Abstract:
A photoresist composition includes an organometallic compound including at least one metal-ligand bond and having an absorbance to first light, the at least one metal-ligand bond including a metal core and at least one organic ligand bonded to the metal core, a photosensitive additive having an absorbance to second light having a longer wavelength than the first light, and a solvent. A method of manufacturing an integrated circuit device includes forming a photoresist film on a substrate based on using the photoresist composition, exposing a first area of the photoresist film to the first light, exposing an entire area of the photoresist film to the second light, and forming a network of metal structures in the first area based on baking the photoresist film.
Abstract:
Provided are a separator for a lithium secondary battery including a substrate and a heat-resistance porous layer disposed on at least one surface of the substrate and including a cross-linked binder, wherein the cross-linked binder has a cross-linking structure of a compound represented by Chemical Formula 2, and a lithium secondary battery including the same.
Abstract:
A separator for a rechargeable battery includes a porous substrate and a heat-resistance layer disposed on at least one surface of the porous substrate, wherein the heat-resistance layer includes a cross-linkable binder, and the cross-linkable binder is derived from a polymer including a structural unit including an aromatic moiety and a (meth)acrylate group; and a rechargeable lithium battery includes the same.
Abstract:
A separator for a rechargeable battery includes a porous substrate and a heat-resistance layer on at least one surface of the porous substrate. The heat-resistance layer includes a binder having a cross-linked structure, a sphere-shaped filler, and a plate-shaped filler, and the plate-shaped filler is included in a smaller amount than the sphere-shaped filler in the heat-resistance layer. A rechargeable battery includes the separator.
Abstract:
A separator for a rechargeable battery includes a porous substrate and a heat-resistant layer disposed on at least one surface of the porous substrate, wherein the heat-resistant layer includes a compound represented by Chemical Formula 1 or a cross-linked product thereof and a rechargeable lithium battery includes the same. (R)n1—Ar—OH [Chemical Formula 1] In Chemical Formula 1, Ar, R, and n1 are the same as described in the detailed description.
Abstract:
Provided are a photoreactive polymer compound including a first repeating unit represented by Formula 1, a photoresist composition including the same, and a method of forming a pattern by using the photoresist composition: wherein a description of Formula 1 is provided in the present specification.
Abstract:
Provided are a carboxylate salt represented by Formula 1, a photoresist composition including the carboxylate salt represented by Formula 1, and a method of forming a pattern by using the photoresist composition
wherein, in Formula 1, A11, R11 to R15, b15, n11, n12, and M+ are described in the specification.
Abstract:
Disclosed is provided an electronic apparatus comprising: a processor configured to: identify a first section of a received audio signal corresponding to a trigger word based on the received audio signal, identify whether a third section corresponding to a speech input is present in the audio signal received after the identified first section based on a noise characteristic identified from a second section of the audio signal received before the first section, and cause an operation corresponding to the user command word to be performed based on the identified third section of the audio signal.
Abstract:
A separator for a rechargeable lithium battery includes a substrate and a heat-resistant porous layer on at least one side of the substrate. The heat-resistant porous layer includes a crosslinked binder. The crosslinked binder has a cross-linked structure of a crosslinkable compound including a siloxane compound. The siloxane compound includes a siloxane resin including a unit represented by the chemical formula R1SiO3/2, where R1 is a curable reactive group, or an organic group having a curable reactive group.
Abstract:
Provided are a polymer including a first repeating unit represented by Formula 1 below and a second repeating unit represented by Formula 2 below, a resist composition including the same, and a method of forming a pattern using the same. In Formulae 1 and 2, L11 to L13, L21 to L24, a11 to a13, a21 to a24, A11, A21, X11, R11, R12, R21 to R23, b12, b22, b23, p11 and p21 are as described above in the specification.