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Magnesium modification of the H-ZSM-5 (SiO2/Al2O3 = 38) zeolite enhanced the MTP catalytic stability and raised the selectivity of propylene.
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We demonstrated that the TiO2 nanoparticles could be assembled on magnesium (Mg) alloys via the modification of opposite charged poly styrenesulfonate) and polyethylenimine.
Dry or wet processes may be effective for the modification of magnesium alloy surfaces.
With magnesium chloride solution, the modification of silicon dioxide by wet impregnation was also performed.
Also, we studied the modification of magnesium, whole grain and a healthy diet score on fasting glucose and insulin by SNPs related to fasting glucose and insulin as part of the CHARGE consortium [ 104– 106].
The results suggested a promising method for surface modification of degradable magnesium alloy as biomedical applications.
Surface modification of biodegradable magnesium implants to improve the surface-related properties and longevity is of crucial importance.
In this work, three different chromium-free methods of surface modification of pure magnesium were studied; namely, a cerium conversion coating, a carbonated coating and an anodic film.
This article details with the synthesis and surface modification of AM50 magnesium alloy and its composite (AM50-5%ZrO2 and AM50-10% ZrO2) substrate to improve the corrosion resistance.
Solutions of solvated electrons in the presence of magnesium make possible the surface modification of halogenated polymers such as PVDF, Viton®, PCTFE, PVC or PVDC.
In this present work, a severe plastic deformation technique namely friction stir processing (FSP), which provides severe plastic deformation along with higher strain rates, than the conventional methods like ECAP, HPT, ARB etc, has been utilized for microstructural modification of the magnesium AZ31B alloy, thereby improving mechanical properties and formability of the material.
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