CAS: 174899-65-1; 1-Ethyl-3-Methylimidazolium Trifluoroacetate

该化合物是一种很强的离子液体,具有极好的溶解性. 它独特的结构提供了高热稳定性和低挥发性,使它适用于各种应用,包括电化学研究和有机合成. 该化合物与各种有机和无机溶液非常相容,提高了反应率和选择性.

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174899-94-6 143314-17-4 766537-74-0

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合成工艺路线路线简述

    📜1-乙基-3-甲基溴化咪唑置于amberlite Irn78 (Supelco)体系中,用 水 用作溶剂,化学反应生成1-乙基-3-甲基咪唑三氟乙酸盐
    参考文献:通过添加少量水来诱导木质素对一系列极性离子液体的溶解性
    标题:通过添加少量水来诱导木质素对一系列极性离子液体的溶解性
    摘要:发现添加少量水可诱导几种极性离子液体对木质素的溶解能力,这些极性离子液体在不存在水的情况下不显示木质素溶解性.同样,加法...
    Doi:10.1039/c7Gc00626H

    海关参考信息

    专利信息


    专利号:US-2010191010-A1
    优先权日:2007-07-02
    标题 :Process for the synthesis of carbamates using co2
    发明人:BOSMAN JORIS KAREL PETER; CARR ROBERT HENRY
    权利人:HUNTSMAN INT LLC
    摘要:Process for the synthesis of non cyclic carbamate derivatives from amine compounds, alcohols and CO 2 in the presence of ionic liquids and optionally in the presence of a base.

    专利号:US-9267213-B1
    优先权日:2005-03-25
    标题:Electrochemical deblocking solution for electrochemical oligomer synthesis on an electrode array
    发明人:MAURER KARL; COOPER JOHN J
    权利人:CUSTOMARRAY INC
    摘要:There is disclosed an electrochemical deblocking solution for use on an electrode microarray. There is further disclosed a method for electrochemical synthesis on an electrode array using the electrochemical deblocking solution. The solution and method are for removing acid-labile protecting groups for synthesis of oligonucleotides, peptides, small molecules, or polymers on a microarray of electrodes while substantially improving isolation of deblocking to active electrodes. The method comprises applying a voltage or a current to at least one electrode of an array of electrodes. The array of electrodes is covered by the electrochemical deblocking solution.

    专利号:WO-2023113033-A1
    优先权日:2021-12-16
    标题 :Gas diffusion electrode
    发明人:KONDO SHOICHI; MAEDA SHINICHI; SHIGA NORIHITO
    权利人:NISSAN CHEMICAL CORP
    摘要:[Problem] The present invention addresses the problem of increasing the rate of reaction by controlling ammonium ions, which are generated by ammonia as the objective of the electrolytic synthesis of ammonia and protons that are supplied to the cathode, by means of the cathode and the cathode catalyst layer. [Solution] The present invention provides a gas diffusion electrode which is integrated with a catalyst layer that uses a material selected from the group consisting of cathode catalyst layer materials. Examples of the cathode catalyst layer materials include a fired body and an ionic liquid.

    专利号:US-10407676-B2
    优先权日:2014-12-09
    标题 :High efficiency, small volume nucleic acid synthesis
    发明人:POEHMERER THOMAS; KUHN PHILLIP; NOTKA FRANK; ZEIDLER ANDREAS; HEIL KORBINIAN; TREFZER AXEL; FONNUM GEIR; KATZEN FEDERICO; ANDERSSON KRISTIAN
    权利人:LIFE TECHNOLOGIES CORP; THERMO FISHER SCIENT GENEART GMBH; LIFE TECH AS
    摘要:The disclosure generally relates to compositions and methods for the production of nucleic acid molecules. In some aspects, the invention allows for the microscale generation of nucleic acid molecules, optionally followed by assembly of these nucleic acid molecules into larger molecules. In some aspects, the invention allows for efficient production of nucleic acid molecules (e.g., large nucleic acid molecules such as genomes).

    专利号:WO-2011000490-A2
    优先权日:2009-06-30
    标题:Synthesis of ionic liquids

    专利号:EP-2011782-A1
    优先权日:2007-07-02
    标题:Process for the synthesis of carbamates using co2

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    品牌试剂参考报价(招募中)

    📌 第三方产品分析报告

    ✅ COA系统入驻 | 共享模式

    主要参考文献

    参考标题:Convenient Synthesis Of Perfluoroalkyltrifluoroborates
    作者:Jan A.P. Sprenger,Christoph Kerpen,Nikolai Ignat'Ev,Maik Finze |发布日期:2018.2
    摘要:Ionic Liquids And Organic Salts With [rfbf3]− Anions, In General, And For The Synthesis Of Further Perfluoroalkylborate Anions, For Example Perfluoroalkylcyanofluoroborates [rfbf3-N(Cn)N]− (N = 1-3). Furthermore, Complex Metal Cations Are Accessible With The Weakly Coordinating [rfbf3]− Counterions, As Exemplified By The Synthesis Of [cu(Bpy)3][c2F5Bf3] (Bpy = 2,2′-Bipyridine).

    合成参考文献


    摘要:Aitken, K. M.; Aitken, R. A., Science of Synthesis, (2007) 31, 1224.
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