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While some multi-layered particles are designed to be wholly inorganic-based, a substantial proportion of these functionalized particles are designed using polymers.
These organic particles are designed to be non-toxic and highly water-soluble.
In order to inhibit the inhomogeneous and uncontrollable exothermic nitridation of Si in the powder compact, Si Y2O3 Al2O3 nanocomposite particles are designed as an aid for post-reaction sintering.
In this study, magnesium/diamond composites with thermally enhanced interfaces and monomodal and bimodal distributions of particles are designed, manufactured and characterized to reach thermal conductivity values of up to 716 W/m K.
These scalable particles are designed to exhibit physiochemical characteristics suitable for in vivo imaging as demonstrated with NIR visualization of lymph nodes.
Trial registrations NCT00092521 and NCT00092534 The currently available human papillomavirus (HPV) vaccines that are based on recombinant virus-like particles are designed to prevent HPV associated disease.
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Shape-controlled particles were designed to have two non-centrosymmetric oriented functionalities.
Polymer-framed, stimuli-response sub-micron particles were designed and prepared with magnetic iron oxides as intelligent multifunctional nanocarriers.
The particles were designed to be used for controlled magnetic hyperthermia applications.
Novel starch-based emulsion microgel particles were designed using a facile top-down shear-induced approach.
Soft magnetic core shell particles were designed by coating FeSi and permalloy powders with ferrite nanoparticles.
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