Abstract:
A method for selective metallization of a surface of a polymer article is provided. The polymer article contains a base polymer and at least one metal compound dispersed in the base polymer. The method includes gasifying at least a part of a surface of the polymer article by irradiating the surface with an energy source,and forming at least one metal layer on the surface of the polymer article by chemical plating. The metal compound contains a tin oxide doped with at least one doping element selected from a group including: V,Sb,In,and Mo.
Abstract:
The present disclosure provides a metal compound. The metal compound is represented by a formula(I): Cu 2 A α B 2-α O 4-β . A contains at least one element selected from the groups 6 and 8 of the periodic table. B contains at least one element selected from the group13 of the periodic table, 0
Abstract:
A doped tin oxide contains a tin oxide and an oxide of a doping element. The doping element includes at least one of vanadium and molybdenum. Based on the total amount of the doped tin oxide,the tin oxide is about90-99mol%,and the oxide of the doping element is about1-10mol%. A polymer article containing the doped tin oxide,an ink composition containing the doped tin oxide,and method for preparing them are also provided.In addition,a method for selective metallization of the polymer article and a method for selective metallization of an insulating substrate are provided.
Abstract:
An ink composition, a method of metalizing a surface of an insulation substrate and an article obtainable by the method. The ink composition may comprise a metal compound and an ink vehicle, the metal compound is at least one selected from a group consisting of a compound of formula (I) and a compound of formula (II), ΤiO 2-σ (I), M 1 M 2 p O q (II), 0.05≤σ 1 is at least one element selected from a group consisting of groups 2, 9-12 of the periodic table according to IUPAC nomenclature, M 2 is at least one element selected from a group consisting of groups 3-8, 10 and 13 of the periodic table according to IUPAC nomenclature, and 0
Abstract:
A separator and a method for preparing the separator are provided. The separator includes a polymer substrate,a ceramic layer provided on the polymer substrate and an infiltration part formed between the polymer substrate and the ceramic layer. The polymer substrate contains a base polymer and a first curing resin. The infiltration part has at least a portion infiltrated into the polymer substrate. Each of the infiltration part and the ceramic layer independently contains ceramic particles and a second curing resin.A battery including the separator is also provided.
Abstract:
A method of metalizing a surface of an insulation substrate is provided and an article obtainable by the method is also provided. The method may comprise the steps of: applying an ink composition onto a surface to be metalized of the insulation substrate, obtaining an insulation substrate with an ink layer; subjecting the insulation substrate with an ink layer to heat treatment at a temperature of about 500 to 1000 degree Celsius in an non-reactive atmosphere; plating at least one metal layer on the ink layer, the ink composition comprises a metal compound and an ink vehicle, the metal compound is at least one selected from a group consisting of a nano-copper oxide, a nano- cuprous oxide, a compound of formula (I) and a compound of formula (II), ΤϊO2-σ (I), M 1 M 2 p O q (II), 0.05≤σ≤ 1.8, M 1 is at least one element selected from a group consisting of groups 2, 9-12 of the periodic table according to IUPAC nomenclature, M 2 is at least one element selected from a group consisting of groups 3-8,10 and 13 of the periodic table according to IUPAC nomenclature, 0
Abstract:
A method of metalizing the surface of a plastic substrate is provided. The plastic substrate contains a plastic material and a promoter dispersed in the plastic material. The method comprises the steps of: removing the plastic material of the plastic substrate in a predetermined area to be metalized to expose the promoter; forming a first metal layer on the exposed promoter by means of a first plating; and forming at least one second metal layer on the first metal layer by means of a second plating, in which the promoter is at least one selected from the group consisting of: CuFe 2 O 4−δ , Ca 0.25 Cu 0.75 TiO 3−β , and TiO 2−σ , in which 0.05≤δ≤0.8, 0.05≤β≤0.5, and 0.05≤σ≤1.0. Further, a plastic article obtainable by the method of metalizing the surface of a plastic substrate is also provided.
Abstract translation:提供了塑料基板的表面金属化方法。 塑料基材含有分散在塑料材料中的塑料材料和促进剂。 该方法包括以下步骤:在要金属化的预定区域中去除塑料基板的塑料材料以暴露启动子; 通过第一次镀覆在暴露的助催化剂上形成第一金属层; 以及通过第二镀层在所述第一金属层上形成至少一个第二金属层,其中所述助催化剂是选自由以下组成的组中的至少一种:CuFe2O4-d,Ca0.25Cu0.75TiO3-β和TiO2- s,其中0.05 = d = 0.8,0.05 =ß= 0.5,0.05 = s = 1.0。 此外,还提供了通过使塑料基板的表面金属化的方法获得的塑料制品。
Abstract:
A separator for a lithium-ion battery includes a substrate, a coating, and a middle layer formed between the substrate and the coating. The middle layer includes a part of the substrate and a part of the coating. The substrate contains a base polymer, a first polymer, and a first inorganic material. The coating contains a second polymer and a second inorganic material. The first polymer and the second polymer independently contain an acid radical in a side chain thereof. The first inorganic material is reactive with the first polymer via a first neutralization reaction, and the second inorganic material is reactive with the second polymer via a second neutralization reaction. A method for preparing a separator for a lithium-ion battery and a lithium-ion battery are also provided.
Abstract:
A method for metalizing a plastic surface is provided. The method may comprise the steps of: 1) gasifying the plastic surface to expose the chemical plating promoter; 2) chemical plating a layer of copper or nickel on the plastic surface, and 3) plating the plated surface in step 2) by electroplating or chemical plating at least one more time to form a metalized layer on the plastic surface. Further, A method for preparing a plastic article and a plastic article manufactured by the method as described may be provided.
Abstract:
A method for preparing a plastic article and a plastic article made using the same are provided. The method comprises steps of: providing a plastic substrate made from a plastic comprising an accelerator dispersed therein; irradiating a predetermined area on a surface of the plastic substrate to expose the accelerator in the predetermined area; plating the irradiated area on the surface of the plastic substrate to form a first metal layer on the predetermined area; and plating the first metal layer to form a second metal layer on the first metal layer. The accelerator is represented by formulas of AM x B y O z and/or A'M' m O n .