旋光异构体

  • 网络optical isomer;enantiomers
旋光异构体旋光异构体
  1. 光学活性起源的研究&Ⅱ.γ射线、β射线、火花放电对生成2,3-丁二醇旋光异构体的影响

    Study on the source of optical activity ⅱ . the effect of γ - radiation , β - radiation and electric discharge in ethanol on the formation of the optical isomer of 2 , 3-butanediol

  2. 不同旋光异构体棉酚对睾丸支持细胞的影响

    The Effects of Optical Isomers of Gossypol on Sertoli Cells In Vitro

  3. 有机旋光异构体R/S构型的简易命名方法

    A simple process named after the r / s configuration of rotatory isomer in organic cubic chemistry

  4. 反-头对头7-羟基香豆素二聚体的合成及其旋光异构体的拆分

    Synthesis and Recemic Resolution of Anti Heard-to-head 7-hydroxycoumarin Dimer

  5. 酶催化手性拆分旋光异构体

    Chiral resolution of optical isomers by enzyme catalytic reaction

  6. 旋光异构体或顺/反结构相差较大的异构体之间,红外光谱和热力学及低能激发态性质有明显的差异。

    The differences were observable of IR spectra and other thermodynamic properties between stereo isomers .

  7. 旋光异构体药物代谢研究的进展

    Advances in drug metabolism studies on enantiomers

  8. α-丙氨酸旋光异构体的分离

    Separation of α - Alanine Optical Isomers

  9. 光学活性起源的研究&Ⅰ.乙醇辐解产物2,3-丁二醇旋光异构体的气相色谱分析

    Study on the source of optical activity & ⅰ . the gas chromatographic analysis of the radiolytic products of ethanol-optical isomers of 2.3-butanediol

  10. 并介绍了毛细管电动色谱的改良新技术,如环糊精、胆汁盐、其它旋光异构体选择剂及有机溶剂等作为添加剂的应用。

    The technique of adding cyclodextrins , bile salts , other chiral selectors as well as organic solvent in MECC to improve the separation is introduced .

  11. 在生物化学、药物化学及有机化学中的不对称合成和催化技术中,旋光异构体的分离与分析显得越来越重要。

    It is becoming important to separate optical active compounds in the fields of biochemistry , organic chemistry , pharmaceutical chemistry as well as asymmetric synthesis and catalysis .