1 |
Vibrational Spectra, Theoretical Calculations, and Two-Dimensional Potential Energy Surface for the Ring-Puckering Vibrations of 2,4,7-Trioxa[3.3.0]octane Chun HJ, Meinander N, Villarreal JR, Laane J Journal of Physical Chemistry A, 119(2), 410, 2015 |
2 |
Infrared and Raman Spectra, Theoretical Calculations, Conformations, and Two-Dimensional Potential Energy Surface of 2-Cyclopenten-1-one Ethylene Ketal Sheu HL, Meinander N, Laane J Journal of Physical Chemistry A, 119(9), 1478, 2015 |
3 |
A two-dimensional potential energy surface and associated quantum states for the ring-puckering vibrations of two equivalent rings: A study of bicyclo[3.3.0]oct-1,5-ene Autrey D, Meinander N, Laane J Journal of Physical Chemistry A, 108(3), 409, 2004 |
4 |
Spectroscopic determination of the two-dimensional vibrational potential energy surfaces for the ring-puckering and ring-flapping modes of indan in its S-0 and S-1(pi,pi(*)) electronic states Arp Z, Meinander N, Choo J, Laane J Journal of Chemical Physics, 116(15), 6648, 2002 |
5 |
Spectroscopic determination of the vibrational potential energy surface and conformation of 1,3-benzodioxole in its S-1(pi,pi*) excited state. The effect of the electronic excitation on the anomeric effect Laane J, Bondoc E, Sakurai S, Morris K, Meinander N, Choo J Journal of the American Chemical Society, 122(11), 2628, 2000 |
6 |
Far-infrared, Raman, and dispersed fluorescence spectra, vibrational potential energy surface, and the anomeric effect of 1,3-benzodioxole Sakurai S, Meinander N, Morris K, Laane J Journal of the American Chemical Society, 121(21), 5056, 1999 |
7 |
Two-dimensional vibrational potential-energy surface for phthalan: The effect of large coupling on vibrational quantum states Sakurai S, Meinander N, Laane J Journal of Chemical Physics, 108(9), 3537, 1998 |
8 |
Far-infrared spectra and two-dimensional potential energy surfaces for the out-of-plane ring vibrations of tetrahydrofuran-3-one in its S-0 and S-1(n,pi*) electronic states Lee S, Meinander N, Sagear P, Nath DN, Laane J Journal of Chemical Physics, 108(21), 8884, 1998 |
9 |
Xylitol Production by Immobilized Recombinant Saccharomyces-Cerevisiae in a Continuous Packed-Bed Bioreactor Roca E, Meinander N, Hahnhagerdal B Biotechnology and Bioengineering, 51(3), 317, 1996 |
10 |
The Influence of Cosubstrate and Aeration on Xylitol Formation by Recombinant Saccharomyces-Cerevisiae Expressing the Xyl1 Gene Hallborn J, Gorwa MF, Meinander N, Penttila M, Keranen S, Hahnhagerdal B Applied Microbiology and Biotechnology, 42(2-3), 326, 1994 |