58-86-6 = 110-15-6 + 67-47-0 反应条件:1.1R:H2So4,24 H,Rt 标题:Organic Acid Pretreatment Of Oil Palm Trunk Biomass For Succinic Acid Production 作者:By Bukhari,Nurul Adela Et Al 参考文献:Waste And Biomass Valorization 日期:2020 卷标:11(10) 页码:5549-5559]
= 110-15-6 + 110-17-8 + 141-82-2 + 6915-15-7 + 87-69-4 反应条件:1.1R:H2So4,R:H2O2 标题:Electrochemical Conversion Of Lignin To Short-Chain Carboxylic Acids 作者:By Sun,Shirong Et Al 参考文献:Green Chemistry 日期:2023 卷标:25(8) 页码:3127-3136]
= 110-15-6 + 110-17-8 + 141-82-2 反应条件:1.1R:R:O2,S:H2O,175°C,30 Bar 标题:Lignin Alkaline Oxidation Using Reversibly-Soluble Bases 作者:By Kruger,Jacob S. Et Al 参考文献:Green Chemistry 日期:2022 卷标:24(22) 页码:8733-8741]
93-03-8 + 90-05-1 + 121-34-6 = 110-15-6 + 528-44-9 + 65-85-0 反应条件:1.1R:O2,C:12293-21-9,Rt -> 160°C; 30 H,160°C,3 Mpa 标题:A Combined Experimental And Theoretical Study On Vanadium-Catalytic Oxidation Of Lignin To Produce Carboxylic Acids 作者:By Lu,Ting Et Al 参考文献:Fuel Processing Technology 日期:2022 卷标:238 页码:107493]
= 110-15-6 反应条件:1.1R:Cacl2,R:R:Nahco3,R:K2Hpo4,R:Nacl,R:Mgso4,R:Nah2Po4,S:H2O,12 H,37°C,Ph 7.0 标题:Determination Of Metabolites Involved In Fermentative Succinic Acid Production From Glucose,Glycerol And Crude Glycerin By Hplc Methodology 作者:By Jaramillo,L. Et Al 参考文献:Revista Mexicana De Ingenieria Quimica 日期:2020 卷标:19(2) 页码:653-667]
= 110-15-6 反应条件:1.1R:K2Hpo4,R:(Nh4)2So4,R:Cacl2,R:R:R:Kh2Po4,R:Nicl2 6H2O,R:R:Zncl2,R:R:Feso4,R:R:Cucl2 2H2O,R:Kcl,R:Na2So4,R:Nh4Cl,S:H2O,15 Min,121°C,Ph 7 标题:The Effect Of Crude Glycerol Impurities On 1,3-Propanediol Biosynthesis By Klebsiella Pneumoniae Dsmz 2026 作者:By Laura,Mitrea Et Al 参考文献:Renewable Energy 日期:2020 卷标:153 页码:1418-1427]
= 110-15-6 + 141-82-2 + 617-45-8 + 6915-15-7 + 80-69-3 + 66-22-8 + 2577-38-0 + 134434-28-9 + 1068-84-4 反应条件:1.1 Reagents: Ammonium Chloride Solvents: Water; 3 - 30 D,38 °C1.2 Reagents: Hydrochloric Acid Solvents: Water; 24 H,110 °C 标题:New Insights Into The Characterization Of 'Insoluble Black Hcn Polymers' 作者:Ruiz-Bermejo,Marta; De La Fuente,Jose L.; Rogero,Celia; Menor-Salvan,Cesar; Osuna-Esteban,Susana; Et Al 参考文献:Chemistry & Biodiversity 日期:2012 卷标:9(1) 页码:25-40]
= 110-15-6 + 6915-15-7 + 80-69-3 + 121-34-6 反应条件:1.1R:Naoh,R:O2,C:Cuo,S:H2O,10-20 Min,120-200°C,1 Mpa 标题:Oxidative Catalytic Fractionation Of Lignocellulose To High-Yield Aromatic Aldehyde Monomers And Pure Cellulose 作者:By Zhu,Yuting Et Al 参考文献:Acs Catalysis 日期:2023 卷标:13(12) 页码:7929-7941]
= 110-15-6 + 141-82-2 + 6915-15-7 + 80-69-3 + 90-05-1 + 121-34-6 反应条件:1.1R:Naoh,C:Tio2,C:Cuo,Rt,20 Bar; Rt -> 150°C 标题:Potential Of Catalytic Oxidation Of Kraft Black Liquor For The Production Of Biosourced Compounds 作者:By Vilcocq,Lea Et Al 参考文献:Chemrxiv 日期:2023 卷标:From Chemrxiv 页码:1-14]
= 110-15-6 反应条件:1.1R:Cleland'S Reagent,R:Mgcl2,R:R:R:R:R:R:H2O,R:Koh,R:Nh4Cl,C:56-65-5,C:Coenzyme Ii,C:9001-51-8,C:9001-40-5,C:9073-95-4,C:9023-83-0,C:9015-83-2,C:9026-23-7,C:9012-49-1,C:9024-93-5,C:9029-03-2,C:9030-25-5,C:9024-62-8,C:37278-21-0,C:9013-02-9,C:9029-12-3,C:9001-15-4,C:1927-31-7,S:H2O 标题:Enzymatic De Novo Pyrimidine Nucleotide Synthesis 作者:By Schultheisz,Heather L. Et Al 参考文献:Journal Of The American Chemical Society 日期:2011 卷标:133(2) 页码:297-304]
= 110-15-6 + 740780-79-4 [标题:Reaction Conditions 标题:Synthesis And Spectral Characterization Of Potential Impurities Of Solifenacin Succinate 作者:Chavakula,Ramadas; Et Al 参考文献:Organic Chemistry: An Indian Journal 日期:2014 卷标:10(4) 页码:152-156]
= 110-15-6 + 13096-38-3 + 2380275-29-4 反应条件:1.1 Reagents: Ozone Solvents: Water; 25 °C1.2 Reagents: Sulfuric Acid Solvents: Water; Ph 6.5,25 °C1.3 Reagents: Sodium Hydroxide 标题:N-Dependent Ozonation Efficiency Over Nitrogen-Containing Heterocyclic Contaminants: A Combined Density Functional Theory Study On Reaction Kinetics And Degradation Pathways 作者:Yao,Yujie; Et Al 参考文献:Chemical Engineering Journal (Amsterdam 日期:2020 卷标:382
专利号:US-9884885-B2 优先权日:2009-05-18 标题:Synthesis of labile base protected-modified deoxy and modified ribo nucleosides, corresponding phosphoramidites and supports and their use in high purity oligonucleotide synthesis 发明人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P 权利人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P; CHEMGENES CORP 摘要:This invention relates to novel method of synthesis of RNA utilizing N-2-acetyl protected guanine as nucleoside base, nucleosides, succinates, phosphoramidites, corresponding solid supports that are suitable for oligo deoxy nucleosides and RNA oligonucleotide synthesis. Our discovery using N-acetyl protected guanine as nucleoside base protecting group, which is significantly faster base labile protecting group, yet significantly more stable than commonly utilized-2-isobutyryl guanosine is a novel approach to obtain highest purity oligonucleotides. This approach is designed to lead to very high purity and very clean oligonucleotide, after efficient removal of the protecting groups, including acetyl group from guanine and to produce high purity therapeutic grade DNA oligonucleotides, RNA oligonucleotides, diagnostic DNA, diagnostic RNA for microarray platform. The deprotection of acetyl protecting groups of the natural deoxy and ribonucleosides occurs under substantially reduced time in contact with mild deprotection conditions such as mild bases, secondary amines for removal of such groups under such conditions would allows synthesis of various DNA and RNA of highest purity for diagnostics and therapeutic application. This approach is designed to lead to high purity large scale therapeutic grade oligonucleotide chimeras which consist of fluoro sugar modification in conjunction with deoxy nucleosides, ribonucleosides, modified base and modified sugar nucleosides. This approach is further designed to use acetyl guanine protecting group when other bases are sensitive nucleoside, and for use in oligo peptide synthesis and for support bound oligo nucleotides.
专利号:US-8981076-B2 优先权日:2008-11-29 标 题 :Synthesis of N-FMOC protected deoxy nucleosides, ribo nucleosides, modified deoxy and ribo nucleosides, and phosphoramidites, and their use in oligonucleotide synthesis 发明人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P 权利人:SRIVASTAVA SURESH C; SRIVASTAVA NAVEEN P; CHEMGENES CORP 摘要:This invention relates to synthesis of novel -N-FMOC protected nucleosides, succinates, phosphoramidites, corresponding solid supports that are suitable for oligo deoxy nucleosides and RNA oligonucleotide synthesis. Our discovery using N-FMOC as nucleoside base protecting group, which is highly base labile protecting group is a novel approach to obtain highest purity oligonucleotides. This approach is designed to lead to very high purity and very clean oligonucleotide, after efficient removal of the protecting groups and to produce high purity therapeutic grade DNA oligonucleotides, RNA oligonucleotides, diagnostic DNA, diagnostic RNA for microarray platform. The deprotection of FMOC protecting groups of the natural deoxy and ribonucleosides occurs under very mild deprotection conditions such as mild bases, secondary and tertiary amines for removal of such groups under such conditions would allows synthesis of various DNA and RNA of highest purity for diagnostics and therapeutic application. This approach is further designed to use FMOC protecting group on various base sensitive nucleoside, and for use in oligo peptide synthesis and for support bound oligo nucleotides. DNA oligonucleotides containing 3′-end dA at the 3′-terminal will be produced using the FMOC-dA-supports would lead to much reduced M−1 deletion sequences, and thereby high purity.
专利号:US-7928223-B2 优先权日:2008-06-20 标题:Process for the synthesis of 7,8-dimethoxy-1,3-dihydro-2H-3-benzazepin-2-one, and application in the synthesis of ivabradine and addition salts thereof with a pharmaceutically acceptable acid 发明人:LERESTIF JEAN-MICHEL; LECOUVE JEAN-PIERRE; BRIGOT DANIEL 权利人:SERVIER LAB 摘要:Process for the synthesis of the compound of formula (I): n n n n n n n n n n Application in the synthesis of ivabradine, addition salts thereof with a pharmaceutically acceptable acid and hydrates thereof.
专利号:US-8927708-B2 优先权日:2013-03-26 标 题 :Process for the synthesis of 7,8-dimethoxy-1,3-dihydro-2H-3-benzazepin-2-one compounds, and application in the synthesis of ivabradine 发明人:LE FLOHIC ALEXANDRE 权利人:SERVIER LAB 摘要:Process for the synthesis of the compound of formula (I): n nwherein R represents a para-methoxybenzyl (PMB) group or the following group:n n nApplication in the synthesis of ivabradine and addition salts thereof with a pharmaceutically acceptable acid.
专利号:US-9090560-B2 优先权日:2013-09-04 标 题 :Process for microwave assisted synthesis of N-methyl pyrrolidone 发明人:KHATRI PRAVEEN KUMAR; JAIN SUMAN LATA; CHATERJEE ALOK KUMAR; BIR SAIN 权利人:COUNCIL SCIENT IND RES 摘要:The present invention relates to a process for microwave assisted synthesis of N-methyl pyrrolidone (NMP). Particularly the process relates to the synthesis of N-methyl succinimide or corresponding analogs by using microwave irradiation which on hydrogenation in the presence of a hydrogenating catalyst gives N-methyl pyrrolidone. Compared to the conventional heating microwave process requires less energy inputs and reduces the reaction time drastically from 5-6 h to 2-5 min.
专利号:US-8779122-B2 优先权日:2012-11-08 标 题:Process for the synthesis of (2E)-3-(3,4-dimethoxyphenyl)prop-2-enenitrile, and application in the synthesis of ivabradine and addition salts thereof with a pharmaceutically acceptable acid 发明人:CARRANZA MARIA DEL PILAR; GARCIA ARANDA MARIA ISABEL; GONZALEZ JOSÉ LORENZO; SANCHEZ FRÉDÉRIC 权利人:SERVIER LAB 摘要:Process for the synthesis of the compound of formula (I): n nApplication in the synthesis of ivabradine, addition salts thereof with a pharmaceutically acceptable acid and hydrates thereof.
摘要:Compound: Butanedioic acid, homopolymer 摘要:HANSCH,C ET AL. (1995) 参考文献:10.1016/j.foodchem.2012.09.111 摘要:Liu FX, Fu SF, Bi XF, Chen F, Liao XJ, Hu XS, Wu JH. Physico-chemical and antioxidant properties of four mango (Mangifera indica L.) cultivars in China. Food Chem. 2013 May 01;138(1):396–405. doi: 10.1016/j.foodchem.2012.09.111. 参考文献:10.1016/j.plaphy.2018.04.029 摘要:Karagiannis E, Michailidis M, Karamanoli K, Lazaridou A, Minas IS, Molassiotis A. Postharvest responses of sweet cherry fruit and stem tissues revealed by metabolomic profiling. Plant Physiol Biochem. 2018 Jun;127():478–84. doi: 10.1016/j.plaphy.2018.04.029.