رقم الترخيص: 1000609300

رقم الترخيص: 1000609300

البيانات العامة

الاسم الكامل للمتقدم

Raghad Abdullah Aljohar

الجنس

أنثى

تاريخ الميلاد

25/11/2006

البريد الإلكتروني

raljohar.stu@uj.edu.sa

رقم الهاتف

المعلومات الأكاديمية والمهنية

الدرجة العلمية

بكالوريوس

التخصص

هندسة

المؤسسة الأكاديمية أو الجهة المهنية

University of Jeddah

رابط إلى السيرة الذاتية أو ملف

0

الفريق / المهارات والخبرات

هل لديك فريق مسبقًا؟

نعم

اسم الفريق

Power lab engineers

عدد أعضاء الفريق

3

معلومات شخصية وأكاديمية عن الفريق

Team member 2: Name :Ebtisam Ajwad Alshiyamy Major: industrial engineering ID: 1136449319 Phone no. : 0573105552 Team member 3: Name: Gwan Meshari Ragban Major: Industrial engineering ID: 1135851127 Phone no . : 0565679257

المهارات الأساسية لديك أو لفريقك

الهندسة والطاقة المتجددة

المهارات الأخرى

Gwan Meshari Ragban 1135851127 0565679257 Industrial engineering الاسم الهوية رقم الهاتف التخصص
Ebtisam Ajwad Alshiyamy 1136449319 0573105552 Industrial engineering Ebtisam Ajwad Alshiyamy 1136449319 0573105552 Industrial engineering

تفاصيل الفكرة

اسم المشروع/ الفكرة

Novel Application of Multi-walled Carbon Nanotubes and encapsulated Selenium in Monocrystalline Silicon Solar Cells

وصف مختصر للفكرة (100 كلمة)

The research focuses on enhancing the efficiency of monocrystalline silicon (mono-Si) solar cells through the integration of multi-walled carbon nanotubes (MWCNTs) and encapsulated selenium (Se) within the N-type silicon layer. The goal is to tackle the high CO2 emissions from cities, exacerbated by fossil fuel usage in industrial and transportation sectors. MWCNTs exhibit metallic conductivity with a minimal band gap of 0.1-0.3 V, outperforming single-walled carbon nanotubes (SWCNTs) due to their overlapping electronic states, making them more efficient in conducting electrons. By incorporating MWCNTs into the emitter layer of mono-Si, which collects photogenerated electrons, resistance is reduced, leading to enhanced efficiency. MWCNTs also address surface recombination by minimizing electron-hole recombination losses, acting as bridges for charge carriers, and providing alternative pathways for improved energy collection. Moreover, MWCNTs boost photon utilization, aiding in light absorption and scattering, thus increasing the generation of charge carriers. Typical silicon solar cells suffer from overheating, which degrades their performance; however, the stability of MWCNTs under temperature variations prevents significant degradation, potentially improving efficiency in hot climates. To further enhance performance, Se is encapsulated using atomic layer deposition (ALD) with Al₂O₃ to prevent oxidation, a vital process for modern thin film deposition techniques. Integrating these materials promises to deliver solar cells with enhanced efficiency and stability across diverse environmental conditions, ultimately contributing to mitigation efforts against urban CO2 emissions. This innovative approach highlights the importance of advanced materials in modern photovoltaic technologies.

كيف تساهم الفكرة في تعزيز استدامة الطاقة والابتكار في مجال الطاقة؟

By improving the efficiency and life of solar panels ,not only does it reduce emissions it also reduce waste as it lives for very long time due to the additions . Using the two nanomaterials also reduce the cost and .makes it more durable

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