Bent-core mesogens are an important class of thermotropic liquid crystals as they exhibit unusual properties as well as morphologies distinctly different from rodlike mesogens. Two bent-core mesogens with differing center rings namely benzene and thiophene are considered and investigated using high-resolution oriented solid state C-13 NMR method in their liquid crystalline phases. The mesogens exhibit different phase sequences with the benzene-based mesogen showing a B-1 phase, while the one based on thiophene showing nematic and smectic C phases. The 2-dimensional separated local field (2D-SLF) NMR method was used to obtain the C-13-H-1 dipolar couplings of carbons in the center ring as well as in the side-wing phenyl rings. Couplings, cha...
Liquid-crystalline materials containing fullerenes are valuable in the development of supramolecular...
Mesophase organization of molecules built with thiophene at the center and linked via flexible space...
In this paper, we present 13C and 1H NMR investigations of 2, 3, 6, 7, 10, 11-hexahexyl-thiotripheny...
Bent-core mesogens are an important class of thermotropic liquid crystals as they exhibit unusual pr...
In this review, methods to obtain the orientational order of topologically variant molecular mesogen...
Molecules in their liquid crystalline phase undergo rotational motion about the long axis of the mol...
Molecules exhibiting a thermotropic liquid-crystalline property have acquired significant importance...
Three-ring mesogens with a core comprising thiophene linked to one phenyl ring directly and to the o...
Carbon-13 NMR spectroscopy has been used to probe the orientational ordering of a bent-core liquid c...
Structural characterizations using XRD and C-13 NMR spectroscopy of two rodlike mesogens consisting ...
Mixtures of a bent-core mesogen (ClPbis10BB) and a calamitic mesogen (6OO8), showing a nematic phase...
Materials with widely varying molecular topologies and exhibiting liquid crystalline properties have...
Bent-core liquid crystals showing a nematic phase stable at low temperatures are very attractive for...
Structural characterizations using XRD and <sup>13</sup>C NMR spectroscopy of two rodlike mesogens c...
Three-ring bent-core bis(4-subst.-phenyl) 2-methyl-iso-phthalates exhibiting nematic, SmA and SmC ph...
Liquid-crystalline materials containing fullerenes are valuable in the development of supramolecular...
Mesophase organization of molecules built with thiophene at the center and linked via flexible space...
In this paper, we present 13C and 1H NMR investigations of 2, 3, 6, 7, 10, 11-hexahexyl-thiotripheny...
Bent-core mesogens are an important class of thermotropic liquid crystals as they exhibit unusual pr...
In this review, methods to obtain the orientational order of topologically variant molecular mesogen...
Molecules in their liquid crystalline phase undergo rotational motion about the long axis of the mol...
Molecules exhibiting a thermotropic liquid-crystalline property have acquired significant importance...
Three-ring mesogens with a core comprising thiophene linked to one phenyl ring directly and to the o...
Carbon-13 NMR spectroscopy has been used to probe the orientational ordering of a bent-core liquid c...
Structural characterizations using XRD and C-13 NMR spectroscopy of two rodlike mesogens consisting ...
Mixtures of a bent-core mesogen (ClPbis10BB) and a calamitic mesogen (6OO8), showing a nematic phase...
Materials with widely varying molecular topologies and exhibiting liquid crystalline properties have...
Bent-core liquid crystals showing a nematic phase stable at low temperatures are very attractive for...
Structural characterizations using XRD and <sup>13</sup>C NMR spectroscopy of two rodlike mesogens c...
Three-ring bent-core bis(4-subst.-phenyl) 2-methyl-iso-phthalates exhibiting nematic, SmA and SmC ph...
Liquid-crystalline materials containing fullerenes are valuable in the development of supramolecular...
Mesophase organization of molecules built with thiophene at the center and linked via flexible space...
In this paper, we present 13C and 1H NMR investigations of 2, 3, 6, 7, 10, 11-hexahexyl-thiotripheny...