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Zhong Chen

Researcher at Nanyang Technological University

Publications -  1114
Citations -  37928

Zhong Chen is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 80, co-authored 1000 publications receiving 28171 citations. Previous affiliations of Zhong Chen include Institute of High Performance Computing Singapore & National Institute of Education.

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Impacts of Silver Nanoparticles on Plants: A Focus on the Phytotoxicity and Underlying Mechanism

TL;DR: The present review summarizes uptake, translocation, and accumulation of AgNPs in plants, and exemplifies the phytotoxicity of Ag NPs on plants at morphological, physiological, cellular, and molecular levels.
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Bioinspired surfaces with superamphiphobic properties : concepts, synthesis, and applications

TL;DR: In this paper, a systematic summary has been generated to cover the characterization of surface wettability, the construction techniques, and selected functional applications of superamphiphobicity.
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Rational design of materials interface at nanoscale towards intelligent oil–water separation

TL;DR: It is expected that the biomimetic porous materials with nanoscale interface engineering will overcome the current challenges of oil-water emulsion separation, realizing their practical applications in the near future with continuous efforts in this field.
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Undersampled MRI reconstruction with patch-based directional wavelets

TL;DR: Simulation results on phantom and in vivo data indicate that the proposed patch-based directional wavelets method outperforms conventional compressed sensing MRI methods in preserving the edges and suppressing the noise.
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Development of stable superhydrophobic coatings on aluminum surface for corrosion-resistant, self-cleaning, and anti-icing applications

TL;DR: In this paper, a superhydrophobic coating (SHPC) on the Al surface was fabricated via a simple and cost effective method using anodization in sulfuric acid electrolyte followed by surface modification with inexpensive myristic acid.