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Jie Wang

Researcher at University of Nottingham

Publications -  9
Citations -  192

Jie Wang is an academic researcher from University of Nottingham. The author has contributed to research in topics: Icephobicity & Coating. The author has an hindex of 5, co-authored 9 publications receiving 71 citations. Previous affiliations of Jie Wang include Shanghai Jiao Tong University.

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Micro/nano multiscale reinforcing strategies toward extreme high-temperature applications: Take carbon/carbon composites and their coatings as the examples

TL;DR: In this article, the most recent major and important advancements in some micro-nano multiscale strategies, including nanoparticles, nanowires, carbon nanotubes/fibers, whiskers, graphene, ceramic fibers and hybrid micro/nano structures, for C/C and/or the coatings, to achieve high-temperature oxidation/ablation-resistant C/Cs.
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Development and evaluation of poly(dimethylsiloxane) based composite coatings for icephobic applications

TL;DR: In this article, the authors used poly(dimethylsiloxane) (PDMS) with modification by fluorosilane and incorporation of silica nanoparticles have been fabricated.
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Investigation on time-dependent wetting behavior of Ni-Cu-P ternary coating

TL;DR: In this paper, Ni-Cu-P ternary coatings with hierarchical structure were prepared on 304 stainless steel by electrodeposition method, and the surface morphologies, phase compositions, and wetting behavior were studied systemically.
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Hydrophobic/icephobic coatings based on thermal sprayed metallic layers with subsequent surface functionalization

TL;DR: In this article, a combination of thermal sprayed metallic MCrAlY (M = Ni, Co) coatings with a subsequent deposition process using 1H,1H, 2H,2H-perfluorooctyltriethoxysilane (POTS) was used for aircraft deicing.
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In-situ icing and water condensation study on different topographical surfaces

TL;DR: In this article, in-situ water condensation and icing observation were conducted to understand the water micro-condensation and ice retracting patterns in controlled humidity, pressure and temperature conditions.