Rudzinska E, Dziedziola G, Berlicki L, Kafarski P (2010) Enantiodifferentiation of alphahydroxyalkanephosphonic acids in 31P NMR with application of alpha-cyclodextrin as chiral
discriminating agent. Chirality 22(1):63–68
Schalley CA (2001) Molecular recognition and supramolecular chemistry in the gas phase. Mass
Spectrom Rev 20(5):253–309
Schmidt R, Roeder M, Oeckler O, Simon A, Schurig V (2000) Separation and absolute configuration of the enantiomers of a degradation product of the new inhalation anesthetic sevoflurane.
Chirality 12(10):751–755
Scriba GKE (2016) Chiral recognition in separation science—an update. J Chromatogr A
1467:56–78
Shizuma M, Adachi H, Ono D, Sato H, Nakamura M (2009) Direct screening of chiral discrimination abilities of chiral hosts using mass spectrometry. Chirality 21(2):324–330
Stahlberg J, Henriksson H, Divne C, Isaksson R, Pettersson G, Johansson G, Jones TA (2001)
Structural basis for enantiomer binding and separation of a common beta-blocker: crystal
structure of cellobiohydrolase Cel7A with bound (S)-propranolol at 1.9 A resolution. J Mol
Biol 305(1):79–93
Turecek F (2007) Copper-biomolecule complexes in the gas phase. The ternary way. Mass
Spectrom Rev 26(4):563–582
Ulrich EM, TenBrook PL, McMillan LM, Wang Q, Lao W (2018) Enantiomer-specific measurements of current-use pesticides in aquatic systems. Environ Toxicol Chem 37(1):99–106
Wenzel TJ (2007) Discrimination of chiral compounds using NMR spectroscopy. WileyInterscience, Hoboken, NJ
Wenzel TJ (2018) Differentiation of chiral compounds using NMR spectroscopy. Wiley, Hoboken,
NJ, 1 online resource
Yao ZP, Wan TS, Kwong KP, Che CT (2000) Chiral analysis by electrospray ionization mass
spectrometry/mass spectrometry. 2. Determination of enantiomeric excess of amino acids. Anal
Chem 72(21):5394–5401
Yu X, Yao ZP (2017) Chiral recognition and determination of enantiomeric excess by mass
spectrometry: A review. Anal Chim Acta 968:1–20
96
6 Other Methods for the Elucidation of Molecular Structures and Mechanistic. . .
discriminating agent. Chirality 22(1):63–68
Schalley CA (2001) Molecular recognition and supramolecular chemistry in the gas phase. Mass
Spectrom Rev 20(5):253–309
Schmidt R, Roeder M, Oeckler O, Simon A, Schurig V (2000) Separation and absolute configuration of the enantiomers of a degradation product of the new inhalation anesthetic sevoflurane.
Chirality 12(10):751–755
Scriba GKE (2016) Chiral recognition in separation science—an update. J Chromatogr A
1467:56–78
Shizuma M, Adachi H, Ono D, Sato H, Nakamura M (2009) Direct screening of chiral discrimination abilities of chiral hosts using mass spectrometry. Chirality 21(2):324–330
Stahlberg J, Henriksson H, Divne C, Isaksson R, Pettersson G, Johansson G, Jones TA (2001)
Structural basis for enantiomer binding and separation of a common beta-blocker: crystal
structure of cellobiohydrolase Cel7A with bound (S)-propranolol at 1.9 A resolution. J Mol
Biol 305(1):79–93
Turecek F (2007) Copper-biomolecule complexes in the gas phase. The ternary way. Mass
Spectrom Rev 26(4):563–582
Ulrich EM, TenBrook PL, McMillan LM, Wang Q, Lao W (2018) Enantiomer-specific measurements of current-use pesticides in aquatic systems. Environ Toxicol Chem 37(1):99–106
Wenzel TJ (2007) Discrimination of chiral compounds using NMR spectroscopy. WileyInterscience, Hoboken, NJ
Wenzel TJ (2018) Differentiation of chiral compounds using NMR spectroscopy. Wiley, Hoboken,
NJ, 1 online resource
Yao ZP, Wan TS, Kwong KP, Che CT (2000) Chiral analysis by electrospray ionization mass
spectrometry/mass spectrometry. 2. Determination of enantiomeric excess of amino acids. Anal
Chem 72(21):5394–5401
Yu X, Yao ZP (2017) Chiral recognition and determination of enantiomeric excess by mass
spectrometry: A review. Anal Chim Acta 968:1–20
96
6 Other Methods for the Elucidation of Molecular Structures and Mechanistic. . .
