Lee SY, Park KM, Jo SH, Nam HG, Mun S (2011) Determination of chromatographic separation
parameters of tryptophan enantiomers on a Chirosil-SCA chiral stationary phase by using the
inverse method based on the initial guesses estimated from elution by characteristic point
method. J Chromatogr A 1218(8):1195–1202
Lee MS, Khan FN, Shin SC, Jeong ED, Kim HG, Kim MJ, Cho YJ, Cha JY, Hyun MH, Jin JS
(2012) Comparison of polarimetry and crown ether-based HPLC chiral stationary phase method
to determine (L)-amino acid optical purity. Food Chem 135(2):343–347
Lee I, Gopalan AI, Lee KP (2016) Enantioselective determination of polycyclic musks in river and
wastewater by GC/MS/MS. Int J Environ Res Public Health 13(3)
Leon-Gonzalez ME, Rosales-Conrado N, Perez-Arribas LV, Guillen-Casla V (2014)
Two-dimensional liquid chromatography for direct chiral separations: a review. Biomed
Chromatogr 28(1):59–83
Li ZY, Zhang ZC, Zhang L, Leng L (2008) Stereo and enantioselective degradation of betaCypermethrin and beta-Cyfluthrin in soil. Bull Environ Contam Toxicol 80(4):335–339
Li DX, Gan L, Bronja A, Schmitz OJ (2015) Gas chromatography coupled to atmospheric pressure
ionization mass spectrometry (GC-API-MS): review. Anal Chim Acta 891:43–61
Li R, Dong F, Xu J, Liu X, Wu X, Pan X, Tao Y, Chen Z, Zheng Y (2017) Enantioseparation of
Imazalil and Monitoring of Its Enantioselective Degradation in Apples and Soils Using
Ultrahigh-Performance Liquid Chromatography-Tandem Mass Spectrometry. J Agric Food
Chem 65(16):3259–3267
Lienqueo ME, Mahn A, Navarro G, Salgado JC, Perez-Acle T, Rapaport I, Asenjo JA (2006) New
approaches for predicting protein retention time in hydrophobic interaction chromatography. J
Mol Recognit 19(4):260–269
Lin C, Fan J, Liu W, Chen X, Ruan L, Zhang W (2018) A new single-urea-bound
3,5-dimethylphenylcarbamoylated beta-cyclodextrin chiral stationary phase and its enhanced
separation performance in normal-phase liquid chromatography. Electrophoresis 39(2):348–355
Lindner KR, Mannschreck A (1980) Separation of enantiomers by HPLC on triacetylcellulose. J
Chromatogr 193:308–310
Lipton MS, Paša-Tolić L (2009) Mass spectrometry of proteins and peptides: methods and protocols. Humana, New York
Liu X, Xu X, Li C, Zhang H, Fu Q, Shao X, Ye Q, Li Z (2015) Degradation of chiral neonicotinoid
insecticide cycloxaprid in flooded and anoxic soil. Chemosphere 119:334–341
Lopez-Cabeza R, Cornejo J, Celis R (2016) Evaluation of an organo-layered double hydroxide and
two organic residues as amendments to immobilize metalaxyl enantiomers in soils: A comparative study. J Environ Manag 181:135–145
Lorenz H, Seidel-Morgenstern A (2014) Processes to separate enantiomers. Angew Chem Int Ed
Engl 53(5):1218–1250
Lough WJ (2014) Classification of LC chiral stationary phases: Wainer Types I-V revisited. J
Chromatogr B Analyt Technol Biomed Life Sci 968:1–7
Lu X, Zhao X, Bai C, Zhao C, Lu G, Xu G (2008) LC-MS-based metabonomics analysis. J
Chromatogr B Analyt Technol Biomed Life Sci 866(1–2):64–76
Luo M, Liu D, Zhou Z, Wang P (2013) A new chiral residue analysis method for triazole fungicides
in water using dispersive liquid-liquid microextraction (DLLME). Chirality 25(9):567–574
Ma Y, Ito Y (2014) Chiral high-speed counter-current chromatography: future strategies for chiral
selector development. Curr Chromatogr 1(1):69–80
Ma L, Li J, Zhao J, Liao H, Xu L, Shi ZG (2016) Penetrable silica microspheres for immobilization
of bovine serum albumin and their application to the study of the interaction between imatinib
mesylate and protein by frontal affinity chromatography. Anal Bioanal Chem 408(3):805–814
Ma M, Wei Q, Meng M, Yin J, Du L, Zhu X, Min M, Zhou X, Yin X, Gong Y (2017) Application of
partially
substituted
3,5-dimethylphenylcarbamate-(3-(2-O-beta-cyclodextrin)-2hydroxypropoxy)-propylsilyl-appended silica particles as chiral stationary phase for multimode high-performance liquid chromatography. J Chromatogr Sci 55(8):839–845
References
55
parameters of tryptophan enantiomers on a Chirosil-SCA chiral stationary phase by using the
inverse method based on the initial guesses estimated from elution by characteristic point
method. J Chromatogr A 1218(8):1195–1202
Lee MS, Khan FN, Shin SC, Jeong ED, Kim HG, Kim MJ, Cho YJ, Cha JY, Hyun MH, Jin JS
(2012) Comparison of polarimetry and crown ether-based HPLC chiral stationary phase method
to determine (L)-amino acid optical purity. Food Chem 135(2):343–347
Lee I, Gopalan AI, Lee KP (2016) Enantioselective determination of polycyclic musks in river and
wastewater by GC/MS/MS. Int J Environ Res Public Health 13(3)
Leon-Gonzalez ME, Rosales-Conrado N, Perez-Arribas LV, Guillen-Casla V (2014)
Two-dimensional liquid chromatography for direct chiral separations: a review. Biomed
Chromatogr 28(1):59–83
Li ZY, Zhang ZC, Zhang L, Leng L (2008) Stereo and enantioselective degradation of betaCypermethrin and beta-Cyfluthrin in soil. Bull Environ Contam Toxicol 80(4):335–339
Li DX, Gan L, Bronja A, Schmitz OJ (2015) Gas chromatography coupled to atmospheric pressure
ionization mass spectrometry (GC-API-MS): review. Anal Chim Acta 891:43–61
Li R, Dong F, Xu J, Liu X, Wu X, Pan X, Tao Y, Chen Z, Zheng Y (2017) Enantioseparation of
Imazalil and Monitoring of Its Enantioselective Degradation in Apples and Soils Using
Ultrahigh-Performance Liquid Chromatography-Tandem Mass Spectrometry. J Agric Food
Chem 65(16):3259–3267
Lienqueo ME, Mahn A, Navarro G, Salgado JC, Perez-Acle T, Rapaport I, Asenjo JA (2006) New
approaches for predicting protein retention time in hydrophobic interaction chromatography. J
Mol Recognit 19(4):260–269
Lin C, Fan J, Liu W, Chen X, Ruan L, Zhang W (2018) A new single-urea-bound
3,5-dimethylphenylcarbamoylated beta-cyclodextrin chiral stationary phase and its enhanced
separation performance in normal-phase liquid chromatography. Electrophoresis 39(2):348–355
Lindner KR, Mannschreck A (1980) Separation of enantiomers by HPLC on triacetylcellulose. J
Chromatogr 193:308–310
Lipton MS, Paša-Tolić L (2009) Mass spectrometry of proteins and peptides: methods and protocols. Humana, New York
Liu X, Xu X, Li C, Zhang H, Fu Q, Shao X, Ye Q, Li Z (2015) Degradation of chiral neonicotinoid
insecticide cycloxaprid in flooded and anoxic soil. Chemosphere 119:334–341
Lopez-Cabeza R, Cornejo J, Celis R (2016) Evaluation of an organo-layered double hydroxide and
two organic residues as amendments to immobilize metalaxyl enantiomers in soils: A comparative study. J Environ Manag 181:135–145
Lorenz H, Seidel-Morgenstern A (2014) Processes to separate enantiomers. Angew Chem Int Ed
Engl 53(5):1218–1250
Lough WJ (2014) Classification of LC chiral stationary phases: Wainer Types I-V revisited. J
Chromatogr B Analyt Technol Biomed Life Sci 968:1–7
Lu X, Zhao X, Bai C, Zhao C, Lu G, Xu G (2008) LC-MS-based metabonomics analysis. J
Chromatogr B Analyt Technol Biomed Life Sci 866(1–2):64–76
Luo M, Liu D, Zhou Z, Wang P (2013) A new chiral residue analysis method for triazole fungicides
in water using dispersive liquid-liquid microextraction (DLLME). Chirality 25(9):567–574
Ma Y, Ito Y (2014) Chiral high-speed counter-current chromatography: future strategies for chiral
selector development. Curr Chromatogr 1(1):69–80
Ma L, Li J, Zhao J, Liao H, Xu L, Shi ZG (2016) Penetrable silica microspheres for immobilization
of bovine serum albumin and their application to the study of the interaction between imatinib
mesylate and protein by frontal affinity chromatography. Anal Bioanal Chem 408(3):805–814
Ma M, Wei Q, Meng M, Yin J, Du L, Zhu X, Min M, Zhou X, Yin X, Gong Y (2017) Application of
partially
substituted
3,5-dimethylphenylcarbamate-(3-(2-O-beta-cyclodextrin)-2hydroxypropoxy)-propylsilyl-appended silica particles as chiral stationary phase for multimode high-performance liquid chromatography. J Chromatogr Sci 55(8):839–845
References
55
