Ha Vinh Lam Nguyen
Fourier Transform Microwave Spectroscopy


2019

[42] L. Ferres, W. Stahl, H.V.L. Nguyen, J. Chem. Phys. 151, 104310 (2019).

Low torsional barrier challenges in the microwave spectrum of 2,4-dimethylanisole

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[41] M. Andresen, I. Kleiner, M. Schwell, W. Stahl, H.V.L. Nguyen, ChemPhysChem 20, 2063 (2019).

Sensing the molecular structures of hexan-2-one by internal rotation and microwave spectroscopy

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[40] L. Ferres, J. Cheung, W. Stahl, H.V.L. Nguyen, J. Phys. Chem. A 123, 3497 (2019).

Conformational effect on the large amplitude motions of 3,4-dimethylanisole explored by microwave spectroscopy

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2018

[39] K. Eibl, W. Stahl, I. Kleiner, H.V.L. Nguyen, J. Chem. Phys. 149, 144306 (2018).

Conformational effect on the almost free internal rotation in 4-hexyn-3-ol studied by microwave spectroscopy and quantum chemistry

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[38] R. Hakiri, N. Derbel, H.V.L. Nguyen, H. Mouhib, Phys. Chem. Chem. Phys. 20, 25577-25582 (2018).

Communication through the furan ring: Conformational effect on the internal rotation of 5-methyl furfural studied by microwave spectroscopy

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[37] M. Andresen, I. Kleiner, M. Schwell, W. Stahl, H.V.L. Nguyen, J. Phys. Chem. A 122, 7071-7078 (2018).

Acetyl methyl torsion in the microwave spectrum of pentan-2-one

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[36] L. Ferres, K.-N. Truong, W. Stahl, H.V.L. Nguyen, ChemPhysChem 19, 1781-1788 (2018).

Interplay between microwave spectroscopy and X-ray diffraction: The molecular structure and large amplitude motions of 2,3-dimethylanisole

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[35] L. Ferres, W. Stahl, H.V.L. Nguyen, J. Chem. Phys. 148, 124304 (2018).

Conformational effects on the torsional barriers in m-methylanisole studied by microwave spectroscopy

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[34] V. Van, W. Stahl, M. Schwell, H.V.L. Nguyen, J. Mol. Struct. 1156, 348-352 (2018).

Gas-phase conformations of 2-methyl-1,3-dithiolane investigated by microwave spectroscopy

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[33] V. Van, J. Bruckhuisen, W. Stahl, V. Ilyushin, H.V.L. Nguyen, J. Mol. Spectrosc. 343, 121-125 (2018).

The torsional barriers of two equivalent methyl internal rotations in 2,5-dimethylfuran investigated by microwave spectroscopy

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[32] L. Ferres, W. Stahl, I. Kleiner, H.V.L. Nguyen, J. Mol. Spectrosc. 343, 44-49 (2018).

The effect of internal rotation in p-methyl anisole studied by microwave spectroscopy

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2017

[31] L. Ferres, H. Mouhib, W. Stahl, M. Schwell, H.V.L. Nguyen, J. Mol. Spectrosc. 337, 59-64 (2017).

Molecular structure and ring tunneling of phenyl formate as observed by microwave spectroscopy and quantum chemistry

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[30] A.O. Hernandez-Castillo, C. Abeysekera, B.M. Hays, I. Kleiner, H.V.L. Nguyen, T.S. Zwier, J. Mol. Spectrosc. 337, 51-58 (2017).

Conformational preferences and internal rotation of methyl butyrate by microwave spectroscopy

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[29] L. Ferres, H. Mouhib, W. Stahl, H.V.L. Nguyen, ChemPhysChem 18, 1855-1859 (2017).

Methyl internal rotation in the microwave spectrum of o-methyl anisole

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2016

[28] K. Eibl, R. Kannengießer, W. Stahl, H.V.L. Nguyen, I. Kleiner, Mol. Phys. 114, 3483-3489 (2016).

Low barrier methyl rotation in 3-pentyn-1-ol as observed by microwave spectroscopy

 

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[27] L. Sutikdja, W. Stahl, V. Sironneau, H.V.L. Nguyen, I. Kleiner, Chem. Phys. Lett. 663, 145 (2016).

Structure and internal dynamics of n-propyl acetate studied by microwave spectroscopy and quantum chemistry

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[26] V. Van, W. Stahl, H.V.L. Nguyen, ChemPhysChem 17, 3223-3228 (2016).

The structure and torsional dynamics of two methyl groups in 2-acetyl-5-methylfuran as observed by microwave spectroscopy

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[25] R. Kannengießer, W. Stahl, H.V.L. Nguyen, J. Phys. Chem. A 120, 5979-5984 (2016).

Two conformers of N,N-diethylpropionamide as observed by microwave spectroscopy and quantum chemistry

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[24] R. Kannengießer, W. Stahl, H.V.L. Nguyen, I. Kleiner, J. Phys. Chem. A 120, 3992-3997 (2016).

14N nuclear quadrupole coupling and methyl internal rotation in N-tert-butylacetamide as observed by microwave spectroscopy

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[23] A. Jabri, V. Van, H.V.L. Nguyen, W. Stahl, I. Kleiner, ChemPhysChem 17, 2660-2665 (2016).

Probing the methyl torsional barriers of the E and Z Isomers of butadienyl acetate by microwave spectroscopy

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[22] V. Van, W. Stahl, H.V.L. Nguyen, J. Mol. Struct. 1123, 24-29 (2016).

The heavy atom microwave structure of 2-methyltetrahydrofuran

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[21] L. Ferres, W. Stahl, H.V.L. Nguyen, Mol. Phys. 114, 2788 - 2793 (2016).

The molecular structure of phenetole studied by microwave spectroscopy and quantum chemical calculations

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[20] A. Jabri, V. Van, H.V.L. Nguyen, H. Mouhib, F. Kwabia-Tchana, L. Manceron, W. Stahl, I. Kleiner, A&A 589, A127 (2016).

Laboratory microwave, millimeter wave and far-infrared spectra of dimethyl sulfide

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2015

[19] V. Van, W. Stahl, H.V.L. Nguyen, Phys. Chem. Chem. Phys. 17, 32111 (2015).

Two equivalent methyl internal rotations in 2,5-dimethylthiophene investigated by microwave spectroscopy

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[18] R. Kannengießer, W. Stahl, H.V.L. Nguyen, W.C. Bailey, J. Mol. Spectrosc. 317, 50-53 (2015).

14N quadrupole coupling in the microwave spectra of N-vinylformamide

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[17] R. Kannengießer, M.J. Lach, W. Stahl, H.V.L. Nguyen, ChemPhysChem 16, 1906-1911 (2015).

Acetyl methyl torsion in N-ethylacetamide: A challenge for microwave spectroscopy and quantum chemistry

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[16] Y. Zhao, H.V.L. Nguyen, W. Stahl, J.T. Hougen, J. Mol. Spectrosc. 318, 91 (2015).

Unusual internal rotation coupling in the microwave spectrum of pinacolone

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[15] V. Van, C. Dindic, W. Stahl, H.V.L. Nguyen, ChemPhysChem 16, 291 (2015).

Conformational transformations of sulfur-containing rings: 2-Methyltetrahydrothiophene gas-phase structures

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2014

[14] R. Kannengießer, S. Klahm,  H.V.L. Nguyen, A. Lüchow, W. Stahl, J. Chem. Phys. 141, 204308 (2014).

The effects of methyl internal rotation and 14N quadrupole coupling in the microwave spectra of two conformers of N,N-diethylacetamide

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[13] H. V. L. Nguyen, A. Jabri, V. Van, W. Stahl, J. Phys. Chem. A 118, 12130 (2014).

Methyl internal rotation in the microwave spectrum of vinyl acetate

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[12] H.V.L. Nguyen, V. Van, W. Stahl, I. Kleiner, J. Chem. Phys. 140, 214303 (2014).

The effects of two internal rotations in the microwave spectrum of ethyl methyl ketone

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[11] H.V.L. Nguyen, I. Kleiner, S.T. Shipman, Y. Mae, K. Hirose, S. Hatanaka, K. Kobayashi, J. Mol. Spectrosc. 299, 17-21 (2014).

Extension of the measurement, assignment, and fit of the rotational spectrum of the two-top molecule methyl acetate

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2013

[10] B. Tercero, I. Kleiner, J. Cercicharo, H.V.L. Nguyen, A. López, G.M. Munoz Caro, Astrophys. J. 770, L13 (2013).

Discovery of methyl acetate and gauche ethyl formate in Orion

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[9] H.V.L. Nguyen, H. Mouhib, S. Klahm, W. Stahl, I. Kleiner, Phys. Chem. Chem. Phys. 15, 10012 (2013).

A touch of lavender: gas-phase structure and dynamics of the monoterpene linalool validated by microwave spectroscopy

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2012

[8] Y. Zhao, W. Stahl, H.V.L. Nguyen, Chem. Phys. Lett. 545, 9-13 (2012).

Ketone physics – structure, conformations, and dynamics of methyl isobutyl ketone explored by microwave spectroscopy and quantum chemical calculations

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[7] H.V.L. Nguyen, R. Kannengießer, W. Stahl, Phys. Chem. Chem. Phys. 14, 11753-11758 (2012).

Microwave survey of the conformational landscape exhibited by the propeller molecule triethyl amine

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[6] H.V.L. Nguyen, W. Stahl, I. Kleiner, Mol. Phys. 110, 2035-2042 (2012).

Structure and rotational dynamics of methyl propionate studied by microwave spectroscopy

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2011

[5] H.V.L. Nguyen and W. Stahl, J. Chem. Phys. 135, 024310 (2011).

The effects of nitrogen inversion tunneling, methyl internal rotation, and 14N quadrupole coupling observed in the rotational spectrum of diethyl amine

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[4] H.V.L. Nguyen and W. Stahl, ChemPhysChem 12, 1900-1905 (2011).

The rotational spectrum of diethyl ketone

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2010

[3] H.V.L. Nguyen, H. Mouhib, W. Stahl, I. Kleiner, Mol. Phys. 108, 763-770 (2010).

The microwave spectrum of allyl acetate

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[2] H.V.L. Nguyen and W. Stahl, J. Mol. Spectrosc. 264, 120-124 (2010).

The microwave spectrum of isopropenyl acetate: An asymmetric molecule with two internal rotors

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2009

[1] D. Jelisavac, D.C. Cortés-Gómez, H.V.L. Nguyen, L.W. Sutikdja, W. Stahl, I. Kleiner, J. Mol. Spectrosc. 257, 111-115 (2009).

The microwave spectrum of the trans conformer of ethyl acetate

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