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However, low concentration sensitivity remains a roadblock for studying aqueous samples at high magnetic fields.
The instruments allow for a fast evaluation of large samples at high lateral resolution.
Annealing fast cooled samples at high temperature induced some ordered, lamellar stacks in addition.
The fractured surfaces of rolled samples at high deformation ratio was visualized by using SEM.
Furthermore, the Au/WO3/Au photoanode generated the highest photocurrent among the samples at high bias potential.
The difference between sorption isotherms of the two samples, at high humidity, is explained by geometrical consideration.
With these in mind, we are interested in imaging aqueous samples at high resolution using the near-field cathodoluminescence of thin-film phosphors.
The concentration of these sites increases after treatment of the samples at high temperatures in inert gas.
An electrical biosensor combining CRISPR Cas9 and a graphene field-effect transistor detects target genes in purified genomic samples at high sensitivity, within 15 minutes, and without the need for amplification.
Recent developments in the design, construction, and performance of probes for solid-state NMR experiments on stationary lossy biological samples at high magnetic fields are reviewed.
The design, construction, and performance of a cross-coil double-resonance probe for solid-state NMR experiments on lossy biological samples at high magnetic fields are described.
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