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461.
S. M. Malathy Sony N. Sukumar M. N. Ponnuswamy R. Jayakumar 《Crystal Research and Technology》2004,39(4):368-374
The dipeptide Boc‐Lys(OBzl)‐Ile crystallizes in monoclinic space group P21 with cell parameters a = 5.003(1), b = 19.199(3), c = 15.270(2)Å, β =93.42(1)°, V = 1464.1(3)Å3, Z = 2, Dcal = 1.117 Mg/m3 at T = 293 K. The structure was solved by direct methods and refined by full‐matrix least‐squares procedure to a final R = 0.096 and wR = 0.101 using 1379 reflections. The peptide unit is in trans conformation and the molecule takes up an extended conformation. In the lysine side chain, delocalization of electrons and pseudo peptide bond formation is observed at the interaction site of benzyloxycarbonyl group. Both N‐H…O and main chain C‐H…O hydrogen bonds stabilize the molecules in the unit cell in a parallel β‐sheet fashion. (© 2004 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim) 相似文献
462.
463.
In the present study, a number of positional and geometrical isomers have been considered to study the stability of isomers using the maximum hardness principle (MHP). All the considered isomeric molecules were optimized and the chemical hardness η and chemical potential μ were calculated at the HF/6‐31G level of theory. The MHP was not able to predict the stability of the most of the positional isomeric molecules, because of the variation in the chemical potential μ and external potential v(r), which arises due to the formation of a bond with different atoms. But, for the most of geometrical isomers, the MHP was able to predict the most stable conformer of the molecule. So, the present investigation suggests that the MHP is not applicable for the prediction of isomer stability for all the isomeric molecules. © 2000 John Wiley & Sons, Inc. Int J Quant Chem 76: 648–655, 2000 相似文献
464.
Dr. Bathini Veeraprakash Dr. Gallelli Pratap Dr. Nitin P. Lobo Prof. Krishna V. Ramanathan Dr. Tanneru Narasimhaswamy 《Chemphyschem》2023,24(12):e202300074
Structurally simple rod-like π-conjugated mesogens with thiophene directly connected to phenyl, biphenyl, and fluorenone rings with terminal chains are synthesized respectively. The occurrence of smectic A/smectic C phases is concurred by a hot-stage optical polarising microscope (HOPM), differential scanning calorimetry (DSC), and X-ray diffraction (XRD). The static 1D and 2D 13C nuclear magnetic resonance (NMR) studies in the liquid crystalline phase are carried out to find the alignment-induced chemical shifts (AIS) and 13C−1H dipolar couplings. The orientational order parameters of the mesogens determined from 13C−1H dipolar couplings disclose that the long axis is not only collinear to the C3−C4 bond of the thiophene ring but also for the local axes of phenyl and biphenyl rings. For fluorenone-based mesogen, the molecular biaxiality is found to be high owing to the increased breadth of the molecule. The study unveils that the orientation of thiophene and the phenyl rings is similar in the current mesogens in stark contrast to mesogens, where thiophene is connected to phenyl rings through linking groups. 相似文献
465.
Nandi Debabrata Jayakumar Aswathy Radoor Sabarish Srisuk Rapeeporn Siengchin Suchart 《Journal of Solid State Electrochemistry》2023,27(1):195-206
Journal of Solid State Electrochemistry - For the first time, nanorods of nickel zincate (NiZnO2) have been synthesized by the hydrothermal method and used in supercapacitor electrode fabrication.... 相似文献
466.
467.
T. Vijayakumar I. Hubert Joe C. P. Reghunadhan Nair Mojca Jazbinsek V. S. Jayakumar 《Journal of Raman spectroscopy : JRS》2009,40(1):52-63
The optimized geometry and structural features of the most prospective electro‐optic crystal 4‐(N,N‐dimethylamino)‐N‐methyl‐4′‐toluene sulfonate (DAST), and the vibrational spectral investigations have been comprehensively described with the near infrared Fourier transform (NIR FT) Raman and Fourier transform infrared (FT‐IR) spectra supported by the density functional theoretical (DFT) computations to elucidate the contribution of vibrational modes to the linear electro‐optic (LEO) effect. Mulliken population analysis and natural bond orbital (NBO) analysis have also been carried out to analyze the effects of intramolecular charge transfer (ICT), intramolecular hydrogen bonding and hyperconjugative interactions on the geometries. The influence of CT interaction between the phenyl ring and the dimethylamino group of the nonlinear optical (NLO) chromophore on the endocyclic and exocyclic angles, and the electronic effects such as hyperconjugation and back‐donation on the methyl hydrogen atoms have been examined. The concurrent intense activation of Raman and IR activities of the effective conjugation vibrational coordinate, which significantly contributes to the LEO effect resulting from the strong electron–phonon (e/ph) coupling, has been analyzed in detail. The effects of frontier orbitals, highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO), transition of electron density (ED) transfer and the influence of planarity in the stilbazolium ring on the first hyperpolarizability are also discussed. Copyright © 2008 John Wiley & Sons, Ltd. 相似文献
468.
Quantum wave packet dynamics of the Li(2S)+HCl( ) reaction in its electronic ground state is studied. The initial state-selected and energy-resolved dynamical attributes such as reaction probability, integral cross section, and thermal rate constant for the Cl-abstraction and H-abstraction pathways are reported. All partial wave contributions of J up to 120 were found to be necessary for the title reaction up to the collision energy of ∼1.0 eV. The dynamical results reveal that the Cl-abstraction is more favored over the H-abstraction for the different rovibrational (v, j) excitations. Due to the existence of an early barrier in the potential energy surface, the cross sections increase with increasing collision energy. The rate constants also monotonously increase with temperature for both channels. Resonances are identified and characterized in terms of eigenfunctions and lifetimes. Nearly 120 well-resolved eigenstates are reported for the LiHCl complex, and they are categorized as van der Waals (vdW), barrier and product states according to the nodal progressions along (R, r, γ). The vdW resonances reveal a local-mode behavior of quasibound type at low energies and extended progressions at high energies. Further, the single-quantized periodic orbit type is also observed in the barrier region, which decays very fast. Finally, the lifetime analysis reveals that the vdW resonances can survive as long as ∼2.2 ps, which is much longer than the lifetime of the resonances in the barrier region. 相似文献