芳香醇

  • 网络aromatic alcohol
芳香醇芳香醇
  1. 芳香醇胺类药物对映体的TLC法拆分

    The Enantiomeric Separation of Aromatic Alcohol Amino Drugs by Thin-Layer Chromatography

  2. 首次研究了芳香醇同系物在疏水色谱(HIC)中的保留行为。

    The retention behaviors of aromatic alcohol homologues in hydrophobic interaction chromatography ( HIC ) were investigated firstly .

  3. 手性芳香醇在制药工业有重要的应用。

    Chiral aromatic alcohols have important applications on pharmaceutical industry .

  4. 用芳香醇同系物研究疏水色谱的保留机理

    Studying the Retention Mechanism of Hydrophobic Interaction Chromatography by Using Aromatic Alcohol Homologues as Solute

  5. 金属有机钛化合物对脂肪酸与芳香醇酯化反应的催化作用

    Catalytic activity of certain organo-titanium compounds on the ESTER-IFICATION between an aliphatic acid and an aromatic alcohol

  6. 乙酰丙酮-亮氨酸-铜体系不仅能够将脂肪醇和芳香醇的仲醇氧化成相应的酮,而且也能将伯醇全部氧化成相应的羧酸。

    The N-acac-amino acid-Cu system oxidized not only the sec-alcohols of benzylic and aliphatic alcohols to corresponding ketones , but also the primary alcohol to the corresponding carboxylic acid .

  7. 由于手性芳香醇是许多活性药物的重要中间体,因而它的合成方法在药物研究中具有重大意义。

    The chiral aromatic alcohols are of great importance which are used as intermediates of many effective medicines widely . So it is very useful to study its synthesis in the field of pharmaceutical chemistry .

  8. 苯甲醇是最简单的,也是最重要的芳香醇,目前合成苯甲醇主要是通过氯化苄直接碱性水解,但是现有方法的副产物二苄醚含量达到10%~20%。

    Benzyl alcohol is the most important aromatic alcohol . Nowadays benzyl alcohol is synthesized by the hydrolysis of benzyl chloride in the presence of alkali , but with almost 10-20 % benzyl ether , the by-product .

  9. 高磺化-β-环糊精毛细管电泳分离分析手性芳香仲醇

    Analysis of Chiral Secondary Aromatic Alcohols by Capillary Electrophoresis Using Sulfated β - Cyclodextrin as Chiral Selector

  10. 在优化条件下,TBN/DDQ/O2体系能够将苄醇类、杂芳香苄醇和取代α-苯乙醇类底物定量地、高选择性地氧化成相应的醛或酮。

    Under optimum conditions , benzylic alcohols , heteroaromatic analogs and substituted α - phenyl ethanols could be oxidized to their corresponding aldehydes and ketones .

  11. 在室温下,可以获得一系列芳香仲醇化合物,反应处理简单,产物易分离,产率达到92%以上。

    A series of aromatic alcohol compounds were synthesized at room temperature . The products were easy separated from catalyst and the yield of which is up to 92 % .

  12. 以高磺化-β-CD作为毛细管电泳手性选择剂,建立了有效分离7种手性芳香仲醇对映体的新方法,在优化的电泳条件下,所有芳香仲醇对映体均实现了基线分离。

    A new CE method was developed to efficiently separate seven chiral secondary aromatic alcohols by using S - β - CD as chiral selector . Under the optimal conditions , the baseline separation of the enantiomers of secondary aromatic alcohols was obtained .

  13. Simplex优化色谱条件分离芳香族的醇、醛、酸

    Simplex Optimization of Chromatographic Conditions to Separate Aromatic Alcohol , Aldehyde and Acid

  14. 对映体的气相色谱分析Ⅱ.手性芳香二级醇的分离测定

    The Enantiomeric Analysis on Gas Chromatography ( GC ) ⅱ . The Separation and Quantitation of Chiral Aromatic Alcohols

  15. 以废聚酯()原料,研究了废聚酯瓶料醇解成芳香族聚酯多元醇的工艺。

    Taking the discarded polyester ( bottle ) as the raw material , we study a technique in which it is decomposed into DEG.

  16. 硫酸亚铈作为一种便宜的和有效的催化剂催化芳香化合物与苄基醇、烯丙醇类化合物和苄基氯的傅-克烷基化反应。

    The effects of catalyst preparation conditions and reaction parameters on the performance of the catalyst for the benzene benzylation with benzyl chloride were investigated .

  17. 芳香酮的不对称加氢生成的手性芳香醇是合成手性药物和精细化学品的重要中间体。

    The chiral aromatic alcohol , product of the asymmetric hydrogenation of the corresponding ketones , is of great importance to the synthesis of medicines and fine chemicals .