Ramyaranjan Das | Polymer Composites | Best Researcher Award

Mr. Ramyaranjan Das | Polymer Composites | Best Researcher Award

PhD Research Scholar at National Institute of Technology Rourkela, Rourkela, India

Summary:

A dedicated researcher in Experimental Condensed Matter Physics, Ramyaranjan Das has contributed significantly to the field of materials science, particularly in the area of polymer composites and nanotechnology. His research explores the macromolecular and structural characteristics of materials, aiming to improve the sustainability and functionality of fiber-reinforced composites for potential applications in printed circuit boards and engineering applications. Das is recognized for his innovative approach to material synthesis and characterization, utilizing advanced techniques to optimize the properties of natural fiber composites. He has presented his work at several national and international conferences, such as ASMI-2022 and ICSMEA-2024, where he also received the Best Paper Award. In addition to his research, Das is a life member of the Odisha Physical Society, the Indian Association of Physics Teachers, and the Plasma Science Society of India.

Professional Profile:

šŸ‘©ā€šŸŽ“Education:

Ramyaranjan Das is a Ph.D. scholar in Experimental Condensed Matter Physics at NIT Rourkela, where he conducts research under the guidance of Prof. Dillip Kumar Bisoyi. He began his academic journey with a B.Sc. in Physics Honours from Fakir Mohan University, Odisha, graduating with First Class and a 68.16% score. He then pursued an M.Sc. in Physics at Sambalpur University, Odisha, where he specialized in Condensed Matter Physics and attained First Class with a CGPA of 6.933. He qualified for the Graduate Aptitude Test in Engineering (GATE) in March 2020, which led him to his doctoral studies.

šŸ¢ Professional Experience:

Dasā€™s research career spans over three years in fields including small-angle X-ray scattering, material science, fiber-reinforced polymer composites, polymer physics, and nanotechnology. He joined NIT Rourkela as a Junior Research Fellow (JRF) in 2020 and was later promoted to Senior Research Fellow (SRF) in 2022. His responsibilities include serving as a Teaching Assistant, conducting experimental research, and authoring research articles and proposals. His technical skills are extensive, including hands-on expertise with material synthesis, characterization techniques such as X-ray Diffraction (XRD), Field Emission Scanning Electron Microscopy (FESEM), and Small-Angle X-ray Scattering (SAXS), as well as proficiency in data analysis software like Origin, ImageJ, and MS Office.

Research Interests:

  • Small-angle X-ray scattering and material characterization
  • Macromolecular structure evaluation
  • Development and analysis of natural fiber-reinforced polymer composites
  • Mechanical, thermal, and electrical properties of materials
  • Polymer physics and nanotechnology

Author Metrics:

Das has published multiple research articles in high-impact journals, contributing significantly to the fields of material science and polymer physics. Notable publications include studies on the effects of dewaxing and silane treatment on kapok fiber composites in journals such as Industrial Crops and Products and Journal of Applied Polymer Science. Additionally, he has contributed to research on cold plasma treatments for textile fibers and the effects of doping and annealing on the properties of vanadium pentoxide nanoparticles. His publications have been cited in prominent journals, and he serves as a reviewer for journals including Journal of Condensed Matter, Cellulose Journal, and Journal of Applied Polymer Science.

Top Noted Publication:

Investigation of Dielectric and Mechanical Properties of Pretreated Natural Sunn Hemp Fiber-Reinforced Composite in Correlation with Macromolecular Structure of the Fiber

  • Authors: C. Dash, R. Das, D.K. Sahu, D. Upreti, T.U. Patro, D.K. Bisoyi
  • Journal: Biomacromolecules
  • Volume: 24
  • Issue: 3
  • Pages: 1329-1344
  • Year: 2023
  • Citations: 5

Influence of Dewaxing on Mechanical Properties of Kapok Fiber-Reinforced Polymer Composite

  • Authors: R. Das, C. Dash, P. Behera, D.K. Bisoyi
  • Journal: IOP Conference Series: Earth and Environmental Science
  • Volume: 1086
  • Issue: 1
  • Article ID: 012054
  • Year: 2022
  • Citations: 5

Effect of Mo Doping in Vanadium Pentoxide (Vā‚‚Oā‚…) for Dye Degradation

  • Authors: S. Sahoo, V. Jain, D.V. Shah, R. Das, A. Pathak
  • Journal: Journal of Crystal Growth
  • Volume: 627
  • Article ID: 127491
  • Year: 2024
  • Citations: 3

Effect of Loading of Kapok Fiber with Epoxy on Mechanical and Electrical Properties of Its Composites

  • Authors: R. Das, C. Dash, D.K. Bisoyi
  • Journal: Polymer Science, Series A
  • Volume: 66
  • Issue: 1
  • Pages: 103-112
  • Year: 2024
  • Citations: 2

Comprehensive Evaluation of the Mechanical and Electrical Properties of Dewaxed Kapok Fibre-Reinforced Polymer Composites for Potential Application in Printed Circuit Boards

  • Authors: R. Das, D.K. Bisoyi
  • Journal: Industrial Crops and Products
  • Volume: 222
  • Article ID: 119823
  • Year: 2024

Conclusion:

Mr. Ramyaranjan Das presents a well-rounded profile as a researcher dedicated to advancing polymer composite materials, with a notable emphasis on sustainability and functional applications. His research is timely and addresses pressing needs within materials science. His background, research productivity, and technical proficiency make him a suitable candidate for the Best Researcher Award. Strengthening his work through interdisciplinary collaboration and applied research efforts could further establish him as a leader in the field of sustainable materials science.

 

Tauseef Ahmed | Surface Engineering | Best Paper Award

Dr. Tauseef Ahmed, Surface Engineering, Best Paper Award

Doctorate at Changwon National University, South Korea

Summary:

Dr. Tauseef Ahmed is a dedicated researcher and educator in the field of materials science and engineering. He obtained his Ph.D. in Advanced Convergence Materials Science & Engineering from Changwon National University, South Korea, with a focus on functional materials and energy storage applications. Prior to his doctoral studies, Dr. Ahmed earned his Master’s degree from the Institute of Space Technology in Pakistan and completed his Bachelor’s degree at Ghulam Ishaq Khan Institute of Engineering Sciences and Technology.

Professional Profile:

Scopus Profile

Orcid Profile

Google Scholar Profile

šŸ‘©ā€šŸŽ“Education & Qualification:

Dr. Tauseef Ahmed’s educational background includes:

  • Ph.D. in Advanced Convergence Materials Science & Engineering from Changwon National University, Changwon, South Korea, from August 25, 2018, to February 18, 2022.
  • Master of Science (M.S.) in Materials Sciences and Engineering from the Institute of Space Technology (IST), Islamabad, Pakistan, from August 17, 2014, to September 27, 2016.
  • Bachelor of Science (B.S.) in Materials Science and Engineering from Ghulam Ishaq Khan Institute of Engineering Sciences and Technology (GIKI), Topi, Pakistan, from August 23, 2007, to June 2, 2011.

Professional experience: Ā 

Dr. Tauseef Ahmed has accumulated a diverse range of professional experiences:

  • Post-doctoral Researcher (March 1st, 2022 ā€“ Present) at Changwon National University, Changwon, South Korea. In this role, he conducts research aimed at developing lead-free alternatives for various commercial and industrial applications, with a focus on sensors, actuators, and energy storage. His responsibilities include employing solid-state reaction mechanisms and tape-casting methods for multilayer ceramic capacitor (MLCC) fabrication, innovating dielectric materials for microwave applications, producing research articles and presentations for projects and conferences, mentoring students, and overseeing equipment operation and maintenance.
  • Lecturer (Oct 2016ā€“Aug 2018) at the Institute of Space Technology (IST), Islamabad, Pakistan. Dr. Tauseef Ahmed served as a lecturer in the Department of Materials Science and Engineering (MS&E) for two years. Additionally, he held the role of Graduate Coordinator and served as an advisor for Quality, Environmental, Health, and Safety (QHSE) at IST. He taught courses such as “Surface Engineering and Tribology,” “Manufacturing and Casting,” “Thermodynamics of Materials,” and “Occupational Health and Safety (OH&S)” at the undergraduate level.
  • Maintenance Engineer (11 Jun 2011ā€“23 Sep 2015) at Dynea Chemicals, Pakistan. In this position, he served as the Head of Maintenance and Environmental, Health, and Safety (EHS) at Dynea Pakistan Limited, a multinational company specializing in adhesives, formalin, and molding compounds. He was involved in overseeing maintenance operations and EHS compliance at two Green Field facilities established by Dynea in Gadoon, Pakistan, with a significant investment.

These experiences demonstrate Dr. Tauseef Ahmed’s expertise in research, teaching, and industrial maintenance, reflecting his versatility and commitment to advancing knowledge and contributing to various fields.

Research Interest:

Functional Materials: Investigation and development of materials with specific functional properties tailored for various applications.

Microwave Dielectrics: Study and optimization of materials suitable for microwave applications, including dielectric resonators and antennas.

RF Filters: Research focused on the design and fabrication of radiofrequency (RF) filters for communication systems.

Ferro/Piezoelectric Materials: Exploration of materials exhibiting ferroelectric or piezoelectric properties for use in sensors, actuators, and energy harvesting devices.

Energy Storage Materials: Development of materials for energy storage applications, including batteries, supercapacitors, and multilayer ceramic capacitors (MLCCs).

Semiconductor/Defect Engineering: Investigation of semiconductor materials and defect engineering techniques to enhance their electronic and optoelectronic properties.

Surface Engineering and Tribology: Study of surface modification techniques and tribological behavior of materials to improve their mechanical performance and durability.

Thermal Barrier Coatings (TBCs): Research focused on the development of TBCs for high-temperature applications, such as in gas turbines and aerospace components.

HVOF and Plasma Coatings: Investigation and optimization of high-velocity oxy-fuel (HVOF) and plasma spray coatings for various industrial applications.

Flexible Materials: Exploration of flexible and bendable materials for applications in flexible electronics, wearable devices, and smart textiles.

Publication Top Noted:

Effective A-site modulation and crystal phase evolution for high ferro/piezoelectric performance in ABO3 compounds: Yttrium-doped BiFeO3-BaTiO3

  • Authors: T Ahmed, SA Khan, M Kim, F Akram, HW Park, A Hussain, I Qazi, DH Lim, …
  • Journal: Journal of Alloys and Compounds
  • Year: 2023
  • Citation count: 15

Enhanced Electromechanical Properties of 0.65Bi1.05FeO3ā€“0.35BaTiO3 Ceramics through Optimizing Sintering Conditions

  • Authors: T Ahmed, SA Khan, F Akram, J Bae, SY Choi, A Hussain, TK Song, …
  • Journal: physica status solidi (a)
  • Year: 2020
  • Citation count: 15

Effect of sintering temperature on the electrical properties of pristine BF-35BT piezoelectric ceramics

  • Authors: SA Khan, T Ahmed, F Akram, J Bae, SY Choi, TT Thanh, M Kim, TK Song, …
  • Journal: Journal of the Korean Ceramic Society
  • Year: 2020
  • Citation count: 13

Lead-free high-temperature dielectrics with wide temperature stability range induced from BiFeO3-BaTiO3-based system

  • Authors: SA Khan, T Ahmed, J Bae, SY Choi, M Kim, RA Malik, TK Song, MH Kim, …
  • Journal: Journal of the European Ceramic Society
  • Year: 2022
  • Citation count: 8

Low temperature sintering and dielectric properties of LaAlO3ā€“BaSnO3-based microwave dielectrics

  • Authors: T Ahmed, M Kim, SA Khan, J Lee, SB Lee, HT Kim, S Lee
  • Journal: Advances in Applied Ceramics
  • Year: 2022
  • Citation count: 5

 

 

Liming Dai | Biomaterials

Prof Dr. Helmut Spitzer Oladipo: Leading Researcher in Biomaterials

Summary:

Liming Dai is a distinguished figure in the field of carbon science and innovation. He obtained his B.S. in Chemical Engineering from Zhejiang University in 1983, followed by a Ph.D. in Chemistry from the Australian National University in 1991. His academic journey includes postdoctoral research at the Cavendish Laboratory, Cambridge, and a visiting fellowship at the University of Illinois at Urbana in 1992. Director of the ARC Centre of Excellence for Carbon Science and Innovation, Liming Dai has held esteemed positions, including Scientia Professor and ARC Laureate Fellow at the University of New South Wales. His expertise encompasses nanomaterials, materials science, and engineering.

Professional Profile:

šŸŽ“ Education and Training: Liming Dai earned a B.S. in Chemical Engineering from Zhejiang University in 1983, followed by a Ph.D. in Chemistry from the Australian National University in 1991. He conducted postdoctoral research in Physics at the Cavendish Laboratory, Cambridge, from 1990 to 1992 and was a visiting fellow at the University of Illinois at Urbana in 1992.

šŸ”¬ Research and Professional Experience: Currently serving as the Director of the ARC Centre of Excellence for Carbon Science and Innovation, Liming Dai has held various prestigious positions, including Scientia Professor and ARC Laureate Fellow at the University of New South Wales. His expertise spans nanomaterials, materials science, and engineering.

šŸ† Leadership and Management Experience: Dai’s leadership roles include Director of the Australian Carbon Materials Centre, Director of the Center of Advanced Science and Engineering for Carbon, and leadership in initiatives such as the US Department of Defense Multi-University Research Initiative.

Honours and Awards: Among his many accolades, Dai is a Fellow of the Australian Academy of Science, a member of Academia Europaea, and a Fellow of the (US) National Academy of Inventors. He has received numerous awards, including the NASA-Langley Henry J.E. Reid Award and the Advanced Materials Hall of Fame recognition.

šŸ“š Selected Professional Activities: Dai is actively involved in editorial roles for prestigious journals, such as Nano Energy and Frontiers in Materials. He serves on advisory boards for several publications and is a member of various international committees, contributing significantly to the scholarly community.

šŸ‘Øā€šŸ« Selected Education Achievements: Over the years, Dai has supervised numerous postgraduate students and postdoctoral researchers, playing a pivotal role in their academic success. Many of his mentees have excelled in academia, securing positions and fellowships globally.

šŸŒ Selected Professional Achievements: A pioneer in carbon materials, Dai’s impactful contributions include the discovery of heteroatom-doping effects in graphene and the development of carbon-based metal-free electrocatalysts for renewable energy applications. His work has garnered international recognition and commercialization efforts.

šŸ“– Books: Dai has authored and edited several books, including “Intelligent Macromolecules for Smart Devices” and “Carbon-Based Metal-Free Catalysts: Design and Applications,” reflecting his commitment to knowledge dissemination.

šŸ’° Funding and Impact: Dai has secured over AU$100 million in external funding during the past two decades, highlighting the significance and impact of his research in the field of carbon science and innovation.

Publication Top Noted:Ā 

Liming Dai has made significant contributions to the field of carbon materials, particularly in the development of electrocatalysts for various applications. Here are some of his notable publications:

“Nitrogen-doped carbon nanotube arrays with high electrocatalytic activity for oxygen reduction”

  • Authors: K Gong, F Du, Z Xia, M Durstock, L Dai
  • Published in Science in 2009
  • Citations: 7200

“Nitrogen-doped graphene as an efficient metal-free electrocatalyst for oxygen reduction in fuel cells”

  • Authors: L Qu, Y Liu, JB Baek, L Dai
  • Published in ACS Nano in 2010
  • Citations: 4156

“A metal-free bifunctional electrocatalyst for oxygen reduction and oxygen evolution reactions”

  • Authors: J Zhang, Z Zhao, Z Xia, L Dai
  • Published in Nature Nanotechnology in 2015
  • Citations: 2847

“Metal-free catalysts for oxygen reduction reaction”

  • Authors: L Dai, Y Xue, L Qu, HJ Choi, JB Baek
  • Published in Chemical Reviews in 2015
  • Citations: 2232

“Nitrogen-doped graphene quantum dots with oxygen-rich functional groups”

  • Authors: Y Li, Y Zhao, H Cheng, Y Hu, G Shi, L Dai, L Qu
  • Published in the Journal of the American Chemical Society in 2012
  • Citations: 1997

“Plasmaā€Engraved Co3O4 Nanosheets with Oxygen Vacancies and High Surface Area for the Oxygen Evolution Reaction”

  • Authors: L Xu, Q Jiang, Z Xiao, X Li, J Huo, S Wang, L Dai
  • Published in Angewandte Chemie in 2016
  • Citations: 1971

“Carbon nanomaterials for advanced energy conversion and storage”

  • Authors: L Dai, DW Chang, JB Baek, W Lu
  • Published in Small in 2012
  • Citations: 1804

“Scalable synthesis of hierarchically structured carbon nanotubeā€“graphene fibers for capacitive energy storage”

  • Authors: D Yu, K Goh, H Wang, L Wei, W Jiang, Q Zhang, L Dai, Y Chen
  • Published in Nature Nanotechnology in 2014
  • Citations: 1376

 

 

Farhad Ghodsi | Thin Films

Prof. Farhad Ghodsi: Leading Researcher in Thin Films

šŸŽ‰ Congratulations Prof. Farhad GhodsiĀ on Winning the Best Researcher Award! šŸ† Your dedication to research, mentorship, and collaboration with international teams is truly commendable. This award is a testament to your outstanding work and the impact it has on the broader community.

Short Bio:
Prof. Farhad Ghodsi is a Full Professor in the Department of Physics at the University of Guilan. With extensive experience, he has contributed significantly to the field of Physics, particularly in the fabrication and characterization of novel materials. Prof. Ghodsi has supervised numerous Master’s and Ph.D. students, showcasing his commitment to academic mentorship. His research, evidenced by over 650 reviews and impactful publications, reflects his dedication to advancing scientific knowledge.

Professional Profile:

šŸ“š Education:

  • Ph.D., Physics Engineering, Istanbul Technical University (ITU), 1999.
  • M.Sc., Physics Engineering, Istanbul Technical University (ITU), 1995.
  • B.Sc. (Hons), Physics Engineering, Istanbul Technical University (ITU), 1992.

šŸ¢ Current Positions:

  • Full Professor, Department of Physics, University of Guilan, 2011-present.

šŸ” Previous Positions:

  • Associate Professor, Department of Physics, University of Guilan, 2007-2011.
  • Assistant Professor, Department of Physics, University of Guilan, 1999-2007.

šŸ“ˆ Impact Factor:

  • Google Scholar Citations: 1978
    • h-index: 25
    • i10-index: 48
  • Scopus Citations: 1611
    • h-index: 22

šŸ” Reviews:

  • More than 650 reviews from 70 ISI indexed Journals published by Elsevier, Springer, IOP Science, John Wiley, Taylor & Francis, RSC, World Scientific, Kluwer, SciELO

šŸŽ“ Supervisor:

  • Master: 56 Students
  • PhD.: 16 Students

Publication Top Noted:

  • Fabrication of V2O5/NiO double-layer film with hydrophilic property and evaluation of the effects of V2O5 coating on electro-optical parameters of NiO film
  • Electrochemical and optical properties of magnetic CuFe2O4 nanofibers grown by PVP and PVA-assisted solā€“gel electrospinning
  • Crystalline phase change and improvement electro-optical parameters of SnSx thin films by different ambient
  • Electrospun MgCo2O4 nanofibers as an efficient electrode material for pseudocapacitor applications: Effect of calcination temperature on electrochemical performance
  • Effects of nitrogen incorporation on N-doped DLC thin film electrodes fabricated by dielectric barrier discharge plasma: Structural evolution and electrochemical performances
  • Investigating the effect of Zn doping on physical properties of nanostructured Sb2S3 thin films by dipā€‘coating technique
  • 4-Nitro-azo dye-sensitized optical behavior of organic/inorganic hybrid networks in zirconium-based thin films: effect of cu co-doping

Research Focus:

Prof. Farhad Ghodsi’s research focus encompasses various aspects of physics and materials science. His notable contributions include the fabrication and characterization of novel materials, with a keen interest in their electro-optical properties. Some key areas of his research focus include:

  1. Thin Film Technology
  2. Nanomaterials and Nanofibers
  3. Electrochemical Studies
  4. Doping Effects
  5. Supervision and Mentorship