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Matches 1,051 - 1,100 out of 41,215

Document Document Title
WO/2021/199550A1
This solid electrolyte material includes Li, Ca, Y, Sm, X, and O, where X is at least one selected from the group consisting of F, Cl, Br, and I.  
WO/2021/192548A1
A proton conductor according to the present disclosure contains a compound represented by chemical formula BaZr(1 – x - y)YbxScyO3-δ, wherein 0 < x < 0.5, 0 < y < 0.5, (x + y) < 0.5 and 0 < δ < 0.5 are satisfied.  
WO/2021/193826A1
An inorganic-solid-electrolyte-containing composition that contains an inorganic solid electrolyte and a polymer binder, wherein the polymer binder includes a specified polymer, and the weight-average molecular weight and content amount ...  
WO/2021/191601A1
Methods for producing a conductive element precursor and a conductive element, such as a tape or wire, are provided. The methods comprise growing a plurality of carbon nanotubes on a metallic substrate wherein the substrate has a plurali...  
WO/2021/194062A1
The present invention relates to a solar cell electrode conductive paste comprising a metal powder, glass frit and an organic vehicle. Lay-down factor A of a bus-bar electrode can be calculated by formula 1, lay-down factor B of a finger...  
WO/2021/194060A1
The present invention provides a conductive paste for a solar cell electrode, comprising a metal powder, a glass frit, a metal oxide, an organic binder and a solvent, wherein the metal oxide comprises at least one metal oxide selected fr...  
WO/2021/193911A1
A purpose of the present invention is to provide resin particles that have excellent resistance to heat, that, when used as base particles of electrically conductive particles, allows implementation of thermocompression bonding with a lo...  
WO/2021/193917A1
Provided are: a hydride ion conductor having a composition represented by formula (1) of M1 aM2 bM3 cHxX1 yX2 z; a manufacturing method therefor; a catalyst composed of said hydride ion conductor; a battery electrolyte including said hyd...  
WO/2021/193192A1
This sulfide solid electrolyte contains lithium (Li) element, phosphorus (P) element, sulfur (S) element and a halogen (X) element. The molar ratio (Li/P) of lithium (Li) element to phosphorus (P) element satisfies the expression of 3.7<...  
WO/2021/193354A1
The present invention provides a resin composition which is capable of forming a pattern that achieves a good balance between adhesion and good dispersibility (i. e. good conductivity in cases where the resin composition contains conduct...  
WO/2021/193203A1
Provided is a feature that can improve ion conductivity. An electrolyte is characterized by containing inorganic composite particles in which are composited: a compound having one or more functional groups selected from (meth)acryloxy gr...  
WO/2021/194061A1
The present invention relates to a silver powder preparation method comprising: a silver powder preparation step of preparing a silver salt, which comprises silver ions, and then reducing the silver ion so as to precipitate silver partic...  
WO/2021/192523A1
A copper ink for forming electroconductive films through burning, the copper ink being printable by screen printing on substrates and forming electroconductive films having reduced electrical resistance. The copper ink is for burning i...  
WO/2021/194588A1
Provided in this patent disclosure are two types of novel fluoro-monomers that can be polymerized for the fabrication of ion-exchange fluoropolymers. In addition, new proton-conductive zirconium-perfluorophosphonic acid fluoropolymer mem...  
WO/2021/191695A1
Systems and methods which provide lithium-ion battery configurations with high energy density are disclosed. Embodiments provide lithium-ion batteries comprising an anode that includes 30 to 85 wt.% silicon, thereby facilitating high ene...  
WO/2021/193630A1
One aspect of the present disclosure resides in a method for producing conductive composite particles each including a resin particle and a conductive fine particle contained in the resin particle, the method comprising: a step for prepa...  
WO/2021/193204A1
The present invention provides: a composite capable of forming, while using a lithium-containing oxide, a lithium ion conductor indicating a favorable lithium ionic conductance, through a pressure treatment without performing sintering a...  
WO/2021/194299A1
An electrode composition is provided. The electrode composition according to one embodiment of the present invention includes, as a conductive component, a silver-nickel powder including a crystalline phase having a peak at 2θ 38.5 ± 0...  
WO/2021/193736A1
A silver powder that includes silver particles and an adherend that is adhered to the surface of the silver particles and includes a metal oxide that has a lower melting point than silver.  
WO/2021/193129A1
This electrode material of the present disclosure contains a compound represented by chemical formula BaZr1-x-yMxCoyO3-δ. Here, M represents In or Yb, and 0<x<1, 0<y<1, 0<(x+y)<1 and...  
WO/2021/194262A1
A solid ion conductor compound includes lithium (Li), phosphorus (P), hafnium (Hf), and sulfur (S), wherein if oxygen (O) is present, a content of the O is less than an amount of the Hf, and wherein the solid ion conductor compound has a...  
WO/2021/186942A1
The present invention provides a conductive composition having high electrical conductivity and excellent water durability as a result of including (a) a polymer having a specified repeating unit and (b) a polymer of any of the following...  
WO/2021/187584A1
In this transparent conductor layer 1, the ratio of the crystallite size in a (440) surface to the crystallite size in a (400) surface is at least 0.80.  
WO/2021/187573A1
A transparent conductive film (X) according to the present invention comprises a transparent resin substrate (10) and a transparent conductive layer (20) in this order in the thickness direction (H). In a planar direction perpendicular t...  
WO/2021/187391A1
A positive electrode material 1000 according to the present disclosure contains a positive electrode active material 110 and a first solid electrolyte material 111 that covers at least a part of the surface of the positive electrode acti...  
WO/2021/186832A1
This solid electrolyte material contains Li, Ti, Zr, and F.  
WO/2021/187583A1
This transparent electroconductive layer 1 contains krypton atoms. The ratio of the integrated intensity of the X-ray diffraction peak of the (440) plane to the integrated intensity of the X-ray diffraction peak of the (222) plane is 0.1...  
WO/2021/188044A1
The present disclosure provides a method and an apparatus for manufacturing a porous graphene layer across a precursor material layer on a substrate. The method comprises: determining a first temperature threshold and a second temperatur...  
WO/2021/187587A1
A transparent conductive film (1) according to the present invention is sequentially provided with a transparent resin base material (21) and a transparent conductive layer (3) toward one side in the thickness direction. The transparent ...  
WO/2021/187581A1
A transparent conductive film (X) according to the present invention comprises a transparent resin substrate (10) and a transparent conductive layer (20) in this order in the thickness direction (T). In an in-plane direction perpendicula...  
WO/2021/186845A1
This solid electrolyte material contains Li, Ti, M and F. Meanwhile, M is at least one element that is selected from the group consisting of Mg and Ca.  
WO/2021/187589A1
This transparent conductive layer 3 is provided with a first main surface 5 and a second main surface 6 which is opposite to the first main surface 5 in the thickness direction. This transparent conductive layer 3 comprises: a first grai...  
WO/2021/187578A1
A light-transmitting electroconductive film (20) according to the present invention contains a region, which contains krypton at a content ratio of less than 0.1% by atom, at least partially in the thickness direction (D) of the light-tr...  
WO/2021/187494A1
A solid-state battery is provided in one embodiment of the present invention. The solid-state battery is characterized by comprising, along a stacking direction, at least one battery constituent unit including a positive electrode layer,...  
WO/2021/187588A1
A transparent electroconductive layer 3 is provided with a first principal surface 5 and a second principal surface 6 which face each other in the thickness direction. The transparent electroconductive layer 3 includes: a plurality of cr...  
WO/2021/187582A1
A transparent electroconductive layer 1 includes krypton atoms. The half-value width of an X-ray diffraction peak is 0.31° or less in a (222) plane.  
WO/2021/185922A1
The invention concerns the field of ceramics and relates to electron-emitting ceramics and how they can be used e.g. as cathode material for electron emissions in space travel systems. The object of the invention is to provide an electro...  
WO/2021/186809A1
A solid electrolyte material includes Li, Ti, M, and F, where M is at least one selected from the group consisting of Al and Y.  
WO/2021/187586A1
This transparent electroconductive film (X) comprises a transparent resin base material (10) and a transparent electroconductive layer (20), in this order, in a thickness direction (T). The transparent electroconductive layer (20) has, w...  
WO/2021/187575A1
A light-transmitting conductive film (20) according to the present invention is amorphous, includes a conductive oxide layer containing krypton, and has a specific resistance of at least 4×10-4 Ω•cm. A transparent conductive film (X)...  
WO/2021/187585A1
A transparent conductive film (X) according to the present invention comprises a transparent substrate (10) and an amorphous transparent conductive layer (20) in this order in the thickness direction (T). The transparent conductive layer...  
WO/2021/180611A1
A method of making copper (I) 5-nitrotetrazolate (DBX-1) in isolated form comprising: a) reacting bis(ethylenediamine) copper (II) nitrotetrazolate with nitric acid or sulfuric acid to form a reaction product, subsequently b) reducing th...  
WO/2021/182339A1
The present invention provides: a plastic-crystal solid electrolyte that has high ionic conductivity; and an electricity storage device which uses this solid electrolyte. This solid electrolyte contains a plastic crystal that is doped wi...  
WO/2021/179756A1
A novel high-temperature and insulating wire, a manufacturing method, and a coating device thereof. The novel high-temperature and insulating wire comprises a wire core and an insulating coating; the wire core is made of an aluminum allo...  
WO/2021/182617A1
The present invention provides conductive particles which are capable, in cases where electrodes are electrically connected thereby, of: (1) effectively lowering the connection resistance between electrodes arranged in the vertical direc...  
WO/2021/182711A1
The present application relates to a transparent flexible thin film comprising: a substrate; a pyridine-based monolayer formed on the substrate; and an oxide layer formed on the pyridine-based monolayer.  
WO/2021/180158A1
A CNS millbase dispersion, comprises a solvent and up to 0.5 wt% of at least one CNS-derived material dispersed in the millbase dispersion and selected from the group consisting of: carbon nanostructures, fragments of carbon nanostructur...  
WO/2021/182034A1
The purpose of the present invention is to provide: an electroconductive paste which is capable of printing an electroconductive pattern with high accuracy, said electroconductive pattern being suppressed in variation in the line width, ...  
WO/2021/180029A1
The present invention belongs to the technical field of electronic pastes, and particularly relates to a method for preparing silver-coated copper powder. The method comprises steps of: mixing the copper powder with a first Tollens' reag...  
WO/2021/177070A1
The amorphous composite metal oxide according to the present invention comprises a compound represented by formula (1). (1): AxEyLa3G2-z-qJzLqO12 -(7-2x-3y-z-2q)/2 (A is an element which forms a divalent cation. E is an element which for...  

Matches 1,051 - 1,100 out of 41,215