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Freddy Yin Chiang Boey

Researcher at Nanyang Technological University

Publications -  334
Citations -  29821

Freddy Yin Chiang Boey is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Graphene & Nanoparticle. The author has an hindex of 74, co-authored 333 publications receiving 27440 citations. Previous affiliations of Freddy Yin Chiang Boey include National University of Singapore & Institute of High Performance Computing Singapore.

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Graphene-based composites

TL;DR: A critical review of the synthesis methods for graphene and its derivatives as well as their properties and the advantages of graphene-based composites in applications such as the Li-ion batteries, supercapacitors, fuel cells, photovoltaic devices, photocatalysis, and Raman enhancement are described.
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Graphene-Based Materials: Synthesis, Characterization, Properties, and Applications

TL;DR: The synthesis, characterization, properties, and applications of graphene-based materials are discussed and the promising properties together with the ease of processibility and functionalization make graphene- based materials ideal candidates for incorporation into a variety of functional materials.
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Single‐Layer Semiconducting Nanosheets: High‐Yield Preparation and Device Fabrication

TL;DR: The common feature of these materials is that the bulk material forms are layeredstructures with strong covalent bonding in each layer and weak van der Waals forces between the layers.
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Constructing Hierarchical Spheres from Large Ultrathin Anatase TiO2 Nanosheets with Nearly 100% Exposed (001) Facets for Fast Reversible Lithium Storage

TL;DR: This work shows that the high surface density of exposed TiO(2) (001) facets leads to fast lithium insertion/deinsertion processes in batteries that mimic features seen in high-power electrochemical capacitors.
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In Situ Synthesis of Metal Nanoparticles on Single-Layer Graphene Oxide and Reduced Graphene Oxide Surfaces

TL;DR: In this paper, a straightforward one-step chemical method to in situ synthesis of Ag nanoparticles (Ag NPs) on single-layer graphene oxide and reduced graphene oxide (r-GO) surfaces is proposed.