References
Aboul-Enein HY, Ali I (2003) Chiral separations by liquid chromatography and related
technologies. M. Dekker, New York
Aboul-Enein HY, Ali I, Gubitz G, Simons C, Nicholls PJ (2000) HPLC enantiomeric resolution of
novel aromatase inhibitors on cellulose- and amylose-based chiral stationary phases under
reversed phase mode. Chirality 12(10):727–733
Aboul-Enein HY, Aboul-Enein MN, El-Azzouny AA, Saleh OA, Hassan RM, Amin KM (2018)
Enantioseparation of substituted 1, 3-diazaspiro [4.5]decan-4-ones: HPLC comparative study on
different polysaccharide type chiral stationary phases. J Chromatogr Sci 56(2):160–165
Adams Jr JD, Woolf TF, Trevor AJ, Williams LR, Castagnoli Jr N (1982) Derivatization of chiral
amines with (S,S)-N-trifluoroacetylproline anhydride for GC estimation of enantiomeric composition. J Pharm Sci 71(6):658–661
Agneeswari R, Sung JY, Jo ES, Jeon HY, Tamilavan V, Hyun MH (2016) Preparation of two new
diasteromeric chiral stationary phases based on (+)-(18-crown-6)-2,3,11,12-tetracarboxylic acid
and (R)- or (S)-1-(1-naphthyl)ethylamine and chiral tethering group effect on the chiral recognition. Molecules 21(8)
Alanazi AM, Hefnawy MM, Al-Majed AA, Al-Suwailem AK, Kassem MG, Mostafa GA, Attia
SM, Khedr MA (2014) HPLC-fluorescence method for the enantioselective analysis of propranolol in rat serum using immobilized polysaccharide-based chiral stationary phase. Chirality
26(4):194–199
Ali I, Aboul-Enein HY (2004) Chiral pollutants : distribution, toxicity, and analysis by chromatography and capillary electrophoresis. Wiley, Hoboken, NJ
Ali I, Alam SD, Al-Othman ZA, Farooqi JA (2013) Recent advances in SPE-chiral-HPLC methods
for enantiomeric separation of chiral drugs in biological samples. J Chromatogr Sci 51
(7):645–654
Al-Othman ZA, Al-Warthan A, Alam SD, Ali I (2014) Enantio-separation of drugs with multiple
chiral centres by chromatography and capillary electrophoresis. Biomed Chromatogr 28
(11):1514–1524
Table 3.4 Recommended review collection on aspects associated with advancements in
enantiomer-selective liquid chromatography
No
Topic
Reference
1
Chiral drugs in forensic chemistry
Ribeiro et al. (2018)
2
Chirality in counter-current chromatography
Huang et al. (2018a)
3
Chirality in capillary electrophoresis
Greno et al. (2018)
4
Chiral pharmaceuticals
Sanganyado et al. (2017)
5
Chiral recognition
Scriba (2016)
6
High-through-put chromatography
Patel et al. (2016)
7
Capillary electrophoresis
Pan et al. (2016)
8
Molecular imprinting polymers
Tiwari and Prasad (2015)
9
Processes for enantiomer separation
Lorenz and Seidel-Morgenstern (2014)
10
Two-dimensional liquid chromatography
Leon-Gonzalez et al. (2014)
11
UHPLC-tandem mass spectrometry
Nie et al. (2013)
12
Agricultural fungicides
Perez-Fernandez et al. (2011)
13
HPLC separation
Mericko et al. (2007)
14
Environmental pollutants
Wong (2006)
15
Molecular imprinting polymers
Turiel and Martin-Esteban (2004)
48
3 Enantiomer-Selective High- and Ultra- High-Performance Liquid Chromatography
Aboul-Enein HY, Ali I (2003) Chiral separations by liquid chromatography and related
technologies. M. Dekker, New York
Aboul-Enein HY, Ali I, Gubitz G, Simons C, Nicholls PJ (2000) HPLC enantiomeric resolution of
novel aromatase inhibitors on cellulose- and amylose-based chiral stationary phases under
reversed phase mode. Chirality 12(10):727–733
Aboul-Enein HY, Aboul-Enein MN, El-Azzouny AA, Saleh OA, Hassan RM, Amin KM (2018)
Enantioseparation of substituted 1, 3-diazaspiro [4.5]decan-4-ones: HPLC comparative study on
different polysaccharide type chiral stationary phases. J Chromatogr Sci 56(2):160–165
Adams Jr JD, Woolf TF, Trevor AJ, Williams LR, Castagnoli Jr N (1982) Derivatization of chiral
amines with (S,S)-N-trifluoroacetylproline anhydride for GC estimation of enantiomeric composition. J Pharm Sci 71(6):658–661
Agneeswari R, Sung JY, Jo ES, Jeon HY, Tamilavan V, Hyun MH (2016) Preparation of two new
diasteromeric chiral stationary phases based on (+)-(18-crown-6)-2,3,11,12-tetracarboxylic acid
and (R)- or (S)-1-(1-naphthyl)ethylamine and chiral tethering group effect on the chiral recognition. Molecules 21(8)
Alanazi AM, Hefnawy MM, Al-Majed AA, Al-Suwailem AK, Kassem MG, Mostafa GA, Attia
SM, Khedr MA (2014) HPLC-fluorescence method for the enantioselective analysis of propranolol in rat serum using immobilized polysaccharide-based chiral stationary phase. Chirality
26(4):194–199
Ali I, Aboul-Enein HY (2004) Chiral pollutants : distribution, toxicity, and analysis by chromatography and capillary electrophoresis. Wiley, Hoboken, NJ
Ali I, Alam SD, Al-Othman ZA, Farooqi JA (2013) Recent advances in SPE-chiral-HPLC methods
for enantiomeric separation of chiral drugs in biological samples. J Chromatogr Sci 51
(7):645–654
Al-Othman ZA, Al-Warthan A, Alam SD, Ali I (2014) Enantio-separation of drugs with multiple
chiral centres by chromatography and capillary electrophoresis. Biomed Chromatogr 28
(11):1514–1524
Table 3.4 Recommended review collection on aspects associated with advancements in
enantiomer-selective liquid chromatography
No
Topic
Reference
1
Chiral drugs in forensic chemistry
Ribeiro et al. (2018)
2
Chirality in counter-current chromatography
Huang et al. (2018a)
3
Chirality in capillary electrophoresis
Greno et al. (2018)
4
Chiral pharmaceuticals
Sanganyado et al. (2017)
5
Chiral recognition
Scriba (2016)
6
High-through-put chromatography
Patel et al. (2016)
7
Capillary electrophoresis
Pan et al. (2016)
8
Molecular imprinting polymers
Tiwari and Prasad (2015)
9
Processes for enantiomer separation
Lorenz and Seidel-Morgenstern (2014)
10
Two-dimensional liquid chromatography
Leon-Gonzalez et al. (2014)
11
UHPLC-tandem mass spectrometry
Nie et al. (2013)
12
Agricultural fungicides
Perez-Fernandez et al. (2011)
13
HPLC separation
Mericko et al. (2007)
14
Environmental pollutants
Wong (2006)
15
Molecular imprinting polymers
Turiel and Martin-Esteban (2004)
48
3 Enantiomer-Selective High- and Ultra- High-Performance Liquid Chromatography
