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It has been shown that a high abundance of these FA as substrates can significantly change the lipidome and eicosanome, given that they are efficiently metabolized as well [ 79].
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Smaller radius-depth ratio range and larger tangent angle (on (1 0 0) substrate) can significantly improve RL performance or even avoid high temperature service structural damage.
The results indicate that a DLC deposited on a chrome substrate can significantly reduce the flow resistance of polystyrene, by increasing the slip velocity of polymer melt in contact with the mold surface.
Recent experiments show that a thin film anode on a compliant substrate can significantly mitigate mechanical degradation and capacity fading of lithium-ion and sodium-ion batteries in service.
Such a hybrid film system has good adhesion with the substrate, can significantly enhance the surface hardness and tribological properties of the stainless steel in terms of much reduced friction coefficient and increased wear resistance.
We have measured the Langmuir probe measurement near the substrate plane, keeping in mind of the fact that the electron and ion density in the vicinity of the substrate can significantly affect the physical properties of deposited film.
The present work demonstrates that the limited Ti1−xAlxN coating adhesion on a Fe 25%Co 15%Mo grade caused by the absence of carbides in the substrates can be significantly improved from HF 4 to HF 2 in the Rockwell adhesion test by plasma-assisted nitriding during sputter etching.
To this end, new fundamental approaches to asymmetric catalysis must be sought as it is in this way that the variety of substrates can be significantly expanded into new and previously unimaginable areas.
Another process parameter known to influence film properties is the use of mid-frequency pulsed biasing (100 350 kHz) at the substrate, which can significantly increase the ion current drawn at the substrate during ion etching and deposition.
We show that birnessite, electrodeposited as thin films onto a cheap transparent semiconductor substrate (SnO2), can significantly degrade and mineralise glyphosate and AMPA.
Mixing constitutes a critical design parameter in solid-state fermentation (SSF) bioreactor and its effect on heat and water transport, and microbial growth in substrate bed can significantly influence overall productivity.
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