Patents by Inventor Manabu Yasumoto
Manabu Yasumoto has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
-
Patent number: 8207351Abstract: A one pot method of preparing cyclic carbonyl compounds comprising an active pendant pentafluorophenyl carbonate group is disclosed. The cyclic carbonyl compounds can be polymerized by ring opening methods to form ROP polymers comprising repeat units comprising a side chain pentafluorophenyl carbonate group. Using a suitable nucleophile, the pendant pentafluorophenyl carbonate group can be selectively transformed into a variety of other functional groups before or after the ring opening polymerization.Type: GrantFiled: April 30, 2010Date of Patent: June 26, 2012Assignees: International Business Machines Corporation, Central Glass Co., Ltd.Inventors: Masaki Fujiwara, James Lupton Hedrick, Daniel Paul Sanders, Manabu Yasumoto
-
Patent number: 8143369Abstract: A one pot method of preparing cyclic carbonyl compounds comprising an active pendant pentafluorophenyl ester group is disclosed. The cyclic carbonyl compounds can be polymerized by ring opening methods to form ROP polymers comprising repeat units comprising a side chain pentafluorophenyl ester group. Using a suitable nucleophile, the pendant pentafluorophenyl ester group can be selectively transformed into a variety of other functional groups before or after the ring opening polymerization.Type: GrantFiled: April 30, 2010Date of Patent: March 27, 2012Assignees: International Business Machines Corporation, Central Glass Co., LtdInventors: Masaki Fujiwara, James Lupton Hedrick, Daniel Paul Sanders, Yoshiharu Terui, Manabu Yasumoto
-
Patent number: 8058412Abstract: There is provided a novel, useful dehydroxyfluorination agent containing sulfuryl fluoride (SO2F2) and an organic base that is free from a free hydroxyl group in the molecule. According to the present dehydroxyfluorination agent, it is not necessary to use perfluoroalkanesulfonyl fluoride, which is not preferable in large-scale use, and it is possible to advantageously produce optically-active fluoro derivatives, which are important intermediates of medicines, agricultural chemicals and optical materials, for example, 4-fluoroproline derivatives, 2?-deoxy-2?-fluorouridine derivatives, optically-active ?-fluorocarboxylate derivatives, and monofluoromethyl derivatives, even in large scale.Type: GrantFiled: June 25, 2007Date of Patent: November 15, 2011Assignee: Central Glass Company, LimitedInventors: Akihiro Ishii, Takashi Ootsuka, Manabu Yasumoto, Hideyuki Tsuruta, Kenjin Inomiya, Koji Ueda, Kaori Mogi
-
Publication number: 20110269917Abstract: A one pot method of preparing cyclic carbonyl compounds comprising an active pendant pentafluorophenyl carbonate group is disclosed. The cyclic carbonyl compounds can be polymerized by ring opening methods to form ROP polymers comprising repeat units comprising a side chain pentafluorophenyl carbonate group. Using a suitable nucleophile, the pendant pentafluorophenyl carbonate group can be selectively transformed into a variety of other functional groups before or after the ring opening polymerization.Type: ApplicationFiled: April 30, 2010Publication date: November 3, 2011Applicants: CENTRAL GLASS CO., LTD., INTERNATIONAL BUSINESS MACHINES CORPORATIONInventors: Masaki Fujiwara, James L. Hedrick, Daniel P. Sanders, Manabu Yasumoto
-
Publication number: 20110251403Abstract: In the present invention, a hydroxyl group substitution product is manufactured by reaction of an alcohol with sulfuryl fluoride (SO2F2) in the presence of an organic base and a nucleophile (X?). The present invention is thus effective as an industrial manufacturing method that uses a relatively cheap reagent suitable for large-scale applications and can be accomplished in a simple process with easy purification operation and less waste generation and is suitably applicable for manufacturing of optically active hydroxyl group substitution products, notably optically active ?-hydroxyl group substitution ester and optically active 4-hydroxyl group substitution proline. The manufacturing method of the present invention solves all of the prior art problems and can be applied for industrial uses.Type: ApplicationFiled: December 15, 2009Publication date: October 13, 2011Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Manabu Yasumoto, Koji Ueda
-
Publication number: 20110213176Abstract: There is provided a process for producing an ?-substituted ester by reaction of a fluorosulfuric acid ester of ?-hydroxyester with a Grignard reagent in the presence of a zinc catalyst. It is newly found that the reaction for production of ?-substituted esters, in which the raw reaction substrate is limited to expensive trifluoromethanesulfonic acid esters, can proceed favorably with the use of fluorosulfuric acid esters suitable for mass-production uses. By the use of the fluorosulfuric acid ester high in optical purity, it is possible to obtain the ?-substituted ester with high optical purity upon inversion of the asymmetric carbon configuration. The process of the present invention can solve all of the prior art problems and can be applied for industrial uses.Type: ApplicationFiled: October 22, 2009Publication date: September 1, 2011Inventors: Akihiro Ishii, Manabu Yasumoto
-
Publication number: 20110201825Abstract: Fluorosulfuric acid esters can be produced by reacting alcohols with sulfuryl fluoride (SO2F2) in the presence of a base and water. As a substrate thereof, optically active secondary alcohols are preferable, and optically active ?-hydroxyesters and optically active 4-hydroxyprolines are particularly preferable. By performing the reaction in a two-phase system in the presence of a reaction solvent immiscible with water, a desired reaction proceeds particularly well. The present invention is a production method solving all the problems involved in conventional techniques while being industrially practicable.Type: ApplicationFiled: October 15, 2009Publication date: August 18, 2011Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Manabu Yasumoto
-
Publication number: 20110160477Abstract: An ?-trifluoromethyl-?,?-unsaturated ester can be produced by reacting an ?-trifluoromethyl-?-hydroxy ester with sulfuryl fluoride (SO2F2) in the presence of an organic base. It is preferable that the raw substrate has a hydrogen atom as one ?-position substituent group and either an alkyl group, a substituted alkyl group, an alkenyl group, a substituted alkenyl group, an aromatic ring group or a substituted aromatic ring group as the other ?-position substituent group. It is more preferable that an ester moiety of the raw substrate is an alkyl ester. This raw substrate is readily available. Further, the desired reaction can proceed favorably with the use of this raw substrate. It is also preferable to use either 1,5-diazabicyclo[4.3.0]non-5-ene (DBN) or 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) as the organic base. The desired reaction can proceed more favorably with the use of this organic base.Type: ApplicationFiled: September 24, 2009Publication date: June 30, 2011Applicant: Central Glass Company ,LimitedInventors: Akihiro Ishii, Manabu Yasumoto, Takako Yamazaki, Kaori Mogi, Kazunori Mori, Takashi Masuda
-
Publication number: 20110152536Abstract: ?-Trifluoromethyl-?-substituted-?-amino acids can be produced by allowing ?-trifluoromethyl-?-substituted-?,?-unsaturated esters to react with hydroxylamine to convert ?-trifluoromethyl-?-substituted-?,?-unsaturated esters into dehydrogenated closed-ring body of ?-trifluoromethyl-?-substituted-?-amino acid, and by hydrogenolyzing the dehydrogenated closed-ring body. According to this production process, novel ?-trifluoromethyl-?-substituted-?-amino acids which are free amino acids whose functional groups are not protected can be produced, in which ?-position substituent is not limited to aromatic ring group or substituted aromatic ring group while the relative stereochemistry of ?-position and ?-position can be also controlled.Type: ApplicationFiled: August 27, 2009Publication date: June 23, 2011Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Manabu Yasumoto, Takako Yamazaki, Kaori Mogi, Takashi Masuda
-
Publication number: 20110082313Abstract: Halogenated ?-fluoroethers (or bis-derivatives thereof) can be produced by reacting a halogenated hemiacetal (or bis-derivative thereof) with sulfuryl fluoride (S2F2) in the presence of an organic base. The reaction is conducted preferably in the presence of “a salt or complex of an organic base with hydrogen fluoride”, whereby the objective dehydroxyfluorination can proceed extremely favorably. It is still preferable to use as the starting substrate a halogenated hemiacetal prepared from fluoral or 3,3,3-trifluoropyruvic acid ester. Thus, industrially important halogenated ?-fluoroethers can be industrially produced with high selectivity and in high yield.Type: ApplicationFiled: May 14, 2009Publication date: April 7, 2011Applicant: CENTRAL GLASS COMPANY, LIMITEDInventors: Akihiro Ishii, Manabu Yasumoto
-
Publication number: 20110034732Abstract: Disclosed is a process for producing a protected optically active fluoroamine, which comprises the step of reacting an imine-protected optically active hydroxyamine, an oxazolidine-protected optically active hydroxyamine, or a mixture of the imine-protected optically active hydroxyamine and the oxazolidine-protected optically active hydroxyamine, with sulfuryl fluoride (SO2F2) in the presence of a tertiary amine having a carbon number of 7 to 18 (produced by substituting all of three hydrogen atoms in ammonia by alkyl groups). The desired optically active fluoroamine can be produced by hydrolyzing the protected optically active fluoroamine under acidic conditions.Type: ApplicationFiled: January 27, 2009Publication date: February 10, 2011Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Takako Yamazaki, Manabu Yasumoto
-
Publication number: 20110015428Abstract: By reacting a ?-hydroxy-?-amino acid with sulfuryl fluoride (SO2F2) in the presence of an organic base, it is possible to produce an ?-fluoro-?-amino acid of the formula [2]. By using a C8-12 tertiary amine having two or more alkyl groups of C3 or higher, and especially diisopropylethylamine, as the organic base, by-production of quantery ammonium salts is effectively suppressed. By applying the production process of the present invention, it is possible to very easily produce (2R)-3-(dibenzylamino)-2-fluoropropionic acid methyl ester, which is extremely important as a pharmaceutical intermediate, with high positional selectivity even on an industrial scale.Type: ApplicationFiled: April 21, 2009Publication date: January 20, 2011Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Takako Yamazaki, Manabu Yasumoto, Takashi Masuda, Hideyuki Tsuruta
-
Publication number: 20100305281Abstract: A one pot method of preparing cyclic carbonyl compounds comprising an active pendant pentafluorophenyl ester group is disclosed. The cyclic carbonyl compounds can be polymerized by ring opening methods to form ROP polymers comprising repeat units comprising a side chain pentafluorophenyl ester group. Using a suitable nucleophile, the pendant pentafluorophenyl ester group can be selectively transformed into a variety of other functional groups before or after the ring opening polymerization.Type: ApplicationFiled: April 30, 2010Publication date: December 2, 2010Applicants: INTERNATIONAL BUSINESS MACHINES CORPORATION, CENTRAL GLASS CO., LTD.Inventors: Masaki Fujiwara, James L. Hedrick, Alshakim Nelson, Daniel P. Sanders, Yoshiharu Terui, Manabu Yasumoto
-
Publication number: 20100267940Abstract: There is disclosed a method for producing a 4-deoxy-4-fluoro-D-glucose derivative by reacting a D-galactose derivative with either sulfuryl fluoride (SO2F2), trifluoromethanesulfonyl fluoride (CF3SO2F) or perfluorobutanesulfonyl fluoride (C4F9SO2F) in the presence of an organic base or in the presence of an organic base and a salt or complex of an organic base and hydrogen fluoride.Type: ApplicationFiled: November 26, 2008Publication date: October 21, 2010Inventors: Akihiro Ishii, Manabu Yasumoto, Takashi Ootsuka, Yasuko Nigorikawa
-
Patent number: 7807858Abstract: It was found that a fluoro derivative can be produced by reacting a hydroxy derivative with sulfuryl fluoride (SO2F2) in the presence of an organic base or in the presence of an organic base and “a salt or complex comprising an organic base and hydrogen fluoride”. According to the present production process, it is not necessary to use perfluoroalkanesulfonyl fluoride, which is not preferable in industrial use, and it is possible to advantageously produce optically-active fluoro derivatives, which are important intermediates of medicines, agricultural chemicals and optical materials, specifically 4-fluoroproline derivatives, 2?-deoxy-2?-fluorouridine derivatives, optically-active ?-fluorocarboxylate derivatives, and the like, even in a large scale.Type: GrantFiled: March 17, 2006Date of Patent: October 5, 2010Assignee: Central Glass Company, LimitedInventors: Akihiro Ishii, Takashi Ootsuka, Manabu Yasumoto, Hideyuki Tsuruta, Kenjin Inomiya, Koji Ueda, Kaori Mogi
-
Patent number: 7795478Abstract: A fluorine-containing benzaldehyde is reacted with an alkyl Grignard reagent to convert it to a magnesium alkoxide of racemic, fluorine-containing, benzyl alcohol, and subsequently the magnesium alkoxide is reacted with phthalic anhydride to obtain a phthalate half ester of racemic, fluorine-containing, benzyl alcohol, and the half ester is optically resolved by optically active 1-phenylethylamine, and then the ester group is hydrolyzed, thereby producing an optically active, fluorine-containing, benzyl alcohol.Type: GrantFiled: October 4, 2006Date of Patent: September 14, 2010Assignee: Central Glass Company, LimitedInventors: Akihiro Ishii, Koji Ueda, Manabu Yasumoto
-
Publication number: 20090250658Abstract: There is provided a novel, useful dehydroxyfluorination agent containing sulfuryl fluoride (SO2F2) and an organic base that is free from a free hydroxyl group in the molecule. According to the present dehydroxyfluorination agent, it is not necessary to use perfluoroalkanesulfonyl fluoride, which is not preferable in large-scale use, and it is possible to advantageously produce optically-active fluoro derivatives, which are important intermediates of medicines, agricultural chemicals and optical materials, for example, 4-fluoroproline derivatives, 2?-deoxy-2?-fluorouridine derivatives, optically-active ?-fluorocarboxylate derivatives, and monofluoromethyl derivatives, even in large scale.Type: ApplicationFiled: June 25, 2007Publication date: October 8, 2009Applicant: Central Glass Company, LimitedInventors: Akihiro Ishii, Takashi Ootsuka, Manabu Yasumoto, Hideyuki Tsuruta, Kenjin Inomiya, Koji Ueda, Kaori Mogi
-
Publication number: 20090240087Abstract: A fluorine-containing benzaldehyde is reacted with an alkyl Grignard reagent to convert it to a magnesium alkoxide of racemic, fluorine-containing, benzyl alcohol, and subsequently the magnesium alkoxide is reacted with phthalic anhydride to obtain a phthalate half ester of racemic, fluorine-containing, benzyl alcohol, and the half ester is optically resolved by optically active 1-phenylethylamine, and then the ester group is hydrolyzed, thereby producing an optically active, fluorine-containing, benzyl alcohol.Type: ApplicationFiled: October 4, 2006Publication date: September 24, 2009Applicant: CENTRAL GLASS COMPANY, LIMITEDInventors: Akihiro Ishii, Koji Ueda, Manabu Yasumoto
-
Patent number: 7462734Abstract: The present invention relates to a process for producing an optically active ?-fluorocarboxylate derivative represented by the formula [2], by reacting an optically active ?-hydroxycarboxylate derivative with trifluoromethanesulfonyl fluoride (CF3SO2F) in the presence of an organic base, in the formula [2], R represents a straight-chain or branched-chain alkyl group of a carbon number of 1 to 12; one of or two by any combination of aromatic hydrocarbon groups, unsaturated hydrocarbon groups, straight-chain or branched alkoxy groups of a carbon number of 1 to 6, aryloxy groups, halogen atoms (fluorine, chlorine, bromine and iodine), protected carboxyl groups, protected amino groups or protected hydroxyl group can be substituted on any carbon atoms of the alkyl group; R1 represents a straight-chain or branched-chain alkyl group of a carbon number of 1 to 8; any carbon atoms of the alkyl groups of R and R1 may form a covalent bond; and * represents an asymmetric carbon.Type: GrantFiled: August 5, 2005Date of Patent: December 9, 2008Assignee: Central Glass Company, LimitedInventors: Akihiro Ishii, Hideyuki Tsuruta, Takashi Ootsuka, Yokusu Kuriyama, Manabu Yasumoto, Kenjin Inomiya, Koji Ueda
-
Patent number: 7459586Abstract: The present invention relates to a method of producing an optically active 1-aryl-2-fluoro-substituted ethylamine compound of the formula [2] or a salt thereof by hydrogenolysis of an optically active secondary amine compound of the formula [1] or a salt thereof in the presence of a transition metal catalyst of Group VIII [Chem. 59] [where Ar represents an aryl group; n represents an integer of 1 or 2; and * represents an asymmetric carbon] [Chem. 60] [where Ar represents an aryl group; n represents an integer of 1 or 2; and * represents an asymmetric carbon].Type: GrantFiled: February 21, 2005Date of Patent: December 2, 2008Assignee: Central Glass Company LimitedInventors: Akihiro Ishii, Masatomi Kanai, Yokusu Kuriyama, Manabu Yasumoto, Kenjin Inomiya, Takashi Ootsuka, Katsuhide Suto, Koji Ueda