Hamad Albrithen
Papers
1
Total Citations
10
H-Index
1
About
Hamad Albrithen is a materials scientist whose research centers on the development of advanced nanocomposites for optoelectronic and sensing applications. His most cited work, "Influence of composition on the external quantum efficiency of reduced graphene oxide/carbon nanoparticle based photodetector used for human body IR detection" (2019, 10 citations), demonstrates a key contribution: systematically showing how the external quantum efficiency (EQE) of photodetectors increases with higher graphene oxide (GO) concentration in reduced graphene oxide/carbon nanoparticle (RGO/CNP) nanocomposites. This simple, cost-effective integration strategy not only enables sensitive human body infrared detection but also provides a scalable design principle for other optoelectronic devices, such as photosensors for automatic doors. Albrithen’s work bridges fundamental materials science with practical device engineering, offering a pathway to affordable, high-performance sensors. His research highlights the tunability of nanocomposite properties, making it relevant for students and researchers exploring next-generation photodetectors, wearable electronics, or smart infrastructure. With a focus on accessible fabrication and real-world applicability, Albrithen’s contributions are paving the way for broader adoption of graphene-based optoelectronics in everyday technology.
Research Focus
Key Achievements
Top Papers
- 1