Abstract:
PROBLEM TO BE SOLVED: To provide a precursor solution having excellent adhesion with a base material and suitable for the production of a lithium ion conductive oxide thin film.SOLUTION: Provided is a precursor-dispersed solution for a lithium ion conductive oxide comprising lithium, lanthanum and zirconium as components, and in which, among the above components, the lanthanum and zirconium are present as colloidal dispersions. Further, the precursor-dispersed solution may further comprise one or more kinds among niobium, tantalum, aluminum and boron as a component(s).
Abstract:
PROBLEM TO BE SOLVED: To provide an efficient method for producing tridymite-type aluminum orthophosphate supported alumina, which is useful as a catalyst carrier.SOLUTION: The method for producing tridymite-type aluminum orthophosphate supported alumina comprises steps of (1) obtaining a slurry by mixing one or more kinds of aluminum compounds selected from the group consisting of active alumina, alumina monohydrate, and an aluminum gel with a specific water-soluble phosphate compound and, if necessary, water, (2) drying the slurry obtained, and (3) calcinating the dried material obtained at 900 to 1300°C.
Abstract:
PROBLEM TO BE SOLVED: To provide a biological material to facilitate formation of bones or cartilage by using highly safe and biocompatible polymers without cytotoxicity for siRNA of Noggin mRNA, siRNA of Follistatin mRNA, siRNA of Sclerostatin mRNA, siRNA of Chordin mRNA, siRNA of DCR mRNA, and siRNA of BMPMER mRNA, and having high cell introduction efficiency and high expression efficiency after the introduction. SOLUTION: The biological material includes copolymers with hydroxycarboxylic acid and polyethylene glycol as main component units, and at least one kind of siRNA selected from siRNA of Follistatin mRNA, siRNA of Sclerostatin mRNA, siRNA of Chordin mRNA, siRNA of DCR mRNA and siRNA of BMPMER mRNA. If calcium phosphate and/or a cell growth factor having osteoinductive activity is included in the biological material, formation of bones and cartilage can be facilitated. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an improvement of mechanical strength at a form removal in the ceramics molding and an improvement of inhibition effects of additional slaking on the monolithic refractory in the case of using a basic organic acid aluminum.SOLUTION: A ceramic forming composition comprises a water-soluble metal sulfate and a basic organic acid aluminum in which an organic acid is a lactic acid only or both of a lactic acid and a glycolic acid, the ratio of the lactic acid and the glycolic acid is 100:0 to 20:80 by molar ratio and the molar ratio of the organic acid/AlOis 1 to 3.
Abstract:
PROBLEM TO BE SOLVED: To provide a lithium ion-conductive oxide which can be sintered at a low temperature when it is manufactured and has a good lithium ion conduction property, and a method of manufacturing the same.SOLUTION: A method of manufacturing a lithium ion-conductive oxide includes a first process in which a liquid reactant containing at least a water-soluble or organic solvent-soluble lithium compound, a water-soluble or organic solvent-soluble lanthanum compound and a water-soluble or organic solvent-soluble zirconium compound is prepared, and a second process in which the dried liquid reactant is sintered once or more in the presence of a boron compound and an aluminum compound. This lithium ion-conductive oxide contains lithium, lanthanum, zirconium, boron and aluminum.
Abstract:
PROBLEM TO BE SOLVED: To use, as a binding agent, an aluminum-based binder having stronger binding force than basic aluminum lactate having excellent binding force, when binding an inorganic material.SOLUTION: This method for binding an inorganic material uses alumina colloid-containing aqueous solution satisfying following requirement (a)-(c). (a) The pH of the alumina colloid-containing aqueous solution is in the range of 5.5-9. (b) A product (A) of the number of moles of an organic acid in the alumina colloid-containing aqueous solution and the number of carboxy groups in the organic acid, and the number (B) of moles of AlOsatisfy following equation: A/B=1.0-2.0. (c) The content of AlOin a filtrate obtained by filtering the alumina colloid-containing aqueous solution by an ultrafiltration membrane having molecular cutoff of 10,000 is 5-50 mass% with respect to AlOin the aqueous solution before filtration.