CAS: 598-98-1; Methyl Trimethylacetate

该化合物是分子分子式C7H14O2,分子重量相对较低,这种无色液体有水果味,以其低挥发性和中等溶解性闻名于水中,使其在有机溶剂中更易溶解.甲基丙甲酸主要用作溶剂和各种化学化合物的合成,包括制药和农用化学品.其化学结构是分形的烷基化合物,其独特的特性是,例如,与线性酯相比,冷点和沸点较低.此外,该物质被认为毒性较低,但在处理时仍需遵守安全防范措施.还注意到甲基丙甲酸盐在正常条件下的稳定性,使其在各种工业应用中成为有用的化合物.

结构式图片

欧盟法规

ECHA物质C&L通报REACH预注册

上下游产品

CAS号67-56-1 甲醇 | CAS号75-98-9 三甲基乙酸 | CAS号3282-30-2 特戊酰氯 | CAS号630-19-3 三甲基乙醛 | CAS号61985-23-7 甲基1H-咪唑-1-羧酸甲酯 | CAS号201230-82-2 carbon monoxide | CAS号558-17-8 2-碘-2-甲基丙烷 | CAS号30451-99-1 1,1-dimethoxy-2... | CAS号109-02-4 N-甲基吗啉 | CAS号1184-88-9 新戊酸钠 | CAS号3938-95-2 特戊酸乙酯 | CAS号66793-96-2 3-乙基-2,2-二甲基-3-戊醇 | CAS号3970-62-5 2,2-二甲基-3-戊醇 | CAS号42826-42-6 2,2-二甲基丙酰肼 | CAS号938-16-9 2-甲基丙酮 | CAS号7332-96-9 1-phenyl-3,3-di... | CAS号75-84-3 新戊醇 | CAS号19550-89-1 2,2-dimethyl-5-... | CAS号75-98-9 三甲基乙酸 | CAS号4346-64-9 methylselanylbenzene

合成工艺路线路线简述

    Methyl 3-Bromo-2,2-Dimethylpropanoate置于三正丁基氢锡体系中,化学反应生成 三甲基乙酸甲酯
    参考文献:Cyclopropanol Derivatives As Intermediates For Organochemical Synthesis
    标题:Cyclopropanol Derivatives As Intermediates For Organochemical Synthesis
    摘要:
    DOI:10.1021/ja00728A029

    海关参考信息

    专利信息


    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-2006287520-A1
    优先权日:2005-05-16
    标 题 :Synthesis of salinosporamide A and analogues thereof
    发明人:DANISHEFSKY SAMUEL J; ENDO ATSUSHI
    权利人:DANISHEFSKY SAMUEL J; ENDO ATSUSHI
    摘要:A novel synthesis of salinosporamide A is provided. Salinospoamide A as well as structurally related natural products, omuralide and lactacystin, have been shown to be proteasome inhibitors. Therefore, these compounds as well as analogues of these natural products may be useful in the treatment of proliferative diseases such as cancer, autoimmune diseases, diabetic retinopathy, etc. The invention provides for the synthesis of salinosporamide A as well as analogs thereof using a convenient point for derivatization of the bicyclic core. Pharmaceutical compositions and method of using the inventive compounds are also provided.

    专利号:US-11999757-B2
    优先权日:2017-11-01
    标 题:Synthesis of boronate ester derivatives and uses thereof
    发明人:BOYER SERGE HENRI; HECKER SCOTT J; VERZIJL GERARDUS K M; HERMSEN PETRUS J
    权利人:MELINTA SUBSIDIARY CORP
    摘要:Disclosed herein are methods for the preparation of boronate derivatives in the synthesis of antimicrobial compounds and uses thereof. Disclosed herein includes method of making a compound of Formula (B) by reducing the ketone group of the keto-ester compound of Formula (A), and the reduction can be performed using a Ruthenium based catalyst system or using an alcohol dehydrogenase bioreduction system.

    专利号:US-9206209-B2
    优先权日:2010-10-19
    标 题:Nucleotide analogue, method of synthesis of nucleotide analogue, use of nucleotide analogue, antiviral pro-nucleotide, pharmaceutical composition
    发明人:KRASZEWSKI ADAM; ROMANOWSKA JOANNA; SOBKOWSKI MICHAL; SZYMANSKA-MICHALAK AGNIESZKA; STAWINSKI JACEK; BORYSKI JERZY; LIPNIACKI ANDRZEJ; PIASEK ANDRZEJ
    权利人:KRASZEWSKI ADAM; ROMANOWSKA JOANNA; SOBKOWSKI MICHAL; SZYMANSKA-MICHALAK AGNIESZKA; STAWINSKI JACEK; BORYSKI JERZY; LIPNIACKI ANDRZEJ; PIASEK ANDRZEJ; INST CHEMII BIOORG PAN; NARODOWY INST LEKOW
    摘要:An exemplary emboidment is related to a pharmaceutical composition of the class of nucleotide analogues and antiviral pro-nucleotides useful in partial or complete inhibition of human immunodeficiency virus (HIV). An exemplary embodiment is expressed in the formula (XVI): n nwhere X stands for N 3 and B stands for thymidine-1-yl, or X stands for H and B stands for uracil-1-yl or adenin-1-yl or hypoxanthin-1-yl.A method of synthesis of the nucleotide analogue using a phosphorylating agent for synthesis of the nucleotide analogue is provided.

    专利号:US-10669292-B2
    优先权日:2014-05-05
    标 题 :Synthesis of boronate salts and uses thereof
    发明人:HECKER SCOTT; BOYER SERGE
    权利人:REMPEX PHARMACEUTICALS INC
    摘要:Disclosed herein are boronate intermediates in the synthesis of antimicrobial compounds and the use and preparation thereof. Some embodiments relate to crystalline boronate salt derivatives and their use in the synthesis of therapeutic compounds.
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    ✅ COA系统入驻 | 共享模式

    合成参考文献


    摘要:Bertus, P.; Boeda, F.; Pearson-Long, M. S. M., Science of Synthesis Knowledge Updates, (2012) 1, 8.
    摘要:Bertus, P.; Boeda, F.; Pearson-Long, M. S. M., Science of Synthesis Knowledge Updates, (2012) 1, 17.
    摘要:Mérour, J.-Y.; Joseph, B., Science of Synthesis Knowledge Updates, (2016) 3, 67.
    摘要:Li, G.; Szostak, M., Science of Synthesis Knowledge Updates, (2020) 2, 226.
    摘要:Li, G.; Szostak, M., Science of Synthesis Knowledge Updates, (2020) 2, 230.
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