References
Adam V, Vaculovicova M (2017) Capillary electrophoresis and nanomaterials - Part I: Capillary
electrophoresis of nanomaterials. Electrophoresis 38(19):2389–2404
Ali I, Suhail M, Al-Othman ZA, Alwarthan A, Aboul-Enein HY (2016) Enantiomeric resolution of
multiple chiral centres racemates by capillary electrophoresis. Biomed Chromatogr 30
(5):683–694
Alvarez G, Montero L, Llorens L, Castro-Puyana M, Cifuentes A (2018) Recent advances in the
application of capillary electromigration methods for food analysis and foodomics. Electrophoresis 39(1):136–159
Asami T, Imura H (2006) Absolute determination method for trace quantities of enantiomer of
glufosinate by gamma-cyclodextrin modified capillary zone electrophoresis combined with
solid-phase extraction and on-capillary concentration. Anal Sci 22(12):1489–1493
Baba Y (1996) Capillary affinity gel electrophoresis. New tool for detection of the mutation on
DNA. Mol Biotechnol 6(2):143–153
Billiot E, Thibodeaux S, Shamsi S, Warner IM (1999) Evaluating chiral separation interactions by
use of diastereomeric polymeric dipeptide surfactants. Anal Chem 71(18):4044–4049
Bordajandi LR, Korytar P, de Boer J, Gonzalez MJ (2005) Enantiomeric separation of chiral
polychlorinated biphenyls on beta-cyclodextrin capillary columns by means of heart-cut
multidimensional gas chromatography and comprehensive two-dimensional gas chromatography. Application to food samples. J Sep Sci 28(2):163–171
Camilleri P (1997) Chiral surfactants in micellar electrokinetic capillary chromatography. Electrophoresis 18(12–13):2322–2330
Chankvetadze B (2018) Contemporary theory of enantioseparations in capillary electrophoresis. J
Chromatogr A. https://doi.org/10.1016/j.chroma.2018.07.084
Cherkaoui S, Rudaz S, Varesio E, Veuthey JL (2001) On-line capillary electrophoresis-electrospray
mass spectrometry for the stereoselective analysis of drugs and metabolites. Electrophoresis 22
(15):3308–3315
Cohen SA, Schure MR (2008) Multidimensional liquid chromatography : theory and applications in
industrial chemistry and the life sciences. Hoboken, NJ, Wiley-Interscience
Cui X, Liang C, Gong F, Wang R, Ni C, Wu Y, Chen G, Zhang Y (2018) Simultaneous chiral
analysis of amphetamine-type stimulants and ephedrine by capillary electrophoresis coupled to
time-of-flight mass spectrometry. Chirality 30(9):1079–1087
Di Venere M, Viglio S, Sassera D, Fumagalli M, Bardoni A, Salvini R, Cagnone M, Iadarola P
(2017) Do the complementarities of electrokinetic and chromatographic procedures represent
the “Swiss knife” in proteomic investigation? An overview of the literature in the past decade.
Electrophoresis 38(12):1538–1550
Dobashi A, Hamada M, Yamaguchi J (2001) Molecular recognition by chiral cationic micellar and
micelle-like aggregates in electrokinetic capillary chromatography. Electrophoresis 22(1):88–96
Dovichi NJ, Zhang J (2001) DNA sequencing by capillary array electrophoresis. Methods Mol Biol
167:225–239
Duan J, He M, Hu B (2012) Chiral speciation and determination of selenomethionine enantiomers
in selenized yeast by ligand-exchange micellar electrokinetic capillary chromatography after
solid phase extraction. J Chromatogr A 1268:173–179
El Deeb S, Watzig H, Abd El-Hady D, Sanger-van de Griend C, Scriba GK (2016) Recent advances
in capillary electrophoretic migration techniques for pharmaceutical analysis (2013-2015).
Electrophoresis 37(12):1591–1608
El-Hachemi Z, Mancini G, Ribo JM, Sorrenti A (2008) Role of the hydrophobic effect in the
transfer of chirality from molecules to complex systems: from chiral surfactants to porphyrin/
surfactant aggregates. J Am Chem Soc 130(45):15176–15184
El Rassi Z (2000) Chiral glycosidic surfactants for enantiomeric separation in capillary electrophoresis. J Chromatogr A 875(1–2):207–233
References
69
Adam V, Vaculovicova M (2017) Capillary electrophoresis and nanomaterials - Part I: Capillary
electrophoresis of nanomaterials. Electrophoresis 38(19):2389–2404
Ali I, Suhail M, Al-Othman ZA, Alwarthan A, Aboul-Enein HY (2016) Enantiomeric resolution of
multiple chiral centres racemates by capillary electrophoresis. Biomed Chromatogr 30
(5):683–694
Alvarez G, Montero L, Llorens L, Castro-Puyana M, Cifuentes A (2018) Recent advances in the
application of capillary electromigration methods for food analysis and foodomics. Electrophoresis 39(1):136–159
Asami T, Imura H (2006) Absolute determination method for trace quantities of enantiomer of
glufosinate by gamma-cyclodextrin modified capillary zone electrophoresis combined with
solid-phase extraction and on-capillary concentration. Anal Sci 22(12):1489–1493
Baba Y (1996) Capillary affinity gel electrophoresis. New tool for detection of the mutation on
DNA. Mol Biotechnol 6(2):143–153
Billiot E, Thibodeaux S, Shamsi S, Warner IM (1999) Evaluating chiral separation interactions by
use of diastereomeric polymeric dipeptide surfactants. Anal Chem 71(18):4044–4049
Bordajandi LR, Korytar P, de Boer J, Gonzalez MJ (2005) Enantiomeric separation of chiral
polychlorinated biphenyls on beta-cyclodextrin capillary columns by means of heart-cut
multidimensional gas chromatography and comprehensive two-dimensional gas chromatography. Application to food samples. J Sep Sci 28(2):163–171
Camilleri P (1997) Chiral surfactants in micellar electrokinetic capillary chromatography. Electrophoresis 18(12–13):2322–2330
Chankvetadze B (2018) Contemporary theory of enantioseparations in capillary electrophoresis. J
Chromatogr A. https://doi.org/10.1016/j.chroma.2018.07.084
Cherkaoui S, Rudaz S, Varesio E, Veuthey JL (2001) On-line capillary electrophoresis-electrospray
mass spectrometry for the stereoselective analysis of drugs and metabolites. Electrophoresis 22
(15):3308–3315
Cohen SA, Schure MR (2008) Multidimensional liquid chromatography : theory and applications in
industrial chemistry and the life sciences. Hoboken, NJ, Wiley-Interscience
Cui X, Liang C, Gong F, Wang R, Ni C, Wu Y, Chen G, Zhang Y (2018) Simultaneous chiral
analysis of amphetamine-type stimulants and ephedrine by capillary electrophoresis coupled to
time-of-flight mass spectrometry. Chirality 30(9):1079–1087
Di Venere M, Viglio S, Sassera D, Fumagalli M, Bardoni A, Salvini R, Cagnone M, Iadarola P
(2017) Do the complementarities of electrokinetic and chromatographic procedures represent
the “Swiss knife” in proteomic investigation? An overview of the literature in the past decade.
Electrophoresis 38(12):1538–1550
Dobashi A, Hamada M, Yamaguchi J (2001) Molecular recognition by chiral cationic micellar and
micelle-like aggregates in electrokinetic capillary chromatography. Electrophoresis 22(1):88–96
Dovichi NJ, Zhang J (2001) DNA sequencing by capillary array electrophoresis. Methods Mol Biol
167:225–239
Duan J, He M, Hu B (2012) Chiral speciation and determination of selenomethionine enantiomers
in selenized yeast by ligand-exchange micellar electrokinetic capillary chromatography after
solid phase extraction. J Chromatogr A 1268:173–179
El Deeb S, Watzig H, Abd El-Hady D, Sanger-van de Griend C, Scriba GK (2016) Recent advances
in capillary electrophoretic migration techniques for pharmaceutical analysis (2013-2015).
Electrophoresis 37(12):1591–1608
El-Hachemi Z, Mancini G, Ribo JM, Sorrenti A (2008) Role of the hydrophobic effect in the
transfer of chirality from molecules to complex systems: from chiral surfactants to porphyrin/
surfactant aggregates. J Am Chem Soc 130(45):15176–15184
El Rassi Z (2000) Chiral glycosidic surfactants for enantiomeric separation in capillary electrophoresis. J Chromatogr A 875(1–2):207–233
References
69
