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Hamid Reza Zafarani

Researcher at Delft University of Technology

Publications -  15
Citations -  350

Hamid Reza Zafarani is an academic researcher from Delft University of Technology. The author has contributed to research in topics: Adsorption & Electrode. The author has an hindex of 9, co-authored 15 publications receiving 274 citations. Previous affiliations of Hamid Reza Zafarani include Semnan University & University of Bath.

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Removal of Cu(II) ions from aqueous solutions by low-cost natural hydroxyapatite/chitosan composite: Equilibrium, kinetic and thermodynamic studies

TL;DR: In this article, a simple method for providing natural hydroxyapatite/chitosan composite is introduced and adsorption suitability of this composite for treating the solutions containing Cu(II) ions has been studied.
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Electrofluorochromic systems: Molecules and materials exhibiting redox-switchable fluorescence

TL;DR: In this paper, a review of electrofluorochromic molecules and polymers is presented, emphasizing their structures and functional principles and point to specific applications, such as sensing and display devices.
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Covalent immobilization of glucose oxidase on amino MOFs via post-synthetic modification

TL;DR: The post-synthetic modification of two amino-MOFs with glucose oxidase with multi-step approach preserved the MOFs' structure and allowed the production of enzyme-functionalized MOFs (MOFs@GOx), which retained the enzymatic activity and showed selective properties for glucose.
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Electrochemical redox cycling in a new nanogap sensor: Design and simulation

TL;DR: In this article, a new geometry for nanogap electrochemical sensing devices is proposed, which consists of two closely spaced side-by-side electrodes which work under redox cycling conditions.
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Achieving a desirable combination of strength and workability in Al/SiC composites by AHP selection method

TL;DR: In this article, the analytical hierarchy process (AHP) method was applied to select an Al/SiC composite with best combination of strength and workability for a specific purpose, through powder metallurgy routes having different manufacturing parameters such as size and fraction of reinforcement, milling time and relative density.