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Updated: Jun 17, 2026

Analysis of Complex Molecules and Their Reactions on Surfaces by Means of Cluster-Induced Desorption/Ionization Mass Spectrometry
Published on: March 1, 2020
Deuterium effect on ionization and fragmentation patterns of monosaccharides ionized by atmospheric pressure chemical
Sung-Seen Choi1, Jong-Chul Kim
1Department of Chemistry, Sejong University, 98 Gunja-dong, Gwangjin-gu, Seoul 143-747, Republic of Korea. sschoi@sejong.ac.kr
Abstract:
Glucose, galactose, and mannose in H(2)O and D(2)O were ionized by an atmospheric pressure chemical ionization (APCI) method. Isotope effects on fragmentation patterns of the monosaccharides were examined by deuterium replacement of the -OH groups to distinguish the isomers with a single mass spectrometer. The most abundant ions were the [M+H(2)O](+)() and [M(D5)+D+D(2)O](+) for using H(2)O and D(2)O as solvent and eluent, respectively. Major fragment ions were the [M-OH](+) and [M-OH-H(2)O](+) in H(2)O, while those in D(2)O were the [M(D5)+D-D(2)O](+) and [M(D5)+D-2D(2)O](+). The differences in the product ions generated in H(2)O and D(2)O were due to enhancement of the strength of hydrogen bonding by the deuterium replacement. Variations of the ion intensity ratios of the [M-OH](+)/[M-OH-H(2)O](+) and [M(D5)-OD](+)/[M(D5)-OD-D(2)O](+) with the fragmentor voltage showed different trends depending on the kind of monosaccharides. By comparing the ion intensity ratios of the [M+H(2)O](+)()/M(+)(), [M(D5)+D+D(2)O](+)/[M(D5)+D](+), [M-OH](+)/[M-OH-H(2)O](+), and [M(D5)+D-D(2)O](+)/[M(D5)+D-2D(2)O](+), it was possible to distinguish the isomers of monosaccharides.
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