Ms. Iti Diwan | Materials Science | Women Researcher Award
Research Scholar of Rajiv Gandhi Proudyogiki Vishwavidyalaya, Bhopal, India
ITI Diwan is a passionate and diligent researcher with a robust background in nanotechnology, material fabrication, composites, and device applications. 📚✨ Holding a Ph.D. from Rajiv Gandhi Proudyogiki Vishwavidhyalaya Bhopal, where he recently submitted his draft thesis on the synthesis and characterization of carbon and metal oxide-based nanocomposites for future device applicability, his academic journey has been exemplary. 🏆 With an M.Sc. in Physics from Barkatullah University Bhopal, where he excelled in subjects like condensed matter physics and electronics, achieving a remarkable 81%, and a B.Sc. in Physics, Mathematics, and Computer Science with 74%, ITI Diwan has consistently demonstrated academic excellence. 📖🎓 His schooling was equally stellar, scoring 86% in high school and specializing in Physics, Chemistry, and Mathematics during his higher secondary education. 🌟🔬
Professional profile
Education📚
Professional Experience🏛️
ITI Diwan brings a wealth of professional experience to the table, marked by his extensive research and contributions in nanotechnology and material sciences. 🧪🔬 He has worked on innovative projects involving the synthesis and characterization of carbon and metal oxide-based nanocomposites, focusing on their applicability in future devices. 💡📈 His expertise in these areas has been honed through rigorous research, which has been a cornerstone of his professional journey. Additionally, Diwan’s work has involved significant hands-on experience with various advanced materials and fabrication techniques, making him a valuable asset in any scientific and research-oriented environment. 🧬🔧 His dedication to exploring the unknown and pushing the boundaries of current scientific knowledge is evident in his professional endeavors. 🌟🔍
Research Interest🌐
Awards and Honors🏆
Achievements🏅
- 🏆 Recognized for outstanding research contributions in nanotechnology and material science.
- 📚 Achieved first division with 81% in Master of Science in Physics from Barkatullah University Bhopal.
- 🎓 Graduated with first division and 74% in Bachelor of Science, majoring in Physics, Mathematics, and Computer Science from Barkatullah University Bhopal.
- 📝 Submitted draft thesis for Ph.D. on the synthesis and characterization of carbon and metal oxide-based nanocomposites at Rajiv Gandhi Proudyogiki Vishwavidhyalaya Bhopal.
- 🌟 Demonstrated exceptional academic performance, scoring 86% in high school and excelling in Physics, Chemistry, and Mathematics during higher secondary education.
- 💡 Contributed to innovative projects focused on the applicability of advanced nanocomposites in future technologies.
- 🌍 Earned recognition and respect within the scientific community for pushing the frontiers of scientific knowledge.
Projects🛠️
- 🧪 Synthesis and Characterization of Nanocomposites:
- Focused on carbon and metal oxide-based materials.
- Explored their potential applications in future devices.
- 💡 Development of Advanced Materials:
- Worked on innovative fabrication techniques.
- Aimed to create materials with enhanced properties for various industries.
- 🔬 Electronics and Solid-State Physics:
- Conducted experiments and research to improve electronic devices.
- Investigated the physical properties of solid-state materials.
- 📊 Data Analysis and Modeling:
- Utilized advanced computational methods.
- Analyzed experimental data to derive meaningful conclusions.
- 🌟 Condensed Matter Physics:
- Studied the properties of condensed phases of matter.
- Focused on understanding complex physical phenomena.
- 🖥️ Integration of Nanotechnology in Computing:
- Explored the use of nanocomposites in enhancing computer performance.
- Worked on the development of nanotechnology-based computational devices.
Publications top noted📜
📄 Article: Synthesis of Green Fluorescent, Energy Efficient Nitrogen Doped Carbon Quantum Dots
🖋️ Authors: Diwan, I., Tripathi, G.K., Khare, P.S.
📘 Journal: Optik
📅 Year: 2024
🔢 Volume: 303
📄 Article Number: 171725
🔬 Abstract: [Show abstract link disabled]
🔗 Related Documents: [Link disabled]
📊 Citations: 0