Samuelsson J, Arnell R, Fornstedt T (2009) Potential of adsorption isotherm measurements for
closer elucidating of binding in chiral liquid chromatographic phase systems. J Sep Sci 32
(10):1491–1506
Sanganyado E, Lu Z, Fu Q, Schlenk D, Gan J (2017) Chiral pharmaceuticals: a review on their
environmental occurrence and fate processes. Water Res 124:527–542
Sherma J (2013) Review of advances in the thin layer chromatography of pesticides: 2010–2012. J
Environ Sci Health B 48(6):417–430
Shi X, Qiao L, Xu G (2015) Recent development of ionic liquid stationary phases for liquid
chromatography. J Chromatogr A 1420:1–15
Subramanian G (2007) Chiral separation techniques: a practical approach. Wiley-VCH, Weinheim
Taraji M, Haddad PR, Amos RIJ, Talebi M, Szucs R, Dolan JW, Pohl CA (2018) Chemometricassisted method development in hydrophilic interaction liquid chromatography: a review. Anal
Chim Acta 1000:20–40
Trivedi RK, Dubey PK, Mullangi R, Srinivas NR (2007) Development and validation of an
enantioselective HPLC-UV method using Chiralpak AD-H to quantify (+)- and (À)-torcetrapib
enantiomers in hamster plasma--application to a pharmacokinetic study. J Chromatogr B Analyt
Technol Biomed Life Sci 857(2):224–230
Ulrich EM, Morrison CN, Goldsmith MR, Foreman WT (2012) Chiral pesticides: identification,
description, and environmental implications. Rev Environ Contam Toxicol 217:1–74
Warner NA, Martin JW, Wong CS (2009) Chiral polychlorinated biphenyls are biotransformed
enantioselectively by mammalian cytochrome P-450 isozymes to form hydroxylated metabolites. Environ Sci Technol 43(1):114–121
Yan TQ, Riley F, Philippe L, Davoren J, Cox L, Orozco C, Rai B, Hardink M (2015) Chromatographic resolution of atropisomers for toxicity and biotransformation studies in pharmaceutical
research. J Chromatogr A 1398:108–120
References
27
closer elucidating of binding in chiral liquid chromatographic phase systems. J Sep Sci 32
(10):1491–1506
Sanganyado E, Lu Z, Fu Q, Schlenk D, Gan J (2017) Chiral pharmaceuticals: a review on their
environmental occurrence and fate processes. Water Res 124:527–542
Sherma J (2013) Review of advances in the thin layer chromatography of pesticides: 2010–2012. J
Environ Sci Health B 48(6):417–430
Shi X, Qiao L, Xu G (2015) Recent development of ionic liquid stationary phases for liquid
chromatography. J Chromatogr A 1420:1–15
Subramanian G (2007) Chiral separation techniques: a practical approach. Wiley-VCH, Weinheim
Taraji M, Haddad PR, Amos RIJ, Talebi M, Szucs R, Dolan JW, Pohl CA (2018) Chemometricassisted method development in hydrophilic interaction liquid chromatography: a review. Anal
Chim Acta 1000:20–40
Trivedi RK, Dubey PK, Mullangi R, Srinivas NR (2007) Development and validation of an
enantioselective HPLC-UV method using Chiralpak AD-H to quantify (+)- and (À)-torcetrapib
enantiomers in hamster plasma--application to a pharmacokinetic study. J Chromatogr B Analyt
Technol Biomed Life Sci 857(2):224–230
Ulrich EM, Morrison CN, Goldsmith MR, Foreman WT (2012) Chiral pesticides: identification,
description, and environmental implications. Rev Environ Contam Toxicol 217:1–74
Warner NA, Martin JW, Wong CS (2009) Chiral polychlorinated biphenyls are biotransformed
enantioselectively by mammalian cytochrome P-450 isozymes to form hydroxylated metabolites. Environ Sci Technol 43(1):114–121
Yan TQ, Riley F, Philippe L, Davoren J, Cox L, Orozco C, Rai B, Hardink M (2015) Chromatographic resolution of atropisomers for toxicity and biotransformation studies in pharmaceutical
research. J Chromatogr A 1398:108–120
References
27
