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A preparation method for hollow particles composed of silica shell containing gadolinium compound (GdC) is proposed.
In this study, we proposed a unique method for hollow Fe3O4 microspheres and confirmed their electrochemical properties as anode materials for lithium-ion batteries.
A validated Eulerian Lagrangian 3-D model with a novel nozzle representation method for hollow-cone nozzles was used to perform the analysis.
Methods for producing hollow silica particles that do not use calcination process have been proposed by several researchers[16, 17, 18].
The numerical results are used to develop generalised design methods for metal hollow section columns subjected to transverse blast loads.
This perspective details current methods for synthesizing hollow spherical TiO2 nanoparticles, and their performance in dye-sensitized solar cells, photocatalysts, and batteries.
A method for producing hollow particles with silica shell containing GdC was proposed.
The present work proposes a method for preparing hollow particles composed of GdC and silica.
The aim of this work is to introduce a new post modification method for polymeric hollow fiber membranes with much-enhanced separation performance for pervaporation dehydration of isopropanol.
Among the methods for preparation of hollow nanofibers, coaxial electrospinning is one of promising techniques.
Following a brief introduction about dermal and transdermal drug delivery, this review describes different production methods for solid and hollow microneedles as well as conditions that influence skin penetration.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com