Dr. Mahboob Syed | Biosensors | Best Researcher Award

Dr. Mahboob Syed | Biosensors | Best Researcher Award

Dr. Mahboob Syed, Osmania University, India

Syed Mahboob is a distinguished physicist with a robust background in materials science. Born on July 25, 1978, in India, he holds a Ph.D. from Osmania University, where he specialized in relaxor ferroelectric compounds. With over 64 published research papers, he has made significant contributions to the field, particularly in dielectric properties and impedance studies. His postdoctoral research in Taiwan and Japan has furthered his expertise in semiconductor integration and materials characterization. Syed is multilingual, fluent in English, Hindi, Telugu, and Urdu, and has collaborated with various national and international institutions, enriching the global scientific community.

Professional Profile

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Summary of Suitability for Best Researcher Award:

Dr. Syed Mahboob is highly suitable for the Best Researcher Award due to his extensive academic qualifications, research experience, and impressive publication record. He holds a Ph.D. in Physics, awarded in 2006 by Osmania University, with a specialization in computational physics. His strong foundation in both theoretical and experimental physics has allowed him to contribute significantly to the fields of ferroelectrics, semiconductor integration, and dielectric materials. His research work has spanned prestigious institutions globally, including postdoctoral positions at National Taiwan University of Science and Technology and Hiroshima University, Japan. Throughout his research career, Dr. Mahboob has demonstrated expertise in advanced experimental techniques, including impedance spectroscopy, scanning electron microscopy, atomic force microscopy, and ferroelectric testing systems, which are critical in material science and sensor development.

 🎓 Education

Syed Mahboob completed his Ph.D. in Physics at Osmania University, Hyderabad, in August 2006, focusing on relaxor ferroelectric materials under Prof. G. S. Kumar. His academic journey began with an M.Sc. in Physics with a specialization in Computational Physics, graduating with distinction in 2000. Prior to that, he earned a B.Sc. in Mathematics, Physics, and Chemistry, achieving first division honors. His educational foundation has been instrumental in his extensive research career, enabling him to explore complex scientific phenomena and contribute to advancements in material sciences.

 💼 Experience

With a rich research experience spanning over two decades, Syed Mahboob has worked on multiple high-profile projects. He served as a Junior and Senior Research Fellow on projects funded by DST and DRDO, focusing on ferroelectric materials. His postdoctoral roles at National Taiwan University and Hiroshima University allowed him to delve into advanced ceramics and semiconductor research. Since 2009, he has dedicated himself to independent research, producing numerous publications that highlight his expertise in experimental techniques and materials characterization, including dielectric and impedance measurements.

 🏅 Awards and Honors

Syed Mahboob has received recognition for his contributions to the field of physics, particularly in the study of relaxor ferroelectrics. His Ph.D. research earned accolades for its innovative approach to material synthesis and characterization. His published papers have garnered citations and respect within the scientific community, further validating his expertise. He has been invited to speak at several international conferences, showcasing his research and insights into material properties. Syed continues to be a valuable asset to academic and research institutions, promoting advancements in physics.

  🌍 Research Focus

Syed Mahboob’s research primarily centers on relaxor ferroelectric materials and their applications in modern technology. His work investigates the dielectric properties and impedance behavior of various ceramic compounds, with a keen interest in lead-free materials. He employs advanced experimental techniques, including plasma-enhanced chemical vapor deposition and scanning electron microscopy, to study material characteristics at the microstructural level. His ongoing research aims to contribute to sustainable technologies and the development of new materials that can enhance electronic devices’ efficiency and performance.

 📖 Publication Top Notes

Impedance and ac conductivity studies on Ba(Nd0.2Ti0.6Nb0.2)O3 ceramic prepared through conventional and microwave sintering route
  • Citations: 62
Electrical conduction in (Na0.125Bi0.125Ba0.65Ca0.1)(Nd0.065Ti0.87Nb0.065)O3 ceramic
  • Citations: 47
Dielectric behaviour of microwave sintered rare-earth doped BaTiO3 ceramics
  • Citations: 31
Impedance spectroscopy and conductivity studies on B site modified (Na0.5Bi0.5)(NdxTi1−2xNbx)O3 ceramics
  • Citations: 21
Dielectric Properties of BaTiO3 Based Lead Free Relaxor Prepared Through Conventional and Microwave Sintering
  • Citations: 20

Dr. Rituraj Patwal | Renewable Energy Award | Best Researcher Award

Dr. Rituraj Patwal | Renewable Energy Award | Best Researcher Award

Dr. Rituraj Patwal, Women Institute of Technology, India

Dr. Rituraj Singh Patwal, born on December 13, 1990, in Haldwani, Uttarakhand, India, is a specialist in Power System Optimization and Renewable Energy Systems. He holds a Ph.D. in Power System Optimization from Thapar Institute of Engineering and Technology, Patiala, where his thesis focused on “Optimal Generation Scheduling of Pumped Storage Hydrothermal Systems with Solar and Wind Energy Sources.” He also completed his M.Tech. in Power Systems from Thapar University and earned his B.Tech. in Electrical Engineering from Dehradun Institute of Technology. Dr. Patwal’s research interests include sustainable energy systems, optimization algorithms, generation scheduling, and renewable energy sources. He has over 9 months of experience as an Assistant Professor at GRD-IMT Dehradun, and has held similar roles at institutions like Meerut Institute of Technology and Thapar Institute of Engineering and Technology. His teaching portfolio includes subjects such as Basic Electrical Engineering, Network Analysis and Synthesis, and Industrial Internet of Things.

Professional Profile:

Summary of Suitability for Best Researcher Award

Dr. Rituraj Singh Patwal is highly suitable for the “Best Researcher Award” in his field based on his robust academic and research credentials. His work in Power System Optimization and Renewable Energy Systems highlights his expertise in areas critical to the energy sector, such as sustainable energy systems, optimization algorithms, generation scheduling, and the integration of renewable energy sources like solar and wind.

Education:

  1. Ph.D. in Power System Optimization
    • Institution: Thapar University
    • Year: 2021
    • Thesis Title: “Optimal Generation Scheduling of Pumped Storage Hydrothermal System with Solar and Wind Energy Sources”
    • Percentage (Course Work): 83%
  2. M.Tech. in Power System
    • Institution: Thapar University
    • Year: 2016
    • Percentage: 76%
  3. B.Tech. in Electrical Engineering
    • Institution: Dehradun Institute of Technology
    • Year: 2012
    • Percentage: 72%
  4. Intermediate (Science)
    • Board: CBSE
    • Year: 2008
    • Percentage: 83%
  5. High School (Science)
    • Board: CBSE
    • Year: 2006
    • Percentage: 86.2%

Work Experience:

  1. Assistant Professor
    • Institution: GRD-IMT, Dehradun
    • Duration: August 2024 – Present (9 months)
  2. Assistant Professor
    • Institution: Meerut Institute of Technology
    • Duration: November 2022 – July 2023 (8 months)
  3. Assistant Professor
    • Institution: Meerut Institute of Engineering and Technology
    • Duration: March 2021 – October 2022 (1 year 8 months)
  4. Lecturer (NT)
    • Institution: Thapar Institute of Engineering and Technology, Patiala
    • Duration: January 2018 – December 2020 (3 years)
  5. Shift Engineer
    • Company: Birla Tyres
    • Duration: July 2012 – April 2013 (10 months)

Publication top Notes:

 

Optimal generation scheduling of pumped storage hydro-thermal system with wind energy sources

Multi-objective generation scheduling of integrated energy system using fuzzy based surrogate worth trade-off approach

Crisscross PSO algorithm for multi-objective generation scheduling of pumped storage hydrothermal system incorporating solar units

Optimal Economic Emission Scheduling of Integrated Energy Systems Using Heuristic Optimization Technique

A novel TVAC-PSO based mutation strategies algorithm for generation scheduling of pumped storage hydrothermal system incorporating solar units

Heuristic optimization technique for hydrothermal scheduling considering pumped storage unit