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Within each orientation relationship, different interfacial chemistries are found to produce identical dislocation spacings and line directions, but differing interfacial energies.
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Substitution of the polar amide bond with more hydrophobic chemistries was found to enhance retention while remaining hydrophobically-selective for aromatic residues.
Oxygen-based ash chemistries were found to damage the physical and electrical properties of the material (lower barrier integrity, lower dielectric breakdown field, higher leakage) as well as the reliability of interconnect test structures (lower lifetimes) whereas nitrogen-based chemistries enhance these properties.
Partial yttria stabilized zirconia coatings show no differences in microstructure and phase formation if deposited either by two-source jumping-beam or by one-source one-beam evaporation, while for ceria stabilized zirconia coatings large differences mainly in chemistry are found; depending on the jumping frequency multilayers are formed.
But last month, after working out its quantum energy states, W.E. Moerner, a chemist at Stanford University, reported that a particular molecule could be coaxed into releasing a single photon at a time, in a much more reliable way than a weak laser.Yet another borderland between physics and chemistry is found in the realm of carbon nanotubes.
No clear variations in major element chemistry were found between the source and the delta.
For the JSR oxidation of ethylbenzene, the low temperature chemistry is found to play a significant role at 10 atm.
The main reactions controlling major ion chemistry were found to be calcite equilibrium and concurrent Na Ca exchange reactions and de-protonation of functional surface groups.
The rarely prepared 1,5-disubstituted triazole isomers, which would be omitted by the "click chemistry", were found to have superior cytotoxicities to that of the 1,4-disubstituted isomers.
A mussel-inspired catecholic chemistry was found to be able to confer nature-derived mesoporous chitin aerogels with high and tunable surface activities.
The substrate surface chemistry was found to influence several aspects of protein crystallization: the number of crystals formed, the sizes of crystals and the crystal morphology.
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