Abstract:
The present disclosure provides a separator for a rechargeable lithium battery and a rechargeable lithium battery including same, the separator includes a porous substrate; and an adhesive layer formed on the porous substrate. The adhesive layer includes a particle-type binder having a core-shell structure including a core and a shell surrounding the core, the core includes a first polymer having a glass transition temperature of less than or equal to 30° C., the shell includes a second polymer having a glass transition temperature of greater than or equal to 40° C., and the particle-type binder has a diameter of 50 nm to 500 nm.
Abstract:
A separator for a rechargeable lithium battery and a rechargeable lithium battery, the separator including a substrate, and a heat-resistant porous layer on at least one side of the substrate, the heat-resistant porous layer including an imide-based copolymer, wherein the imide-based copolymer includes a first repeating unit represented by Chemical Formula 1 and a second repeating unit represented by Chemical Formula 2:
Abstract:
Provided are an organic salt represented by Formula 1, a resist composition including the same, and a method of forming a pattern by using the same:
A11+B11− Formula 1
wherein, in Formula 1, A11+ is represented by Formula 1A, and B11− is represented by Formula 1B,
wherein descriptions of R11 to R13, L21, L22, a21, a22, R21, R22, Rf, b22, c11 and n11 in Formulae 1A and 1B are provided herein.
Abstract:
Provided are a photoreactive polymer compound including a first repeating unit represented by Formula 1 below, a photoresist composition including the same, and a method of forming a pattern by using the photoresist composition:
Abstract:
Provided are a resist composition and a pattern forming method using the same. The resist composition includes a polymer including a first repeating unit repeating unit Formula 1, a photoacid generator, and an organic solvent.
In Formula 1, L11 to L13, a11 to a13, A11 to A13, R11 to R14, b12 to b14, and p are the same as described in the detailed description.
Abstract:
Disclosed are a polycarboxylate compound represented by Formula 1 below, a resist composition including the same, and a method of forming a pattern using the same.
In Formula 1, A11, X11, m11, n11, R13 and b13 are as described in the specification.
Abstract:
Disclosed are a composition comprising a silane compound having a fluorine-containing (poly)ether group represented by Formula 1, a film formed from the composition, a display device including the film, and an article including a coating product of the composition: Rf-(L1)p1(L)a-C(═O)NR-(L2)p2-Si(R1)(R2)(R3) Formula 1 wherein in Formula 1, R is -(L3)p3-Si(R4)(R5)(R6), L is —CH2— or —CH2—O—CH2—, Rf is a fluorine-containing (poly)ether group, and L1 to L3, p1 to p3, and R1 to R6 are the same as defined in the detailed description.
Abstract:
A separator for a rechargeable lithium battery and a rechargeable lithium battery, the separator including a porous substrate; and a coating layer on at least one surface of the porous substrate, wherein the coating layer includes a binder and inorganic particles, the binder including a polyurethane and a polyvinyl alcohol, and the polyurethane and the polyvinyl alcohol are included in a weight ratio of about 5:5 to about 9:1.
Abstract:
A separator for a rechargeable battery, and a rechargeable lithium battery including the same are provided. The separator includes a porous substrate, and a heat resistance layer on at least one surface of the porous substrate. The heat resistance layer may include an acryl-based copolymer, a polyvinyl alcohol-based polymer, and a sheet-shaped inorganic particle, where the sheet-shaped inorganic particle is selected from mica, clay, magnesium hydroxide (Mg(OH)2), aluminum hydroxide (Al(OH)3), talc, and a combination thereof, and a particle diameter of the sheet-shaped inorganic particle is about 0.1 μm to about 10 μm.
Abstract:
A separator for a rechargeable lithium battery and a rechargeable lithium battery including the separator, the separator including a substrate, and a heat-resistant porous layer on at least one side of the substrate, the heat-resistant porous layer including a composite particle, wherein the composite particle includes a first particle and a second particle attached to a surface of the first particle, and the first particle is different from the second particle, and at least one of the first particle and the second particle includes an organic material.