first conductive material layer, the patterning layer including first and second patterning layer parts having different critical surface tension, an insulation layer formed on the second patterning layer part of the patterning layer, the insulation layer including first and second insulation layer parts having different critical surface tension, and a second conductive material layer formed on the first patterning layer part and the first insulation layer part.
摘要:
A layered structure comprises a variable wettability layer including a material that changes a critical surface tension in response to energy provided thereto, the wettability changing layer including at least a high surface energy part of large critical surface tension and a low surface energy part of low critical surface tension, a conductive layer formed on the variable wettability layer at the high surface energy tension part, and a semiconductor layer formed on the variable wettability layer at the low surface energy part.
摘要:
A layered structure comprises a variable wettability layer including a material that changes a critical surface tension in response to energy provided thereto, the wettability changing layer including at least a high surface energy part of large critical surface tension and a low surface energy part of low critical surface tension, a conductive layer formed on the variable wettability layer at the high surface energy tension part, and a semiconductor layer formed on the variable wettability layer at the low surface energy part.
摘要:
A layered structure comprises a variable wettability layer including a material that changes a critical surface tension in response to energy provided thereto, the wettability changing layer including at least a high surface energy part of large critical surface tension and a low surface energy part of low critical surface tension, a conductive layer formed on the variable wettability layer at the high surface energy tension part, and a semiconductor layer formed on the variable wettability layer at the low surface energy part.
摘要:
A method of manufacturing an organic transistor active substrate is disclosed. The organic transistor active substrate includes an organic transistor in which a first electrode is formed on a substrate, a first insulating film is formed on the first electrode, a pair of second electrodes is formed on the first insulating film, and an active layer made of an organic semiconductor material is formed on the pair of second electrodes. The organic transistor is laminated with a second insulating film, and the second insulating film is laminated with a third electrode which is electrically coupled to one of the second electrodes via a through-hole provided through the second insulating film. The first electrode is formed by inkjet ejection; the first insulating film is formed by coating; the pair of second electrodes is formed by inkjet ejection; the active layer is formed by inkjet ejection; the second insulating film is formed by screen printing; and the third electrode is formed by screen printing.
摘要:
A disclosed laminated structure includes a wettability-variable layer containing a wettability-variable material whose surface energy changes when energy is applied thereto and including at least a high-surface-energy area having high surface energy and a low-surface-energy area having low surface energy; and a conductive layer formed on the high-surface-energy area. The high-surface-energy area includes a first area and a second area extending from the first area and having a width smaller than that of the first area.
摘要:
A laminate structure is disclosed that has a region having high surface free energy and a region having low surface free energy that are well separated, has high adhesiveness between an underlying layer and a conductive layer, and can be formed easily with low cost. The laminate structure includes a wettability-variable layer including a first surface free energy region of a first film thickness and a second surface free energy region of a second film thickness, and a conductive layer formed on the second surface free energy region of the wettability-variable layer. The second film thickness is less than the first film thickness and the surface free energy of the second surface free energy region is made higher than the surface free energy of the first surface free energy region by applying a predetermined amount of energy on the second surface free energy region.
摘要:
A laminate structure is disclosed that has a region having high surface free energy and a region having low surface free energy that are well separated, has high adhesiveness between an underlying layer and a conductive layer, and can be formed easily with low cost. The laminate structure includes a wettability-variable layer including a first surface free energy region of a first film thickness and a second surface free energy region of a second film thickness, and a conductive layer formed on the second surface free energy region of the wettability-variable layer. The second film thickness is less than the first film thickness and the surface free energy of the second surface free energy region is made higher than the surface free energy of the first surface free energy region by applying a predetermined amount of energy on the second surface free energy region.