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Ali Abdulkhaleq Alwahib

Researcher at University of Technology, Iraq

Publications -  32
Citations -  211

Ali Abdulkhaleq Alwahib is an academic researcher from University of Technology, Iraq. The author has contributed to research in topics: Surface plasmon resonance & Plasmon. The author has an hindex of 5, co-authored 16 publications receiving 89 citations. Previous affiliations of Ali Abdulkhaleq Alwahib include Universiti Malaysia Terengganu & Universiti Putra Malaysia.

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Detection of adulterated honey by surface plasmon resonance optical sensor

TL;DR: In this article, surface plasmon resonance based on Kretschmann configuration is employed as an alternative method to detect adulteration of pure honey, and the measured sensitivities are 0.1266°/, 0.1065°/%, and 0.0988°/% for fructose, glucose and sucrose adulterants, respectively.
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Theoretical study of a pure LinbO3/Quartz waveguide coated gold nanorods using supercontinuum laser source

TL;DR: In this article, the authors explore the dependency of the LinbO3/Quartz on the waveguide design for filter and sensor applications using COMSOL multi-physics 4.4.
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Reduced Graphene Oxide/Maghemite Nanocomposite for Detection of Hydrocarbon Vapor Using Surface Plasmon Resonance

TL;DR: In this paper, a reduced graphene oxide/maghemite (rGO/gamma{-}\text{Fe}_{2]-text{O}_{3}$ ) nanocomposite film was used as the sensing layer using surface plasmon resonance (SPR) technique.
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Surface plasmon resonance sensor based on D-shaped optical fiber using fiberbench rotating wave plate for sensing pb ions

TL;DR: In this article, a D-shaped optical fiber is presented in terms of sensor application using FiberBench rotating wave plate, which was adopted to detect plumbum ions in aqueous medium using surface plasmon resonance (SPR).
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Fiber-based Surface Plasmon Resonance Sensor for Lead Ion Detection in Aqueous Solution

TL;DR: In this paper, a gold-coated D-shaped optical fiber was used to detect lead ions (Pb2+) in aqueous solution via monitoring the spectral response of the sensor probe to different concentrations of Pb2+.