Abstract:
The present invention relates to conductive coating compositions based on an organic matrix and anisotropic nanoparticles. The coating has excellent optical properties, excellent electrical conductivity and good humidity barrier properties. The present invention encompasses use of the conductive coating composition as an ITO replacement in various applications.
Abstract:
There is provided conductive paste excellent in electro-conductivity and thermal conductivity. Conductive paste comprising conductive filler being composite particles including copper powder and nanosize precipitates which are disposed on the surface of the copper powder and composed of at least one kind of transition metal belonging to the group 8 to group 10 of the periodic table or a compound of the transition metal, and a binder resin.
Abstract:
Provided herein is technology relating to polymer-graphene nanocomposites and particularly, but not exclusively, to methods for producing polymer-graphene nanocomposites using master batches comprising graphene and a polymer or polymer precursor. The resulting polymer-graphene nanocomposites comprise a high degree of exfoliation and dispersion of graphene nanoplatelets within the polymer matrix.
Abstract:
Die Erfindung betrifft ein anhydridfreies Imprägnierharz für einen Elektroisolationskörper, wobei das Imprägnierharz ein Epoxidharz, einen Härter und nanoskalige und/oder mikroskalige anorganische Partikel aufweist. Die Erfindung betrifft ferner ein imprägnierbares Elektroisolationsband für einen Elektroisolationskörper (1), wobei ein Härter (4) auf das Elektroisolationsband (1) aufgebracht ist. Die Erfindung betrifft ferner ein Verfahren zum Herstellen eines Elektroisolationskörpers, den Elektroisolationskörper und die Verwendung des Elektroisolationskörpers.
Abstract:
An optical laminate body including: a substrate; and an adhesive layer formed on the substrate, wherein the optical laminate body is used such that a surface thereof on the adhesive layer side is attached to a glass-made light-emitting surface member, a relationship n3 ≥ n3 ≥ n1 is satisfied where n1 is a refractive index of the glass that constitutes the light-emitting surface member, n2 is a refractive index of the adhesive layer, and n3 is a refractive index of the substrate, the adhesive layer is composed of an acrylic adhesive composition containing an acrylic resin (A), and the acrylic resin (A) is a copolymer of a copolymerizable component [I] containing 40% by weight to 93% by weight of an aromatic ring-containing monomer (a1), and 7% by weight to 60% by weight of a hydroxy group-containing monomer (a2), the weight average molecular weight of the acrylic resin (A) being 200,000 or less.
Abstract:
Provided is a latex composition including a latex that includes a polymer having a tetrahydrofuran-insoluble component content of at least 1 mass% and no greater than 75 mass% and carbon nanotubes that have an average diameter (Av) and a diameter distribution (3Ã) satisfying a relationship 0.60 > 3Ã/Av > 0.20. A composite material and a conductive formed product obtainable using the latex composition exhibit superior conductivity.
Abstract:
The present disclosure provides nanodiamonds containing thermoplastic thermal composites. The nanodiamond containing thermoplastic thermal composite comprises from 0.01 to 80 wt.-% of nanodiamond particles, from 1 to 90 wt.-% of at least one filler, and from 5 to 80 wt.-% of at least one thermoplastic polymer. The present disclosure further relates to a method for manufacturing the nanodiamonds containing thermoplastic thermal composites, and to use of the nanodiamonds containing thermoplastic thermal composites.