MODELING OF MOLECULAR ORBITAL AND SOLID STATE PACKING POLYMER CALCULATIONS ON THE BI-POLARON NATURE OF CONDUCTING SENSOR POLY(P-PHENYLENE)

Author(s):  
IOANNIS RABIAS ◽  
PANAGIOTIS DALLAS ◽  
DIMITRIOS NIARCHOS
1999 ◽  
Vol 54 (2) ◽  
pp. 159-161
Author(s):  
F. Ucun ◽  
A. Sağlam ◽  
F. Köksal ◽  
S. Bahçeli

Abstract By means of an EPR investigation of Mo5+ ions introduced into NaY zeolites by solid-state reactions, the location and coordination of Mo5+ in zeolites were investigated. Two different locations, free and distorted tetrahedral, were found. The molecular orbital coefficient, ß2 , and the effective charge, Q, for the MO5+ ions in a distorted tetrahedral structure were calculated and interpreted.


1997 ◽  
Vol 50 (2) ◽  
pp. 115
Author(s):  
Kiah H. Ang ◽  
Richard J. Greenwood ◽  
Maureen F. Mackay ◽  
Margaret G. Wong

Molecular mechanics and molecular orbital calculations have been used to determine the low-energy conformations of six biaryl analogues of colchicine lacking the seven-membered B-ring. A comparison of the conformations resulting from the different minimizations has been made, and these conformations were also compared with those found in the solid state for the respective biaryl analogues and the A/C-ring systems of colchicine and isocolchicine. The barriers to rotation about the A/C-linkage of the analogues were estimated from rotational plots. The MM+ calculations were not satisfactory for estimating the barriers, whilst the MMX, MAXIMIN2 and AM1 values, although agreeing on average only to within 16 kJ mol-1 , exhibited the expected trend in magnitude. This trend, however, did not correlate with the inhibition of tubulin polymerization to microtubules.


1999 ◽  
Vol 77 (11) ◽  
pp. 1813-1820 ◽  
Author(s):  
Glenn H Penner ◽  
YC Phillis Chang ◽  
H Michelle Grandin

Deuterium and nitrogen-15 NMR spectroscopy has been used to measure the 2H quadrupolar coupling and 15N chemical shift tensors in solid hydroxylammonium chloride, NH3OH+Cl-, (HAC). In addition, the NH3 and OH dynamics have been investigated by variable temperature 2H line shapes and T1 measurements. The Arrhenius activation energy for NH3 rotation is 22.5 ± 1.8 kJ/mol with a pre-exponential factor of 8 ± 3 × 1012 s-1 from line shapes and 21.3 ± 2 kJ/mol with an infinite temperature correlation time, τinf,, of 5.0 ± 0.4 × 10-14 s from the T1 analysis. The latter value corresponds to a pre-exponential factor of 6.7 ± 0.5 × 1012 s-1, if a three-site exchange is assumed. There was no evidence for OH reorientation up to 405 K, indicating a rather strong OH···Cl hydrogen bond. Previously reported inconsistencies between crystal structure and molecular orbital derived N-O bond lengths are cleared up by performing geometry optimizations with large basis sets and taking electron correlation into account. The internal rotational potential for the isolated HA cation is calculated to be 5.8 kJ/mol at the MP2/6-31G** level, with the trans geometry preferred. Calculations that employ the neutron diffraction geometry and include the Cl- anions that surround the HA+ cation yield an upper limit for the activation energy for NH3 group rotation of 62 kJ/mol. Analysis of the deuterium spectrum and T1 data yield nuclear quadrupolar coupling constants of 160 ± 5 kHz and 194 ± 5 kHz (η = 0.50 ± 0.05) for the ND3 and OD deuterons, respectively. Density functional calculations of the deuterium and nitrogen-14 nuclear quadrupolar coupling constants at the B3LYP level show that it is necessary to include the influence of the surrounding chloride anions. We have also shown that it is possible to obtain accurate proton chemical shifts from the deuterium MAS spectrum of solid HAC-d4.Key words: solid state NMR, molecular dynamics, nitrogen 15 chemical shift anisotropy.


Polymer ◽  
2002 ◽  
Vol 43 (1) ◽  
pp. 185-193 ◽  
Author(s):  
Ioannis Rabias ◽  
Cyril Langlois ◽  
Astero Provata ◽  
Brendan J. Howlin ◽  
Doros N. Theodorou

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