acetophenone

n.  乙酰苯;苯乙酮;海卜能

化学



双语例句

  1. Preparation of acetophenone from ethylbenzene by oxygen oxidation with manganese sulfate catalysis
    硫酸锰催化氧气氧化乙苯合成苯乙酮
  2. RP-HPLC simultaneous determination of chlorogenic acid, caffeic acid and 4-hydroxyacetophenone in herb of Artemisia capillaris Thunb. under different UV-vis wavelengths hydroxy acetophenone
    双波长RP-HPLC法同时测定茵陈蒿中绿原酸、咖啡酸和对羟基苯乙酮的含量
  3. Preparation of intermediate 2,4-dihydroxy acetophenone with high yield
    高收率制备中间体2,4-二羟基苯乙酮
  4. Rare Earth Methanesulfonate Catalyzed Mannich Reaction of Acetophenone, Aromatic Aldehyde and Aromatic Amine
    稀土甲基磺酸盐催化苯乙酮、芳香醛和芳香胺的Mannich反应
  5. The asymmetric reduction of acetophenone ( ACP) to chiral α-phenylethyl alcohol ( PEA) in an aqueous phase catalyzed by Saccharomyces cerevisiae cells was studied as a model reaction.
    以苯乙酮为模型底物,研究了水相体系中酵母细胞催化前手性芳香酮不对称还原生成相应手性醇的反应特性。
  6. Substituent Effects on Asymmetric Reduction of Acetophenone Derivatives Induced by β-Cyclodextrin
    β-环糊精诱导苯乙酮衍生物不对称还原反应中的取代基效应
  7. Synthesis of Acetophenone 1,2-Propanediol Ketal
    苯乙酮1,2-丙二醇缩酮的合成研究
  8. Research on Synthesis of Acetophenone by Liquid-phase Catalyzed Oxidation of Ethylbenzene
    乙苯液相催化氧化合成苯乙酮的研究
  9. Catalytic Performance of Vanadium Substituted Dawson Type Molybdophosphoric Acid in Condensation of Acetophenone with Alcohol
    Dawson型钒代磷钼酸在酮/醇缩合中的催化性能
  10. Methods: α-Bromo-4-benzyloxy acetophenone is synthesized with 4-hydroxy acetophenone and bromonium as materials and methanol as solvent.
    方法:以甲醇为溶剂,以对羟基苯乙酮和溴为原料制备了α-溴-4-苄氧苯基苯乙酮。
  11. Asymmetric Hydrogenation of Methyl Pyruvate and Acetophenone Catalyzed by Al_2O_3 Supported Pt Nanoclusters or Ru Catalyst; Research on the Catalytic Process of Hydrogen Production from Dimethyl Ether Reforming
    负载型金属催化剂催化丙酮酸甲酯和苯乙酮不对称加氢反应的研究二甲醚重整制氢催化反应过程的研究
  12. Phenyl acetophenone 2-hydroxy acetophenone
    羟基-2-苯基乙酰苯酚
  13. Enamines were prepared from acetophenone and several secondary amines and examined in the reaction with methyl phenyldiazoacetate catalyzed by copper salts.
    在铜盐催化剂的作用下,重氮***甲酯与吗啉衍生的烯胺能够发生一种新型加成反应。
  14. A study of ethylbenzene to Acetophenone by selective catalytic oxidation
    乙苯选择性氧化制苯乙酮的实验研究
  15. These chiral amino alcohols were first applied to the asymmetric reduction of acetophenone.
    综述了手性氨基醇作为配体或催化剂在不对称合成中的应用及最新进展。
  16. Asymmetric Reduction of Acetophenone to Chiral α-Phenylethyl Alcohol Catalyzed by Saccharomyces cerevisiae in Aqueous-Organic Solvent Biphasic System
    水-有机溶剂两相体系中面包酵母不对称还原苯乙酮合成手性苯乙醇的研究
  17. Catalytic oxidation cumene by supported acetophenone Schiff base complexes
    担载苯乙酮希夫碱络合物的制备及其催化氧化异丙苯
  18. Research on Determination of 1,8-cineole in eucalyptus oil using acetophenone as internal standard
    用苯乙酮作内标测定桉叶油中1,8-桉叶油素的研究
  19. Study on Immobilized of Photosynthetic Bacteria and Asymmetric Hydrogenation of Acetophenone
    光合细菌的固定化及其催化苯乙酮不对称加氢的研究
  20. The Mannich reaction of 4 Aminobenzoate with acetophenone and aromatic aldehydes
    对氨基苯甲酸乙酯与苯乙酮和芳香醛的Mannich反应
  21. Asymmetric reduction of acetophenone derivatives preparing chiral aromatic alcohol has become a new focus of study.
    苯乙酮衍生物的不对称还原合成手性醇,制备手性药物是现在研究的热点。
  22. The results indicated that a higher selection on acetophenone was got in a series reaction catalyzed by new catalysts.
    实验结果表明,新制得的高分子金属催化剂对苯乙烯催化氧化,生成苯乙酮具有较高的选择性。
  23. It could be used as the process and quality control means in acetophenone from phenol tar.
    该法操作简单、快速、准确,适合于苯酚焦油中回收苯乙酮的生产过程分析和成品质量检验。
  24. The synthesis of acetophenone ethylene glycol ketal by using SO 4 2-/ TiO 2 solid superacid catalyst has been studied.
    本文报道了以SO42-/TiO2固体超强酸为催化剂,对苯乙酮和乙二醇为原料合成苯乙酮乙二醇缩酮的反应条件进行了研究。
  25. Studies on the Electrochemical Oxidation of Substituted Benzaldehyde and Acetophenone Oxime s
    取代苯甲醛肟和取代苯乙酮肟电化学氧化机理的研究
  26. Through the conversion rate of ethylbenzene and the selectivity of acetophenone, we compare their catalyze ability.
    从乙苯的转化率和苯乙酮的选择性两方面出发比较这些物质的催化能力。
  27. In this dissertation, the 2-phenylpropionic acid was synthesized in a total yield of 63.4% by Darzens condensation, hydrolysis of ester, decarboxylation and oxidation with acetophenone and ethyl chloroacetate as starting materials.
    本论文以苯乙酮和***乙酯为原料,经Darzens缩合、酯基水解、脱羧、氧化反应过程合成了2-苯基丙酸,全合成产率为63.4%,对其工艺过程进行了研究和优化。