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Sayed Ali Khan

Researcher at Shenzhen University

Publications -  46
Citations -  1303

Sayed Ali Khan is an academic researcher from Shenzhen University. The author has contributed to research in topics: Phosphor & Luminescence. The author has an hindex of 15, co-authored 34 publications receiving 937 citations. Previous affiliations of Sayed Ali Khan include University of Science and Technology of China.

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Fe-doped mayenite electride composite with 2D reduced Graphene Oxide: As a non-platinum based, highly durable electrocatalyst for Oxygen Reduction Reaction.

TL;DR: Coexistence of Fe-doped C12A7:e− related active sites with reduced graphene oxide (rGO) with pyridinic-nitrogen, and their strong coupling consequence along their porous morphology textures assist rapid diffusion of molecules to catalyst active sites quickly makes it highly desirable, precious-metal free electrocatalyst in ORR.
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Simple Fabrication of Concrete with Remarkable Self-Cleaning Ability, Robust Superhydrophobicity, Tailored Porosity, and Highly Thermal and Sound Insulation

TL;DR: In this contribution, self-cleaning concrete was one-step achieved through the combination of liquid template pore-forming and in-situ bulk hydrophobic modification, which qualified the sample remarkable stain repellency and long-term stability.
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High flux thin film nanocomposite membrane incorporated with functionalized TiO2@reduced graphene oxide nanohybrids for organic solvent nanofiltration

TL;DR: In this paper, a graphene oxide-based nanohybrids decorated with TiO2 nanoparticles (TiO2@rGO) were synthesized and incorporated into the thin-film nanocomposite (TFN) membrane for efficient organic solvent nanofiltration (OSN) with antifouling properties.
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Enhanced photocatalytic H2 production under visible light on composite photocatalyst (CdS/NiSe nanorods) synthesized in aqueous solution.

TL;DR: A composite photocatalyst consisting of CdS nanorods (NRs) and noble-metal-free cocatalyst NiSe, which efficiently enhances the hydrogen production activity of C dS NRs under visible light.