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The TSM effect of the epoxy materials was demonstrated and quantitatively studied by DMTA.
Photocatalytic functionality of the synthesized materials was demonstrated both in gas phase as well as in liquid phase.
In the second part of the paper, a continuous blending methodology for blending cohesive materials was demonstrated.
The applicability of RYUGA for visualizing and analyzing the dynamics of atomic motions in various materials was demonstrated.
The advantageous impact of a pentafluorosulfanyl substituent on the properties of furazan-containing energetic materials was demonstrated by the synthesis and study of the energetic properties of ten new compounds.
The nanometric size of the materials was demonstrated by dynamic light scattering (DLS) and field emission scanning electron microscopy (FESEM) that also proved an increase of the size of chitosan nanoparticles (NPs) with the magnetite content.
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Salient examples of catalytic application of niobium compounds and materials are demonstrated.
In this work, fabrication of liquid-infused NO-releasing (LINORel) materials is described, and the synergistic effect of incorporating the NO release with the ultra-low fouling capabilities of liquid-infused materials is demonstrated.
The smectic structures of these LC materials were demonstrated from X-ray diffraction results of the magneto-oriented samples.
The potential of nanoclays to serve as matrix sensitive structure-directing agents in tailor-made materials is demonstrated.
In the present study a cooperative effect of heteropolyacids (HPA) and Ru nanoparticles supported on two carbon materials is demonstrated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com