Abstract: The present invention provides a composition for controlling plant disease comprising a carboxamide compound represented by a formula (I): wherein R1 represents a hydrogen atom or a methyl group, and R2 represents a methyl group, a difluoromethyl group or a trifluoromethyl group; and a compound represented by a formula (A): which has an excellent controlling activity on plant diseases.
Abstract: The fused heterocyclic compound represented by formula (1), or an N-oxide thereof, has excellent effectiveness in pest control. In the formula G1 represents a nitrogen atom, etc.; G2 represents a nitrogen atom, etc.; A1 represents a nitrogen atom, etc.; A2 represents a nitrogen atom, etc.; A3 represents a nitrogen atom, etc.; A4 represents a nitrogen atom, etc.; A5 represents a nitrogen atom, etc.; R1 represents a C1-C6 chain hydrocarbon group, etc., optionally having one or more atoms or groups selected from group X; R2, R3 and R4 are the same or different, and represent a C1-C6 chain hydrocarbon group, etc., optionally having one or more atoms or groups selected from group X; R5 and R6 are the same or different, and represent a C1-C6 chain hydrocarbon group, etc., optionally having one or more atoms or groups selected from group X; and n represents 0, 1, 2.
Abstract: A lithium composite metal oxide that contains Li, Ni, and Mn, has a layered structure, has a diffraction peak in a range of 2?=20.8±1° in a powder X-ray diffraction pattern obtained with powder X-ray diffraction measurement using a Cu—K? radiation, has a BET specific surface area in a range of 6 m2/g to 30 m2/g, and has an average particle diameter measured with a laser diffraction scattering method in a range of 0.1 ?m to 10 ?m.
Abstract: A method for producing a composite wafer by using a forming wafer having a monocrystal layer, the method comprising: (a) forming, on the monocrystal layer of the forming wafer, a sacrificial layer and a semiconductor crystal layer sequentially; (b) causing a first front surface that is the front surface of a layer formed on the forming wafer to face a second front surface that is the front surface of the transfer target wafer or of a layer formed on the transfer target wafer and is to contact the first front surface, and bonding the forming wafer and the transfer target wafer; and (c) etching the sacrificial layer, and separating the forming wafer from the transfer target wafer in a state that the semiconductor crystal layer is left on the transfer target wafer, wherein the (a) to the (c) are repeated by using the forming wafer separated in the (c).
Type:
Application
Filed:
January 28, 2015
Publication date:
July 2, 2015
Applicants:
SUMITOMO CHEMICAL COMPANY, LIMITED, NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY, HITACHI KOKUSAI ELECTRIC INC.
Abstract: There are provided a protective film for a polarizing plate, wherein the protective film comprises a stretched film comprising a (meth)acryl-based resin and having an absolute value of a planar orientation coefficient ?P of less than or equal to 2.5×10?4, and a polarizing plate comprising a polarizing film, and the protective film for a polarizing plate laminated on at least one surface of the polarizing film via an adhesive layer. The stretched film can be, for example, a biaxially stretched film.
Type:
Application
Filed:
December 23, 2014
Publication date:
July 2, 2015
Applicant:
SUMITOMO CHEMICAL COMPANY, LIMITED
Inventors:
Takayuki SHIRAISHI, Koji SUMIDA, Tomokazu OKADA
Abstract: Disclosed is a method of examining defects in a green honeycomb molding having partition walls which form a plurality of flow channels extending in parallel with one another, and sealing portions which close the upper ends of some of the plurality of flow channels and the lower ends of the rest flow channels. The method includes a step of applying pressure to the lower ends of the plurality of flow channels using gas, and a step of visualizing the distribution of gas refractive indexes near the upper ends of the plurality of flow channels.
Abstract: A rubber composition obtained by kneading at least one selected from the group consisting of (A1), (B1), (C1) and (D1), a rubber component and a filler, and a method of improving the viscoelastic property of vulcanized rubber, comprising a first step of kneading at least one selected from the group consisting of (A1), (B1), (C1) and (D1), a rubber component, a filler and a sulfur component and a second step of thermally treating the kneaded material obtained in the previous step. (A1): a compound represented by formula (I) (B1): a salt of a compound represented by formula (I) (C1): a solvate of a compound represented by formula (I) (D1): a solvate of a salt of a compound represented by formula (I).
Type:
Grant
Filed:
April 24, 2012
Date of Patent:
June 30, 2015
Assignee:
SUMITOMO CHEMICAL COMPANY, LIMITED
Inventors:
Yosuke Watanabe, Orhan Ozturk, Yasuo Uekita
Abstract: The present invention provides a composition containing crystal of flumioxazin, which is one selected from the group consisting of 1st crystal, 2nd crystal, 3rd crystal, 4th crystal, 5th crystal, 6th to crystal and 7th crystal, each of the crystals showing a powder X-Ray diffraction pattern which has diffraction peaks with 2? values (°) shown in the corresponding right column of Table 1 set forth in the specification, and one or more herbicidal compounds selected from the group B-1, B-2, B-3, B-4, B-5, B-6, B-7, B-8, B-9, B-10, B-11 and B-12 as described in the specification. According to the present invention, a wide range of weeds can be controlled in a crop field, land under perennial crops, or non-crop land.
Abstract: A composition containing a compound represented by formula (I) and at least one compound selected from the group consisting of pyriofenone, metrafenone, cyflufenamid, quinoxyfen, and proquinazid The composition has excellent control effect against plant diseases.
Abstract: A plant disease control composition comprising a pyridazine compound represented by the formula (I): [wherein, R1 represents a chlorine atom, a bromine atom, a cyano group or a methyl group, and R2 represents a hydrogen atom or a fluorine atom.] and a compound represented by the formula (A): manifests an excellent control effect on plant diseases.
Abstract: A microcapsule can be produced easily by (a) pulverizing a solid pesticidal compound in a fatty acid ester represented by formula (I) to form a suspension wherein X denotes either —CH2—CH2— or —CH?CH— and R1 and R2 each denote a C1-C4 alkyl group, (b) mixing the resulting suspension and water to prepare a liquid droplet, and (c) forming a coating film around the liquid droplet. A microcapsule obtained in such a way contains most of the solid pesticidal compound within the microcapsule.
Abstract: The present invention provides a photoresist composition comprising a resin which comprises a structural unit derived from a compound having an acid-labile group and which is insoluble or poorly soluble in an alkali aqueous solution but becomes soluble in an alkali aqueous solution by the action of an acid, an acid generator and a compound represented by the formula (I): wherein R1 and R2 are independently in each occurrence a C1-C12 hydrocarbon group, a C1-C6 alkoxy group, a C2-C7 acyl group, a C2-C7 acyloxy group, a C2-C7 alkoxycarbonyl group, a nitro group or a halogen atom, and m and n independently each represent an integer of 0 to 4.
Type:
Grant
Filed:
July 25, 2011
Date of Patent:
June 23, 2015
Assignee:
SUMITOMO CHEMICAL COMPANY, LIMITED
Inventors:
Koji Ichikawa, Mitsuhiro Hata, Takahiro Yasue
Abstract: A salt represented by formula (I): wherein Q1 and Q2 each independently represent a fluorine atom or a C1-C6 perfluoroalkyl group; Lb1 represents a C1-C24 divalent saturated hydrocarbon group or the like; R1, R2, R3 and R4 independently in each occurrence represent a C1-C12 aliphatic hydrocarbon group, or the like; and A+ represents an organic counter ion.
Type:
Application
Filed:
December 10, 2014
Publication date:
June 18, 2015
Applicant:
SUMITOMO CHEMICAL COMPANY, LIMITED
Inventors:
Tatsuro MASUYAMA, Koji ICHIKAWA, Kaoru ARAKI
Abstract: The present invention relates to a method of controlling weeds in a crop fields, land under perennial crops, or a non-crop land, the method comprising applying an effective amount of crystal of flumioxazin which is one or more selected from the group consisting of 1st crystal, 2nd crystal, 3rd crystal, 4th crystal, 5th crystal, 6th crystal and 7th crystal, each of the crystals showing a powder X-Ray diffraction pattern which has diffraction peaks with 2? values (°) shown in the corresponding right column of Table 1 of the Specification, to soil where the weeds are grown or to be grown, or weeds. According to the present invention, a wide range of weeds can be controlled in a crop field, land under perennial crops, or a non-crop land.
Abstract: An adhesive layer disposed between a separator for a secondary battery and an electrode for a secondary battery, wherein the adhesive layer is obtained by bonding under pressure a layer containing a resin having a structural unit derived from an ?-olefin having 2 to 4 carbon atoms, and an occupancy area of the resin in the adhesive layer is 10 to 80%.
Abstract: A phosphorescent compound of formula (I): wherein: M is a transition metal; L in each occurrence is independently a mono- or poly-dentate ligand; R8, R9, R10 and R11 are each independently H or a substituent; D1 and D2 are each independently a dendron; x is at least 1; y is 0 or a positive integer; z1 and z2 are each independently 0 or a positive integer; and n1 and n2 are each independently 0 or 1 with the proviso that at least one of n1 and n2 is 1. The compound may be a phosphorescent compound of an organic light-emitting device.
Type:
Application
Filed:
November 21, 2014
Publication date:
June 11, 2015
Applicants:
Cambridge Display Technology Limited, Sumitomo Chemical Company Limited
Abstract: Provided is a method which exerts an excellent effect in controlling a pest in a field of soybean, corn or cotton, using a SDHI compound and a PPO-inhibiting compound.
Abstract: The present invention relates to a method of controlling weeds in a crop fields, land under perennial crops, or a non-crop land, the method comprising applying an effective amount of crystal of flumioxazin which shows a powder X-Ray diffraction pattern having diffraction peaks with 2? values (°) shown in Table 1, said pattern being obtained by CuK? rays diffraction analysis, TABLE 1 2? value (°) ?9.8 ± 0.1 11.4 ± 0.1 12.7 ± 0.1 13.8 ± 0.1 16.0 ± 0.1 16.4 ± 0.1 16.7 ± 0.1 to soil where the weeds are grown or to be grown, or weeds. According to the present invention, a wide range of weeds can be controlled in a crop field, land under perennial crops, or a non-crop land.