H01B1/20

STRUCTURES FORMED FROM HIGH TECHNOLOGY CONDUCTIVE PHASE MATERIALS
20220055293 · 2022-02-24 ·

A method of forming a bulk product includes the step of coating a particulate conductive phase material with a binder phase, and forming the coated conductive phase material into at least one of sheet stock, tape formed into a bulk material. A method of forming a bulk product includes the step of coating a particulate conductive phase material with a binder phase and forming the coated conductive phase material into a bulk material. The conductive phase material includes at least one of two dimensional materials, single layer materials, carbon nanotubes, boron nitride nanotubes, aluminum nitride and molybdenum disulphide (MoS.sub.2). A component is also disclosed.

Organic semiconductor formulation
09805838 · 2017-10-31 · ·

The invention relates to a formulation comprising p-type and n-type organic semiconductors (OSC) and one or more organic solvents, its use for the preparation of organic electronic (OE) devices, especially for bulk heterojunction (BHJ) organic photovoltaic (OPV) devices, to a process for preparing an OE device, especially a BHJ OPV device, using the formulation, and an OE device, especially a BHJ OPV device, prepared using such a process or formulation.

Organic semiconductor formulation
09805838 · 2017-10-31 · ·

The invention relates to a formulation comprising p-type and n-type organic semiconductors (OSC) and one or more organic solvents, its use for the preparation of organic electronic (OE) devices, especially for bulk heterojunction (BHJ) organic photovoltaic (OPV) devices, to a process for preparing an OE device, especially a BHJ OPV device, using the formulation, and an OE device, especially a BHJ OPV device, prepared using such a process or formulation.

Conductive ink
09803098 · 2017-10-31 · ·

Provided is a conductive ink including a conductive material and at least one benzoxazine-based compound. The conductive ink of the present invention can be easily formed into a thin film, is highly conductive after sintering, and has superior adhesion to various substrates. In addition, the use of the conductive ink according to the present invention facilitates the formation of a glossy, mirror-like metal thin film with high reflectance.

SHAPE FORMING PROCESS AND APPLICATION THEREOF FOR CREATING STRUCTURAL ELEMENTS AND DESIGNED OBJECTS
20170306066 · 2017-10-26 ·

A tool provided that individually creates three-dimensional structural elements which are sequentially positioned into formation of a shaped object.

SHAPE FORMING PROCESS AND APPLICATION THEREOF FOR CREATING STRUCTURAL ELEMENTS AND DESIGNED OBJECTS
20170306066 · 2017-10-26 ·

A tool provided that individually creates three-dimensional structural elements which are sequentially positioned into formation of a shaped object.

Quantum dot composite and wavelength conversion element, photoelectric conversion device, and solar cell having the composite
09796920 · 2017-10-24 · ·

Disclosed herein is a quantum dot composite that can maintain luminous efficiency per unit quantum dot even when a quantum dot concentration is high, and therefore can achieve a high emission intensity. The quantum dot composite includes: a matrix; and quantum dots dispersed in the matrix, wherein the matrix is composed of cellulose acetate having a compositional distribution index (CDI) of 3.0 or less, and a concentration of the quantum dots is 0.05 wt % or higher.

CONDUCTIVE THICK FILM PASTE FOR SOLAR CELL CONTACTS
20170301803 · 2017-10-19 ·

The present invention relates to an inorganic reaction system used in the manufacture of electroconductive pastes. The inorganic reaction system comprises a lead containing matrix forming composition and a tellurium oxide additive. Preferably the lead containing matrix forming composition is between 5-95 wt. % of the inorganic reaction system, and the tellurium oxide additive is between 5-95 wt. % of the inorganic reaction system. The lead containing matrix forming composition may be a glass frit, and may comprise lead oxide. Another aspect of the present invention relates to an electroconductive paste composition that comprises metallic particles, an inorganic reaction system as previously disclosed, and an organic vehicle. Another aspect of the present invention relates to an organic vehicle that comprises one or more of a binder, a surfactant, a solvent, and a thixatropic agent. Another aspect of the present invention relates to a solar cell printed with an electroconductive paste composition as disclosed, as well as an assembled solar cell module. Another aspect of the present invention relates to a method of producing a solar cell.

THERMOFORMABLE CONDUCTIVE INKS AND COATINGS AND A PROCESS FOR FABRICATION OF A THERMOFORMED DEVICE

Thermoformable inks and coatings, such as conductive inks and coatings, are provided. These inks and coatings can be used in printed electronic thermoformed devices. These conductive inks and coatings are suitable to be used as one or more printed layers of a printed electronic device printed with multiple layers of inks and/or coatings (printed stacked array). Methods of fabricating printed electronic devices using the thermoformable inks and coatings are also provided.

SOLID ELECTROLYTE COMPOSITION, ELECTRODE SHEET FOR BATTERY USING THE SAME, ALL SOLID STATE SECONDARY BATTERY, AND METHOD FOR MANUFACTURING ELECTRODE SHEET FOR BATTERY AND ALL SOLID STATE SECONDARY BATTERY

Provided are a solid electrolyte composition including an inorganic solid electrolyte having a conductivity of ions of metals belonging to Group I or II of the periodic table, binder particles constituted of a polymer having a reactive group, a dispersion medium, and at least one component selected from a crosslinking agent or a crosslinking accelerator, an electrode sheet for a battery produced using the same, an all solid state secondary battery, and a method for manufacturing an electrode sheet for a battery and an all solid state secondary battery.