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Yuan Yuan

Researcher at Rensselaer Polytechnic Institute

Publications -  11
Citations -  406

Yuan Yuan is an academic researcher from Rensselaer Polytechnic Institute. The author has contributed to research in topics: Iron oxide nanoparticles & Magnetic nanoparticles. The author has an hindex of 9, co-authored 11 publications receiving 355 citations.

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Preparation of silicon carbide nanotubes by hydrothermal method

TL;DR: In this article, a substitution reaction model was proposed to explain the formation of SiC nanotubes, where C atoms diffuse into Si and Si atoms in Si are partially substituted for C atoms by substitution chemical reaction.
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Effect of surface modification on magnetization of iron oxide nanoparticle colloids

TL;DR: The difference between the concentration results from VSM and the Tiron test confirmed the reduction of magnetic phase of magnetic core in the presence of coatings and different suspension media, and the corresponding effective thickness of the nonmagnetic layer between magnetic core and surface coating was calculated.
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Altering iron oxide nanoparticle surface properties induce cortical neuron cytotoxicity.

TL;DR: Culture results show that polydimethylamine functionalized nanoparticles induce cell death at all concentrations tested by swift and complete removal of the plasma membrane, suggesting that nanoparticle characterization and primary cell-based cytotoxicity evaluation should be completed prior to applying nanomaterials to the nervous system.
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Experimental investigation on sintered porous wicks for miniature loop heat pipe applications

TL;DR: In this paper, the authors present the fabrication and characterization of sintered porous wicks to be employed in miniature loop heat pipe (mLHP) which address the thermal management of high power density desktop computers, workstations, and servers.
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Comparison between experimental and predicted specific absorption rate of functionalized iron oxide nanoparticle suspensions

TL;DR: In this article, the authors evaluated the validity of current models for specific absorption rate (SAR) and extracted information on the effects of coating and aggregation on heat generation rate in radiofrequency heated magnetic nanoaparticle suspensions.