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Carbohydrate Mass Spectrometry Laboratory (Institute of Atomic and Molecular Sciences, Academia Sinica)
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3
2009.
355 nm Multiphoton Dissociation and Ionization of 2, 5-Dihydroxyacetophenone
.
The Journal of Physical Chemistry A. 113:14987–14994.
76_355_nm_dhap.pdf
A
2006.
Ab initio and RRKM study of photodissociation of azulene cation
.
Physical Chemistry Chemical Physics. 8:1404–1415.
56_azulene_cation.pdf
2006.
Acetylene Elimination in Photodissociation of Neutral Azulene and its Cation: An Ab Initio and RRKM Study
.
Journal of the Chinese Chemical Society. 53:161-168.
55_azulene_c2h2.pdf
2017.
Advantage of spatial map ion imaging in the study of large molecule photodissociation.
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J. Chem. Phys.. (147):013904.
2011.
Alkylation Effects on the Energy Transfer of Highly Vibrationally Excited Naphthalene
.
Chem. Asian Journal 2011. 6:3048–3053.
87_alkylation_effects.pdf
2009.
Analysis and fit of the high-resolution spectrum of the Ã1Au–~X1Ag LIF spectrum of the two-equivalent-top molecule biacetyl
.
Journal of Molecular Spectroscopy. 256:198–203.
74_biacetyl_spectrum_exp_and_theory2.pdf
Tsai, S-T, Liew CY, Hsu HC, Huang S-P, Weng W-C, Kuo Y-H, Ni* C-K.
2019.
Automatically Full Glycan Structural Determination with Logically Derived Sequence Tandem Mass Spectrometry.
.
ChemBioChem. (selected as a cover feature of the journal). 20:2351-2359.
C
2004.
Carbon–carbon bond cleavage in the photoionization of ethanol and 1-propanol clusters
.
JOURNAL OF CHEMICAL PHYSICS. 120(19)
37_ethanol_cluster.pdf
Hock-Seng, N, Shang-Ting T, Yen LC, Sivakumar RN, Shang-Cheng H, Chi-Kung N.
2023.
The collision-induced dissociation mechanism of sodiated Hex–HexNAc disaccharides
.
Physical Chemistry Chemical Physics. 25:22179-22194.
Nguan, H-S, Tsai S-T, Ni C-K.
2022.
Collision-Induced Dissociation of Cellobiose and Maltose.
.
J. Phys. Chem. A. 126:1486-1495.
Huynh, HT, Tsai S-T, Hsu P-J, Biswas A, Phan HT, Kuo J-L, Ni C-K, Chiu C-chau.
2022.
Collision-induced dissociation of Na+-tagged ketohexoses: experimental and computational studies on fructose.
.
Phys. Chem. Chem. Phys.. 24:20856-20866.
2017.
Collision-induced dissociation of sodiated glucose and identification of anomeric configuration.
.
Phys. Chem. Chem. Phys.. (19):15454.
2018.
Collision-induced dissociation of sodiated glucose, galactose, and mannose, and the identification of anomeric configurations.
.
Phys. Chem. Chem. Phys.. 20:19614.
Nguan, H-S, Tsai S-T, Chen J-L, Hsu P-J, Kuo J-L, Ni* C-K.
2021.
Collision-induced dissociation of xylose and its applications in linkage and anomericity identification.
.
Phys. Chem. Chem. Phys.. 23:3485.
Nguan, H-S, Ni C-K.
2022.
Collision-induced dissociation of α-isomaltose and α-maltose.
.
J. Phys. Chem. A. (126):8799−8808.
2016.
Comment on: MALDI ionization mechanisms investigated by comparison of isomers of dihydroxybenzoic acid
.
JOURNAL OF MASS SPECTROMETRY. 51(6):459-460.
2015.
Comment on: “Energetics and Kinetics of Thermal Ionization Models of MALDI” by Richard Knochenmuss. J. Am. Soc. Mass Spectrom. 25, 1521–1527 (2014)
.
Journal of The American Society for Mass Spectrometry. 26:2162-2166.
2015.
Comment to the Reply on: “Energetics and Kinetics of Thermal Ionization Models of MALDI” by Richard Knochenmuss. J. Am. Soc. Mass Spectrom. 25, 1521–1527 (2014).
.
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY. 26:2169-2170.
D
2019.
De novo structural determination of mannose oligosaccharides by using a logically derived sequence for tandem mass spectrometry.
.
Analytical and Bioanalytical Chemistry.. 411:3241.
Tsai, S-T, Ni C-K.
2022.
Differentiation of aldohexoses and ketohexoses through collision‐induced dissociation.
.
J. Chin. Chem. Soc.. 69(1):173-183.
Ni, C-K.
2023.
Discovery of unusual high-mannose N-glycans by new multi-stage tandem mass spectrometry.
.
71st ASMS Conference on Mass Spectrometry and Allied Topics. , Houston, USA
2017.
Does Low-Energy Collision-Induced Dissociation of Lithiated and Sodiated Carbohydrates Always Occur at Anomeric Carbon of Reducing End?
Rap. Commun. Mass Spectrom.. (31):1835–1844.
E
2005.
Electronic spectra of molecules with two C3v internal rotors: Torsional analysis of the ~A1Au–~X1Ag LIF spectrum of biacetyl
.
Journal of Molecular Spectroscopy. 233:122–132.
45_biacetyl_c3v_analyisi.pdf
Liew, CY, Chen J-L, Ni C-K.
2022.
Electrospray ionization in‐source decay of N‐glycans and the effects on N‐glycan structural identification.
.
Rapid Commun. Mass Spectrom.. 36(18):e9352.
2008.
Energy transfer of highly vibrationally excited 2-methylnaphthalene: Methylation effects
.
THE JOURNAL OF CHEMICAL PHYSICS. 129(044301)
71_methylnaphthalene.pdf
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Recent Publications
Discovery of unusual high-mannose N-glycans by new multi-stage tandem mass spectrometry.
Signal decay and recovery in matrix-assisted laser desorption/ionization and the thermal model.
Identification of the high mannose N-glycan isomers undescribed by conventional multicellular eukaryotic biosyntheticpathways.
Unusual free oligosaccharides in human bovine caprine and mouse milk
Exploring Regioselective Fucosylation Catalyzed by Bacterial Glycosyltransferases through Substrate Promiscuity and Acceptor-Mediated Glycosylation
A simple tandem mass spectrometry method for structural identification of pentose oligosaccharides.
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