home - Ayman Mohamed AbdAlla

Name: Dr /Ayman Moahmed AbdElmoaty Abdalla

Faculty member 

Associate professsor of nuclear physics
collage of Science and arts
Physics departmnet  

Dr Ayman Mohamed is an Associate Professor of Nuclear Physics at Najran University, Kingdom of Saudi Arabia. He has M.Sc and PhD from Ain Shams University, Egypt. His area of interest is detection of Nuclear particles and Gamma rays. Dr Ayman is handling two big projects on Nuclear Physics. One of these projects has been reviewed by the American Association for the Advancement of Science. Dr Ayman has contributed to the arena of science by publishing more than 30 papers in peer reviewed Nuclear and Applied Physics journals, to name a few, Nuclear Instrument and Methods in Physics , Radiation Measurements and Applied Surface Science. Based on his research accomplishment, he is considered as a reviewer in some scientific journals, such as,Nuclear Science and Techniques, Radiation Physics and Chemistry , Nuclear Science and technology,Radiation Effects and Defects in Solids, Isotopes in Environmental & Health Studies,microelectronics , Sensors and Actuators and Royal Society of Chemistry . He collaborated with a number of local, regional and international recognized universities, for example, Nara Institute of Science and Technology, (NAIST) Takayama, Japan. A patent file has been filed in Saudi Authority for Intellectual Property for his current research. He contribute in two books entitled “DAM-ADC Nuclear track detector and it's applications” and “Radon” . Dr Ayman is currently working on nanopartilces for nuclear applications in Najran University.


المؤهلات العلمية

المؤهلات العلمية دكتوراة فيزياء نووية / ماجستير فيزياء نووية / بكال

الخبرات

المؤهلات العلمية دكتوراة فيزياء نووية / ماجستير فيزياء نووية / بكال

التخصصات والمهارات

المهام الوظيفية أستاذ الفيزياء النووية المشارك بجامعة نجران/ نائب رئيس وحدة الوقاية من الاشعاع/ باحث بمركز المواد المتقدمة وتكنولوجيا النانو 

الدورات التدربية

الدورات التدربية

الأبحاث العلمية

   https://orcid.org/0000-0003-3366-1238

Patents/ METHOD FOR PRODUCING LUMINESCENT NANOMATERIALS OF ZINC SULFIDE AND USE THEREOF TO DETECT RADON GAS
WO2019143274
1- Nanostructured scintillator developed in-house for radon detection    2022    Radiation Physics and Chemistryt  
2- Detection efficiency of alpha particles using CR-39 nuclear detector- etched with BSW    2022    Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms 
3- An exhaustive study of the efficiency and sensitivity of a radon cell coated with a new scintillation material    2022    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 
4- Detection of ionizing radiation using Ag-doped ZnS nanoparticles    2022    Journal of Materials Science: Materials in Electronics,
5- Alpha particles detection using P3HT conducting polymer-coated DAM-ADC    2022    Radiation Physics and Chemistryt
6- Radon gas build up using alpha scintillation cell: Experimentally and theoretically    2021    Applied Radiation and Isotopes
7- Gamma irradiation effect towards photoluminescence and optical properties of Makrofol DE 6-2
2020    Radiation Physics and Chemistry
8- Soil radon detection using active scintillation cell 2020    •    Journal of Radiation Research and Applied Sciences 
9- CPRD Supplied with Native Scintillator for Radon Gas Detection    2019    Arab Journal of Nuclear Sciences and Applications  Radon detection using alpha scintillation KACST cell    2019    Nuclear Inst. and Methods in Physics Research, A 922 (2019) 84–90
10- Characterization and radiation detection application of ZnS(Ag) nanoparticles    2018    Physica B: Physics of Condensed Matter (2018)
11- Measurement of Indoor Radon Concentrations in Different Dwellings in Arar, Saudia Arabia    2018    Nuclear Technology and Radiation Protection
12- Detection capabilities of alpha particles and gamma rays using DAM–ADC scintillator    2018    Nuclear Inst. and Methods in Physics Research, A 901 (2018) 99–103
Radon    2017    ISBN 978-***********-2
13- Study of the optical properties and the carbonaceous clusters in DAM-ADC solid state nuclear track detectors2017    Radiation Physics and Chemistry
14- The activity concentrations of 222Rn in some groundwater wells, Najran city, Saudi Arabia
2017    Nuclear Technology and Radiation Protection
15- Study on the sensitivity of makrofol-e polycarbonate detector    2016    journal of nuclear research and development
16- Photoluminescence detection of alpha particle using DAM-ADC nuclear detector 2016    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, 

17- Registration of alpha particles in Makrofol-E nuclear track detectors     2016 Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms

18- Structural and optical investigation on alpha particle irradiated CR-39surface coated by MEH-PPV conducting polymer2015    Applied Surface Science

19- Fast detection of alpha particles in DAM-ADC nuclear track detectors2015    Radiation Physics and Chemistry

20- Fast neutrons detection in CR-39 and DAM-ADC nuclear track detectors    2015Radiation Physics and Chemistry 
21- Radon irradiation chamber and its applications    2015    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment

22- Dependence of alpha particle track diameter on the free volume holes size using positron annihilation lifetime technique2015    Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms

23- Etching characteristic studies for the detection of alpha particles in DAM-ADC nuclear track detector2014    Radiation Physics and Chemistry

24- The use of CH3OH additive to NaOH for etching alpha particle tracks in a CR-39 plastic nuclear track detector2014    Radiation Physics and Chemistry

25- High resolution for low energy alpha particle spectroscopy using cr-39 solid state nuclear track detectors    2014    Journal of nuclear research and development




 




 

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