WO2005084803A1 - 不斉反応用触媒、及びそれを用いた光学活性化合物の製造方法 - Google Patents
不斉反応用触媒、及びそれを用いた光学活性化合物の製造方法 Download PDFInfo
- Publication number
- WO2005084803A1 WO2005084803A1 PCT/JP2005/004077 JP2005004077W WO2005084803A1 WO 2005084803 A1 WO2005084803 A1 WO 2005084803A1 JP 2005004077 W JP2005004077 W JP 2005004077W WO 2005084803 A1 WO2005084803 A1 WO 2005084803A1
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- WIPO (PCT)
- Prior art keywords
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- optically active
- hydrogen atom
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J31/00—Catalysts comprising hydrides, coordination complexes or organic compounds
- B01J31/16—Catalysts comprising hydrides, coordination complexes or organic compounds containing coordination complexes
- B01J31/22—Organic complexes
- B01J31/2204—Organic complexes the ligands containing oxygen or sulfur as complexing atoms
- B01J31/2208—Oxygen, e.g. acetylacetonates
- B01J31/2226—Anionic ligands, i.e. the overall ligand carries at least one formal negative charge
- B01J31/223—At least two oxygen atoms present in one at least bidentate or bridging ligand
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07B—GENERAL METHODS OF ORGANIC CHEMISTRY; APPARATUS THEREFOR
- C07B53/00—Asymmetric syntheses
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07C—ACYCLIC OR CARBOCYCLIC COMPOUNDS
- C07C221/00—Preparation of compounds containing amino groups and doubly-bound oxygen atoms bound to the same carbon skeleton
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07C—ACYCLIC OR CARBOCYCLIC COMPOUNDS
- C07C327/00—Thiocarboxylic acids
- C07C327/20—Esters of monothiocarboxylic acids
- C07C327/22—Esters of monothiocarboxylic acids having carbon atoms of esterified thiocarboxyl groups bound to hydrogen atoms or to acyclic carbon atoms
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D307/00—Heterocyclic compounds containing five-membered rings having one oxygen atom as the only ring hetero atom
- C07D307/02—Heterocyclic compounds containing five-membered rings having one oxygen atom as the only ring hetero atom not condensed with other rings
- C07D307/34—Heterocyclic compounds containing five-membered rings having one oxygen atom as the only ring hetero atom not condensed with other rings having two or three double bonds between ring members or between ring members and non-ring members
- C07D307/38—Heterocyclic compounds containing five-membered rings having one oxygen atom as the only ring hetero atom not condensed with other rings having two or three double bonds between ring members or between ring members and non-ring members with substituted hydrocarbon radicals attached to ring carbon atoms
- C07D307/54—Radicals substituted by carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D333/00—Heterocyclic compounds containing five-membered rings having one sulfur atom as the only ring hetero atom
- C07D333/02—Heterocyclic compounds containing five-membered rings having one sulfur atom as the only ring hetero atom not condensed with other rings
- C07D333/04—Heterocyclic compounds containing five-membered rings having one sulfur atom as the only ring hetero atom not condensed with other rings not substituted on the ring sulphur atom
- C07D333/06—Heterocyclic compounds containing five-membered rings having one sulfur atom as the only ring hetero atom not condensed with other rings not substituted on the ring sulphur atom with only hydrogen atoms, hydrocarbon or substituted hydrocarbon radicals, directly attached to the ring carbon atoms
- C07D333/24—Radicals substituted by carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2231/00—Catalytic reactions performed with catalysts classified in B01J31/00
- B01J2231/30—Addition reactions at carbon centres, i.e. to either C-C or C-X multiple bonds
- B01J2231/34—Other additions, e.g. Monsanto-type carbonylations, addition to 1,2-C=X or 1,2-C-X triplebonds, additions to 1,4-C=C-C=X or 1,4-C=-C-X triple bonds with X, e.g. O, S, NH/N
- B01J2231/341—1,2-additions, e.g. aldol or Knoevenagel condensations
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2231/00—Catalytic reactions performed with catalysts classified in B01J31/00
- B01J2231/40—Substitution reactions at carbon centres, e.g. C-C or C-X, i.e. carbon-hetero atom, cross-coupling, C-H activation or ring-opening reactions
- B01J2231/48—Ring-opening reactions
- B01J2231/482—Ring-opening reactions asymmetric reactions, e.g. kinetic resolution of racemates
- B01J2231/485—Ring-opening reactions asymmetric reactions, e.g. kinetic resolution of racemates kinetic resolution of epoxide racemates
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2531/00—Additional information regarding catalytic systems classified in B01J31/00
- B01J2531/02—Compositional aspects of complexes used, e.g. polynuclearity
- B01J2531/0261—Complexes comprising ligands with non-tetrahedral chirality
- B01J2531/0266—Axially chiral or atropisomeric ligands, e.g. bulky biaryls such as donor-substituted binaphthalenes, e.g. "BINAP" or "BINOL"
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01J—CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY; THEIR RELEVANT APPARATUS
- B01J2531/00—Additional information regarding catalytic systems classified in B01J31/00
- B01J2531/50—Complexes comprising metals of Group V (VA or VB) as the central metal
- B01J2531/57—Niobium
Definitions
- an effective catalyst system is required for the purpose of developing a more efficient reaction, that is, a reaction having a chemical yield close to 100% and a stereoselectivity close to 100%.
- R 1 represents a hydrogen atom, a halogen atom, a perfluoroalkyl group having 4 or less carbon atoms, or an alkyl group or an alkoxy group having 4 or less carbon atoms
- R 2 represents a hydrogen atom or 11 carbon atoms.
- reaction substrate is represented by the formula IV
- R 1U and R 11 each represent one selected from the group consisting of a hydrogen atom, an aliphatic hydrocarbon group, an aromatic hydrocarbon group, an alkyloxy group, an aryloxy group, and a silyloxy group
- R 12 represents Hydrogen atom, aliphatic hydrocarbon group, alkyloxy group, aryloxy group, arylthio group, and alkylthio group represent one selected member
- R 13 is the same or different! / It is preferably a silicon enolate represented by a hydrogen group).
- triol for example,
- R 1 represents a hydrogen atom, a halogen atom, a perfluoroalkyl group having 4 or less carbon atoms, or an alkyl group or an alkoxy group having 4 or less carbon atoms
- R 2 represents a hydrogen atom or 11 carbon atoms.
- 10 represents a hydrocarbon group
- n represents an integer of 0 to 2).
- the role of the substituents on the naphthalene ring is thought to be mainly an electronic effect, but not merely an effect on coordination easiness.
- the above-mentioned compound and triol or tetraol there is no particular limitation on the method of mixing the above-mentioned compound and triol or tetraol.
- the above-mentioned components may be mixed in an organic solvent and stirred appropriately.
- the organic solvent hydrocarbons, halogenated hydrocarbons, and the like can be suitably used, and particularly, methylene chloride, toluene, or a mixed solvent thereof is preferable.
- the mixing temperature.1S Mixing is easy around room temperature, then the temperature between room temperature and the boiling point of toluene It is preferable to ripen at a temperature (preferably around 60 ° C.).
- the aging time of the catalyst is usually in the range of 30 minutes to 24 hours, preferably 113 hours.
- the catalyst of the present invention is a Mannich type reaction in which imine or acylhydrazone is used as an electrophile (reaction substrate) and a silicon enolate is used as a nucleophile.
- the substituents R 5 and R 6 in the above formula are each selected from the group consisting of a saturated or unsaturated aliphatic hydrocarbon group, an aromatic hydrocarbon group and an alkoxycarbonyl group. These are substituents, and these substituents may have a hetero atom or a functional group that does not inhibit the addition reaction.
- Various imine conjugates can be easily synthesized from the corresponding carbonyl compound and amine carbonate according to a known method.
- various acylhydrazone compounds can be easily synthesized with the corresponding carbohydrate compounds according to known methods.
- R 10 and R 11 each represent one selected from the group consisting of a hydrogen atom, an aliphatic hydrocarbon group, an aromatic hydrocarbon group, an alkyloxy group, an aryloxy group, and a silyloxy group
- R 12 represents hydrogen.
- One of R 13 is the same or different! /, Or! /, (Representing a hydrocarbon group).
- R 13 respectively a methyl group which may be the same or different, Echiru group, isopropoxy port propyl group, phenyl group, and the group power Kei-containing enolates using one or more selected third-butyl group.
- R 15, R lb represents a hydrogen atom, an aliphatic hydrocarbon group, aromatic hydrocarbon group, and is selected from the group of hydrocarbon radicals that having a substituent, Nag in either a hydrogen atom R 15 and R And 16 may form a 5- or more-membered ring structure, or a compound represented by the formula:
- the method for adding the reaction substrate to the catalyst is not particularly limited, but generally, imines or the like dissolved in a solvent are dropped into the solution containing the catalyst, and then the solution containing the nucleophile is dropped. do it.
- the reaction temperature can be appropriately selected depending on the type of the reaction substrate, but is usually ⁇ 78 ° C. to room temperature, preferably 40 ° C. to 0 ° C.
- the reaction time usually ends in 117 hours.
- the concentration of the reaction substrate in the reaction system containing the above-mentioned catalyst and solvent is preferably about 0.05 to 1 mol / l, more preferably about 0.1 to 0.5 mol / l.
- an imine conjugate dissolved in a halogenated hydrocarbon such as methylene chloride or the like may be dropped into a solution containing the above catalyst, and then a nucleophile may be dropped.
- Triol was prepared according to the reaction formula shown in FIG.
- the above compound A2 was added to a solution of 15.Og (83 mmol) and 15 ml (100 mmol) of tetramethylethylenediamine (TMEDA) in THF (200 ml) at 78 ° C. with n-butyllithium hexane.
- the solution (100 mmol Z64 ml) was added dropwise. After 30 minutes, the solution was heated to 0 ° C, stirred for 1 hour, cooled again to 78 ° C, and dimethylformamide (DMF) (15.9 ml) was slowly dropped. After the temperature of the reaction solution was slowly raised to room temperature, it was poured into a saturated aqueous solution of ammonium chloride.
- ether containing (R) —2,2′bis (methoxymethoxy) — [1,1 ′] binaphthalene (37.9 mmol, symbol A4 in FIG. 1) and TMEDA (45. lmmol) A solution of n-butyllithium in hexane (45.4 mmol / 28.9 ml) was added dropwise to the solution (450 ml) at room temperature, and the mixture was stirred for 1.5 hours. After the mixed solution was cooled to 78 ° C, a solution of the above product A3 (22.9 mmol) in ether (50 ml) was added dropwise.
- a toluene (0.60 mL) solution of niobium methoxide (0.040 mmol) was added at room temperature to a toluene (0.40 mL) solution of a tetradentate binaphthol structure (optically active tetraol) (0.044 mmol), Thereafter, the mixture was stirred at 60 ° C for 3 hours, and then returned to room temperature to obtain a toluene solution of the chiral niobium complex.
- the optically active tetraol 8a shown in FIG. 2 was used.
- a predetermined additive is charged into another reaction vessel, and the mixture is placed under an argon atmosphere, and then the above prepared chiral niobium complex methylene chloride (toluene) solution is transferred to this reaction vessel using force-Yule, and the methylene chloride is added thereto.
- toluene was used for binaphthol structure lc (0.50 mL). This was stirred at room temperature for 30 minutes and cooled to 0 ° C.
- R represents an alkyl group of niobium alkoxide.
- FIG. 1 is a diagram showing a reaction for preparing a triol containing a binaphthol structure.
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- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Inorganic Chemistry (AREA)
- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
- Catalysts (AREA)
- Heterocyclic Compounds Containing Sulfur Atoms (AREA)
- Furan Compounds (AREA)
- Low-Molecular Organic Synthesis Reactions Using Catalysts (AREA)
Description
Claims
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2006510794A JP4663629B2 (ja) | 2004-03-09 | 2005-03-09 | 不斉反応用触媒、及びそれを用いた光学活性化合物の製造方法 |
EP05720349.9A EP1724013B1 (en) | 2004-03-09 | 2005-03-09 | Asymmetric reaction catalyst and process for production of optically active compounds with the same |
US10/589,259 US7667078B2 (en) | 2004-03-09 | 2005-03-09 | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
US12/567,936 US7910762B2 (en) | 2004-03-09 | 2009-09-28 | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2004-064994 | 2004-03-09 | ||
JP2004064994 | 2004-03-09 |
Related Child Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/589,259 A-371-Of-International US7667078B2 (en) | 2004-03-09 | 2005-03-09 | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
US12/567,936 Division US7910762B2 (en) | 2004-03-09 | 2009-09-28 | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
Publications (1)
Publication Number | Publication Date |
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WO2005084803A1 true WO2005084803A1 (ja) | 2005-09-15 |
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ID=34918212
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PCT/JP2005/004077 WO2005084803A1 (ja) | 2004-03-09 | 2005-03-09 | 不斉反応用触媒、及びそれを用いた光学活性化合物の製造方法 |
Country Status (4)
Country | Link |
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US (2) | US7667078B2 (ja) |
EP (1) | EP1724013B1 (ja) |
JP (1) | JP4663629B2 (ja) |
WO (1) | WO2005084803A1 (ja) |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2007238518A (ja) * | 2006-03-09 | 2007-09-20 | Japan Science & Technology Agency | 光学活性1,2−ジアミン化合物の製造方法及び光学活性ニオブ触媒 |
JP2008222600A (ja) * | 2007-03-09 | 2008-09-25 | Japan Science & Technology Agency | 光学活性1,2−アミノアルコール化合物の製造方法及び光学活性触媒 |
JP2009191026A (ja) * | 2008-02-15 | 2009-08-27 | Japan Science & Technology Agency | 光学活性ピペリジン誘導体の製造方法 |
JP2009215222A (ja) * | 2008-03-11 | 2009-09-24 | Japan Science & Technology Agency | 光学活性1,2−ジアミン化合物の製造方法及び光学活性触媒 |
JP2009215202A (ja) * | 2008-03-10 | 2009-09-24 | Japan Science & Technology Agency | β−アルキルオキシカルボニル化合物の製造方法 |
US7910762B2 (en) | 2004-03-09 | 2011-03-22 | Japan Science And Technology Agency | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8732240B1 (en) | 2010-12-18 | 2014-05-20 | Google Inc. | Scoring stream items with models based on user interests |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0491093A (ja) * | 1990-08-07 | 1992-03-24 | Sumitomo Chem Co Ltd | 光学活性ビナフチル誘導体およびその製造法 |
JP2001031682A (ja) * | 1999-07-16 | 2001-02-06 | Nippon Soda Co Ltd | 1,1−ビ−2−ナフトール誘導体、これを配位子とする金属錯体、並びに光学活性ニトロアルコール及びマイケル付加体の製造方法 |
JP2003299962A (ja) * | 2002-04-09 | 2003-10-21 | Japan Science & Technology Corp | キラルジルコニウム触媒とアンチ選択性非対称アルドール反応方法 |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP3547590B2 (ja) | 1997-07-23 | 2004-07-28 | 独立行政法人 科学技術振興機構 | 不斉ジルコニウム触媒 |
CN100360496C (zh) * | 1999-09-20 | 2008-01-09 | 因维斯塔技术有限公司 | 多齿亚磷酸酯配体、含有这类配体的催化组合物和使用这类催化组合物的催化方法 |
JP3432476B2 (ja) | 2000-03-10 | 2003-08-04 | 科学技術振興事業団 | キラルジルコニウム触媒とそれを用いた光学活性anti−アルドール体合成方法 |
JP2002275112A (ja) | 2001-03-14 | 2002-09-25 | Nippon Soda Co Ltd | ビナフトール化合物およびその製造法 |
JP4024059B2 (ja) | 2001-03-15 | 2007-12-19 | 独立行政法人科学技術振興機構 | ビナフトール誘導体とキラルジルコニウム触媒並びに不斉ヘテロデイールズ・アルダー反応方法 |
WO2003076410A1 (fr) * | 2002-03-11 | 2003-09-18 | Japan Science And Technology Agency | Procede de cycloaddition asymetrique intramoleculaire [3+2] d'hydrazones |
FR2849027B1 (fr) * | 2002-12-23 | 2005-01-21 | Rhodia Polyamide Intermediates | Procede de synthese de composes comprenant des fonctions nitriles a partir de composes a insaturations ethyleniques |
WO2005084803A1 (ja) | 2004-03-09 | 2005-09-15 | Japan Science And Technology Agency | 不斉反応用触媒、及びそれを用いた光学活性化合物の製造方法 |
-
2005
- 2005-03-09 WO PCT/JP2005/004077 patent/WO2005084803A1/ja active Application Filing
- 2005-03-09 EP EP05720349.9A patent/EP1724013B1/en not_active Ceased
- 2005-03-09 JP JP2006510794A patent/JP4663629B2/ja not_active Expired - Fee Related
- 2005-03-09 US US10/589,259 patent/US7667078B2/en not_active Expired - Fee Related
-
2009
- 2009-09-28 US US12/567,936 patent/US7910762B2/en not_active Expired - Fee Related
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0491093A (ja) * | 1990-08-07 | 1992-03-24 | Sumitomo Chem Co Ltd | 光学活性ビナフチル誘導体およびその製造法 |
JP2001031682A (ja) * | 1999-07-16 | 2001-02-06 | Nippon Soda Co Ltd | 1,1−ビ−2−ナフトール誘導体、これを配位子とする金属錯体、並びに光学活性ニトロアルコール及びマイケル付加体の製造方法 |
JP2003299962A (ja) * | 2002-04-09 | 2003-10-21 | Japan Science & Technology Corp | キラルジルコニウム触媒とアンチ選択性非対称アルドール反応方法 |
Non-Patent Citations (1)
Title |
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See also references of EP1724013A4 * |
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7910762B2 (en) | 2004-03-09 | 2011-03-22 | Japan Science And Technology Agency | Asymmetric reaction catalyst and method for preparing optically active compound using the same |
JP2007238518A (ja) * | 2006-03-09 | 2007-09-20 | Japan Science & Technology Agency | 光学活性1,2−ジアミン化合物の製造方法及び光学活性ニオブ触媒 |
JP4590607B2 (ja) * | 2006-03-09 | 2010-12-01 | 独立行政法人科学技術振興機構 | 光学活性1,2−ジアミン化合物の製造方法及び光学活性ニオブ触媒 |
JP2008222600A (ja) * | 2007-03-09 | 2008-09-25 | Japan Science & Technology Agency | 光学活性1,2−アミノアルコール化合物の製造方法及び光学活性触媒 |
JP2009191026A (ja) * | 2008-02-15 | 2009-08-27 | Japan Science & Technology Agency | 光学活性ピペリジン誘導体の製造方法 |
JP2009215202A (ja) * | 2008-03-10 | 2009-09-24 | Japan Science & Technology Agency | β−アルキルオキシカルボニル化合物の製造方法 |
JP2009215222A (ja) * | 2008-03-11 | 2009-09-24 | Japan Science & Technology Agency | 光学活性1,2−ジアミン化合物の製造方法及び光学活性触媒 |
Also Published As
Publication number | Publication date |
---|---|
JP4663629B2 (ja) | 2011-04-06 |
US7667078B2 (en) | 2010-02-23 |
EP1724013A4 (en) | 2007-04-25 |
US7910762B2 (en) | 2011-03-22 |
JPWO2005084803A1 (ja) | 2007-11-29 |
US20100029968A1 (en) | 2010-02-04 |
EP1724013A1 (en) | 2006-11-22 |
US20070265472A1 (en) | 2007-11-15 |
EP1724013B1 (en) | 2015-01-28 |
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