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The substituent effect on the solid state self-assemblies of three pyrrole-2-carboxylate compounds, 2 4, with N H⋯O hydrogen bonds have been studied by X-ray crystallography.
An integrated high-resolution (individual pixel size 80 μm×80 μm) solid-state self-emissive active matrix programmed with 320×240 micro-light-emitting-diode arrays structure was designed and fabricated on an AlGaInP semiconductor chip using micro electro-mechanical systems, microstructure and semiconductor fabricating techniques.
In the solid state they self-assembled in a biphasic layered structure with the alkyl side chains forming a separate phase that melted in the 50 60 °C range.
Solid state diastereoselective self-assembly of five copper II) heterochiral complexes containing racemic Schiff bases L1H and L2H (where L1H = 1- 1- 2-pyridyl)ethylimino)methyl)-2-naphthol ; L2H = 2-((phenyl(2-pyridyl)methylimino)-methyl)phenol) in crystal engineering contexts are discussed.
As in the solid state, BCP can self-organize in solution to form well-ordered micellar structures.
These four complexes exhibit strong hydrogen bonding interactions in the solid state and are self-assembled into infinite 3D supramolecular structure via π⋯π stacking interactions.
This technique involves a one-pot solid state reaction of self-combustion using glycine as fuel, ammonium nitrate as driving agent and metal nitrates as reactants in a designed reaction set-up.
Liquid membrane microelectrode performance was similar to modern solid state electrodes, and in self-referencing modality differential signal acquisition was sufficient for use in a wide range of applications.
In the present work, a recently developed solid state joining technique, Friction self-piercing riveting (F-SPR), has been applied for joining high strength aluminum alloy AA7075-T6 to magnesium alloy AZ31B.
Some catalytic applications of calixarenes are also presented in conjunction with self-assembly phenomena, both in solution and in the solid state, which have led to self-assembled capsules and to new materials for molecular storage.
There are now many data to confirm that the presence of peripheral bulky substituents is beneficial, resulting in greater spatial separation of the Ir-iTMC cations in the solid state which, in turn, reduces self-quenching.
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