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1.
Zhang S Terentjev EM Donald AM 《Langmuir : the ACS journal of surfaces and colloids》2005,21(8):3539-3543
Atomic force microscopy (AFM) is employed to study the supermolecular microstructures of disclinations and inversion walls in thin films of a smectic side-chain liquid crystalline polymer. Two-dimensional nanostripes are formed in thin films when the material enters the smectic phase. A possible mechanism for their formation is also suggested. The stripes run parallel to the local director and thus decorate the overall patterns of nematic director around the disclinations and inversion walls. Three patterns involving radial, spiral, and circular supermolecular microstructures of a positive disclination with s = +1 and one hyperbolic pattern of a negative disclination with s = -1 are observed. The cores of all these microstructures exhibit circular dark centers in AFM height images. It is found that the specific configurations of a pair of (+1, -1) disclinations form during the late stage of annihilation and inversion walls always separate a pair of (+1, +1) disclinations. The analysis on the director fields around disclinations and inversion walls shows that the bend and splay elastic constants are of the same order of magnitude in the side-chain liquid crystalline polymer. 相似文献
2.
Changing the orientational order in liquid-crystal
elastomers leads to internal stresses and changes of the sample
shape. When this effect is induced by light, due to
photoisomerization of constituent molecular moieties, the
photomechanical actuation results. We investigate quantitatively
how the intensity and the polarization of light affect
photoactuation. By studying dissolved, as well as covalently
bonded azo-dyes, we determine the changes in absorption and the
response kinetics. For the first time we compare the response of
aligned monodomain, and randomly disordered polydomain nematic
elastomers, and demonstrate that both have a comparable
photoresponse, strongly dependent on the polarization of light.
Polarization-dependent photoactuation in polydomain elastomers
gives an unambiguous proof of its mechanism since it is the only
experiment that distinguishes from the associated thermal
effects. 相似文献
3.
Gabriela Ionita Petre Ionita Victor EM. Sahini Constantin Luca 《Journal of inclusion phenomena and macrocyclic chemistry》2001,39(3-4):269-271
The kinetics of oxidation of amino acids (Arg, His, Lys, Phe, Thr and Tyr), a dipeptide (Gly-His), and BSA (bovine serum albumin) by two persistent water soluble free radicals of the hydrazyl type has been studied.The rate decreases in the order Arg>Lys>Tyr>Thr>HisBSAPheGly-His with bothfree radicals. Addition to the reaction mixture of - and -cyclodextrin decreases the oxidation rate, probably due to amino acidencapsulation in the cyclodextrin cavity. -Cyclodextrin protects more efficiently against oxidation than -cyclodextrin. 相似文献
4.
5.
6.
We have used a variety of microscopic techniques to reveal the structure and motion of flux line arrangements, when the flux
lines in low T
c type II superconductors are caused to move by a transport current. Using small-angle neutron scattering by the flux line
lattice (FLL), we are able to demonstrate directly the alignment by motion of the nearest-neighbor FLL direction. This tends
to be parallel to the direction of flux line motion, as had been suspected from two-dimensional simulations. We also see the
destruction of the ordered FLL by plastic flow and the bending of flux lines. Another technique that our collaboration has
employed is the direct measurement of flux line motion, using the ultra-high-resolution spectroscopy of the neutron spin-echo
technique to observe the energy change of neutrons diffracted by moving flux lines. The muon spin rotation (μSR) technique gives the distribution of values of magnetic field within the FLL. We have recently succeeded in performing
μSR measurements while the FLL is moving. Such measurements give complementary information about the local speed and orientation
of the FLL motion. We conclude by discussing the possible application of this technique to thin film superconductors. 相似文献
7.
S. D. Antipov G. E. Gorjunov A. F. Djura Ju. M. Polukarov D. V. Sadkov P. N. Stetsenko E. N. Terentjev V. V. Shestakov 《Hyperfine Interactions》1993,78(1-4):391-396
A mathematical approach for the evaluation of hyperfine field distribution functions based on an analytical approximation of Mössbauer spectra was developed. The calculations were performed for different model spectra andfor the experimental spectra of crystalline andamorphous alloys. It was possible to obtain an adequate interpretation of complicated Mössbauer spectra of multicomponent heterophase amorpho-crystalline alloys of the Nd-Fe-B-type. 相似文献
8.
Vertically aligned monodomain nematic liquid-crystal elastomers contract when heated. If a temperature gradient is applied
across the width of such a cantilever, inhomogeneous strain distribution leads to bending motion. We modelled the kinetics
of thermally induced bending in the limit of a long thin strip and the predicted time variation of curvature agreed quantitatively
with experimental data from samples with a range of critical indices and nematic-isotropic transition temperatures. We also
deduced a value for the thermal diffusion coefficient of the elastomer. 相似文献
9.
Mono domain nematic elastomers change shape by as much as 400% on being heated from the nematic to isotropic state. The reason is that nematic order, Q, elongates the distribution of chains and thus the network that they form. Experimental evidence for this, and simple theory is presented. A novel method to change Q, and hence obtain an analogous elastic strain, is to bend the nematic's rods by photoisomerization. On absorbing a photon, photochromes such as azo rods leave the (straight) trans state and adopt the cis (bent) form. We show data and give simple theory to explain this remarkable, reversible elastic phenomenon. 相似文献
10.
M. H. Godinho D. Filip I. Costa A.-L. Carvalho J. L. Figueirinhas E. M. Terentjev 《Cellulose (London, England)》2009,16(2):199-205
Mesogenic cellulose derivative chains cross-linked into free-standing thin films were prepared by a shear-casting technique
from anisotropic precursor solutions of thermotropic (acetoxypropyl)cellulose. After shear cessation a macroscopically oriented
serpentine structure with the director in average along the shear direction is locked resulting in anisotropic optical and
mechanical properties of the material. These films were submitted to an external uniaxial mechanical field perpendicular and
parallel to the shear direction. Stretching perpendicular to the shear direction produced significant director rotations and
a reset of order of the director order parameter for a deformation in the range 2–3 as detected by X-rays and optical microscopy.
The different response found for strains imposed parallel and perpendicular to the initial average director orientation indicates
that even though our system shows a serpentine director modulation that is either attenuated or reinforced by deformations
parallel or perpendicular to the shear direction, its behaviour is similar to theoretical predictions for monodomain nematic
elastomers described in the literature. 相似文献