摘要:
Provided is an aluminum electrolytic capacitor exhibiting low specific resistance and low impedance property and realizing high reliability. An electrolytic capacitor has a structure in which: a capacitor element (6) which is formed by rolling an anode foil (1) and a cathode foil (2) each connected with an electrode extraction lead (4, 5) through a separator (3) and which is impregnated with a drive electrolytic solution is included in a cylindrical outer case having a closed-end; and an open end of the outer case is sealed with an elastic sealing body, in which: the drive electrolytic solution contains a tricyanomethide salt represented by the below-indicated chemical formula (1); and the drive electrolytic solution has a water content of 3.0 wt% or less: (1) where, R represents a cation pairing with a tricyanomethide ion in formation of a tricyanomethide salt.
摘要:
The present invention provides an ionic compound which: can exert excellent basic performance such as excellent electrochemical stability including an excellent ionic conductivity; is excellent in pH stability; and can suitably find use in a variety of applications, and an electrolyte material, an electrolytic solution, and an electrolytic capacitor each containing the ionic compound. An ionic compound of the present invention has an anion represented by a general formula (1) and a cation represented by a general formula (2):
where X represents an element selected from B, C, N, O, Al, Si, P, S, As, and Se, M 1 and M 2 represent linking groups, Q represents a monovalent element or organic group, a represents an integer of 1 or more, and b, c, d, and e each represent an integer of 0 or more;
[Chem.2] R 2 -LH ⊕ (2)
where L represents an element selected from C, Si, N, P, S, and O, R represents a monovalent element, functional group, or organic group, and s represents an integer of 2, 3, or 4.
摘要:
An object of the present invention is to provide a material for an electrolytic solution having improved ionic conductivity and, showing excellent in low temperature property, being stable with time, and being electrochemically stable at a high potential, and an ionic material-containing composition exhibiting excellent fundamental performance such as electrochemical stability, and preferably used in a variety of utilities. Another object of the present invention is to provide utilities thereof. The material for an electrolytic solution is the material containing an ionic compound, and the material comprises a cyano group-containing anion represented by the formula (1) and 1 to 99% by mass of a solvent in 100% by mass of the material for an electrolytic solution.
摘要:
The present invention provides a method of producing a tetracyanoborate-containing ionic compound in a milder condition more efficiently and less expensively than conventional methods, and a tetracyanoborate-containing ionic compound having a reduced content of impure components. An ionic compound of the present invention is represented by the following general formula (I), has a content of fluorine atom-containing impurities of 3 mol% or less per 100 mol% of the ionic compound, and a method for producing an ionic compound represented by the general formula (I) of the present invention comprises a step of reacting starting materials containing a cyanide and a boron compound.
(In the formula, Kt m+ denotes an organic cation [Kt b ] m+ or an inorganic cation [Kt a ] m+ ; and m denotes an integer of 1 to 3.)
摘要翻译:本发明提供了一种比常规方法更有效且低成本地生产含四氰基硼酸盐的离子化合物的方法,以及具有降低的不纯成分含量的含四氰基硼酸盐的离子化合物。 本发明的离子性化合物由下述通式(I)表示,每100摩尔%的离子性化合物的含氟原子的杂质的含量为3摩尔%以下,以及离子性化合物的制造方法 由本发明的通式(I)表示的方法包括使含有氰化物和硼化合物的原料反应的步骤。 (式中,Kt m +表示有机阳离子[Kt b] m +或无机阳离子[Kt a] m +,m表示1〜3的整数。
摘要:
The present invention provides (meth)acryl syrup which shows excellent storage stability as a molding material, and also provides a method of manufacturing the (meth)acryl syrup in a shorter period of time compared with the conventional method, and a molding material which permits a molded article having excellent heat-resistance, solvent-resistance, weathering resistance, and water-resistance, etc., to be manufactured. The (meth)acryl syrup is manufactured, for example, by polymerizing a monomer component including (meth)acrylic ester and a vinyl monomer having a carboxyl group in a presence of a thiol compound, and subsequently processing the reaction mixture with maleic anhydride and a basic compound. The molding material includes the (meth)acryl syrup, and may also include a thickening agent, derivatives of succinic acid, a reinforcing material, etc.