Evaluation of two pairs of chiral stationary phases: effects from the length of the achiral spacers.
暂无分享,去创建一个
[1] S. Allenmark,et al. Resolution studies on two regioisomeric chiral stationary phases: effects from reversed orientation of an amide group. , 2004, Journal of chromatography. A.
[2] P. Levkin,et al. Temperature-dependent racemic compound-conglomerate crystallization of 2,3:6,7-dibenzobicyclo[3.3.1]nona-2,6-diene-4,8-dione , 2003 .
[3] D. Smithrud,et al. Synthesis and physical properties of protein core mimetics. , 2001, The Journal of organic chemistry.
[4] U. Skogsberg,et al. Some conformationally restricted chiral stationary phase selector units related toN,N′-diallyl-l-tartardiamide , 2001 .
[5] P. Axelsen,et al. Design and Synthesis of Foldamers Based on an Anthracene Diels–Alder Adduct , 2001 .
[6] U. Skogsberg,et al. Chiral selectors based on C2-symmetric dicarboxylic acids , 2000 .
[7] P. Turner,et al. Synthesis of functionalized chiral carbocyclic cleft molecules complementary to Tröger's base derivatives. , 2000, The Journal of organic chemistry.
[8] G. Pettersson,et al. Discrimination between enantioselective and non-selective binding sites on cellobiohydrolase-based stationary phases by site specific competing ligands. , 1999, Journal of chromatography. A.
[9] H. Ihmels. Synthesis, Fluorescence Properties, and Head‐to‐Tail Regioselectivity in the Photodimerization of a Donor–Acceptor‐Substituted Anthracene , 1999 .
[10] P. Möller,et al. Chromatographic separation of enantiomers on N,N' -diallyl-L-tartardiamide-based network-polymeric chiral stationary phases , 1996 .
[11] G. Uray,et al. Efficient high-performance liquid chromatographic enantioseparation of five-membered aryl-substituted lactones and cyclic carbamates on a (R,R)-diaminodihydroethanoanthracene-derived chiral stationary phase , 1996 .
[12] N. Berova,et al. Circular Dichroism: Principles and Applications , 1994 .
[13] K. Hatada,et al. Chromatographic Optical Resolution of Enantiomers on Polyamides Containing 1,2-Disubstituted Cyclohexane Moiety as a Chiral Residue , 1991 .
[14] T. Hashimoto,et al. Optically active polyamides consisting of anti head-to-head coumarin dimer and α,ι-alkanediamine. Odd-even discrimination in chiral recognition ability depending on the number of the diamine component and correlation between the ability and crystallizability , 1990 .
[15] S. Hara,et al. A chiral stationary phase derived from (R,R)-tartramide with broadened scope of application to the liquid chromatographic resolution of enantiomers , 1987 .
[16] Y. Nakagawa,et al. Optical Activity and Absolute Configuration of 2,3 :6,7-Dibenzobicyclo [3.3.1]nona-2,6-diene Derivatives , 1975 .
[17] Dudley H. Williams,et al. Spectroscopic Methods in Organic Chemistry , 1969 .
[18] S. Allenmark,et al. Evaluation of a chiral stationary phase derived from a simple Diels-Alder reaction. , 2003, Chirality.
[19] S. Claeson,et al. Enantiomerization at sulfur, selenium and tellurium stereogenic centres: studies by dynamic chiral liquid chromatography and chiroptical methods. , 2000, Enantiomer.
[20] G. Guiochon,et al. Apparent and true enantioselectivity in enantioseparations. , 2000, Chirality.
[21] P. Möller,et al. A new class of network‐polymeric chiral stationary phases , 1995 .
[22] S. Allenmark. Chiral discrimination by albumin: a mechanistic study of liquid chromatographic optical resolution of nonaromatic carboxylic acids. , 1993, Chirality.