| Applied Bionics and Biomechanics | 卷:2022 |
| Artificial Intelligence Technique of Synthesis and Characterizations for Measurement of Optical Particles in Medical Devices | |
| Ahmad Maher Al Sayeh1  Mohammad Bani Younis1  Walid Theib Mohammad1  Md Kawser Ahmed2  Samar Zuhair Alshawwa3  Manal Mahrous Abdalhamed Mohamed4  Malik Bader Alazzam5  Sherin Hassan Mabrouk6  Rania Mohammed Abd Elgawad Mostafa6  Heba Abdelazezm Hassan Ismail6  Mona Abdelmoneim Abdelmabood Ebrahim6  Sara Wans Alshmmry7  | |
| [1] Al-Hussein Bin Talal University; | |
| [2] Department of English and Modern Languages; | |
| [3] Department of Pharmaceutical Sciences; | |
| [4] Education and Psychology Department; | |
| [5] Information Technology College; | |
| [6] Self-Development Department; | |
| [7] Special Education Department; | |
| 关键词: ; | |
| DOI : 10.1155/2022/9103551 | |
| 来源: DOAJ | |
【 摘 要 】
The aim of this study is to demonstrate the effect of particle size on semiconductor properties; artificial intelligence is being used for the research methods. As a result, we picked cadmium sulfide (CdS), which is a unique semiconductor material that is employed in a broad variety of current applications. Given that CdS has distinct electrical and optical characteristics, it may be employed in the production of solar cells, for example. Solar cells, as is also well known, have become an essential source of energy in the world. Within the visible range (500-700 nm), we create one layer of bulk CdS and one layer of nano-CdS air bulk CdS air and air nano-CdS air. We used a number of instrumentation methods to investigate the naked CdS nanoparticles, including XRD, SEM-EDX, UV-Vis spectroscopy, TEM, XPS, and PL spectroscopy, among others. The results show that for bulk CdS at normal incidence, the transmittance is T=45, and for nano-CdS with particle size 3 nm, the transmittance is T=85.8, with transverse-electric (S-polarized) and transverse-magnetic (P-polarized) transmittances of TE=75 and TM=80, respectively.
【 授权许可】
Unknown