Rachid Masrour – Materials for energy – Best Researcher Award

Rachid Masrour – Materials for energy – Best Researcher Award

Prof Dr. Rachid Masrour distinguished academic and researcher in the field Materials for energy, He appears to be highly suitable for the Best Researcher Award.

🌐 Professional Profile

Educations📚📚📚

  • Doctorate in Materials Physics: The person has a strong foundation in physics, particularly in materials physics, which is a significant and impactful research area.
  • Full Professorship and Habilitation: Achieving a full professorship and university habilitation demonstrates a high level of expertise, recognition, and authority in their field of research.

Professional Experience:

  • Research Professor: Over a decade of experience as a research professor at respected institutions shows dedication to both research and teaching. The transition from the National School of Applied Sciences to a prominent role at Sidi Mohamed Ben Abdellah University further highlights their growing influence in the academic world.

Research and Academic Contributions:

  • Responsibilities: The individual’s involvement in various academic and administrative roles, such as heading departments, coordinating programs, and participating in multiple committees, indicates a leadership role in shaping educational and research initiatives. These roles often require one to be a thought leader and innovator in their field.
  • Module Responsibilities: The responsibility for modules on advanced topics like Interaction Radiation Matter, Molecular Spectroscopy, Physics of Phase Transitions, and Optical Transmission Technology suggests deep expertise in cutting-edge areas of physics and engineering, which are critical for research and innovation.

Suitability for Best Researcher Award:

  • Breadth and Depth of Research: The candidate’s extensive experience in both teaching and research, combined with their leadership roles, suggests they are a well-rounded academic with a strong impact on both their field and the institutions they have served.
  • Leadership in Research: The leadership positions, particularly in research committees and academic councils, indicate the individual’s influence extends beyond personal research to shaping the research agenda and standards at their institutions.
📝🔬Publications📝🔬

1. Oudahman, M. , Houmad, M. , Masrour, R. , Rezzouk, A. Materials
Science in Semiconductor Processing , 182, 108647 (2024).
2. Raïâ, M.Y. , R. Masrour, Hamedoun, M. , Kharabach J, Rezzouk A,
Benzakour, N. , Bouslykhane, K. Materials Science in Semiconductor
Processing , 181, (2024) 108649.
3. A. Erraji, R. Masrour, L. Xu. Ionics 2024.DOI10.1007/s11581-024-05632-
z.
4. Heryanto, H. , Tahir, D. , Abdullah, B, Sayyed M.I.; Yunas, Jumril;
Masrour, Rachid; Veeravelan K. Arabian Journal for Science and
Engineering. DOI10.1007/s13369-024-09210-3 (2024).
5. Mennaoui, O. , R. Masrour, Xu, L. , Hlil, E.K. Ionics , 30(5), pp. 2537–
2547 (2024).
6. Jerrari, M. , R. Masrour, , Sahdane, T. Materials Today Communications ,
39, 108713 (2024).
7. Kadim, G. , R. Masrour, Physica Scripta , 99(6), 065988 (2024).
8. Rauf, Ichsan; Heryanto, Heryanto; Tahir, Dahlang; Gaus, Abd; Rinovian,
Asnan; Veeravelan K.; Akouibaa, Ahmed; Rachid Masrour; Akouibaa,
4
Abdelilah. Physica Scripta Open Access Volume 99, Issue 61 (2024) Article
number 065998.
9. Khalis, M, R. Masrour. Indian Journal of Physics , 98(8), pp. 2719–2729
2024.
10. Ramdane, O. , Labidi, M. , Labidi, S. , R. Masrour, Journal of the
Korean Ceramic Society (2024).DOI10.1007/s43207-024-00397-7.
11. Kadim, G. , R. Masrour, Journal of the Korean Ceramic Society
(2024).DOI10.1007/s43207-024-00394-w.
12. Sahdane, T. , R. Masrour, Journal of Cluster Science
(2024).DOI10.1007/s10876-024-02636-7.
13. Ezaier, A. , R. Masrour, Hamedoun, A., M. , Kharbach, J.,
Rezzouk, A., Benzakour, N. , Bouslykhane, K. Journal of Rare Earths
(2024).DOI10.1016/j.jre.2023.05.014.
14. R. Masrour, , Kadim, G. , Ellouze, M. Journal of the Korean
Ceramic Society , 61(3), pp. 411–418 (2024).
15. Akouibaa, A. , R. Masrour, , Mordane, S. , Benhamou, M., El
Assyry, A. , Derouiche, A.. Journal of Drug Delivery Science and Technology
, 95, 105559 (2024).
16. Sahdane, T. , R. Masrour, Polyhedron , 254, 116948 (2024).
17. Jerrari, M. , R. Masrour, , Sahdane, T. Materials Today
Communications , 39, 108713 (2024).
18. Elhnaki, I. , Masrour, R. , Sahdane, T. Computational Materials
Science , 242, 113113 (2024).
19. El Krimi, Y. , R. Masrour, Modern Physics Letters B , 38(17),
24500801 (2024).
20. El Krimi, Y. , R. Masrour, Modern Physics Letters B , 38(17),
24500811 (2024).
21. Meghchouche, H. , Labidi, M. , Amara, A. , Labidi, S. , R. Masrour,
Physica B: Condensed Matter , 686, 416080 (2024).
22. Jerrari, M. , R. Masrour, , Sahdane, T. Materials Science in
Semiconductor Processing , 179, 108506 (2024).

Arnab Das -Manufacturing Technology – Best Researcher Award

Arnab Das –  Manufacturing Technology – Best Researcher Award

Dr. Arnab Das distinguished academic and researcher in the field Manufacturing Technology. He is currently an Assistant Professor at Swami Vivekananda University in Barrackpore, Kolkata, having joined the institution on March 1, 2024. He completed his Ph.D. in Mechanical Engineering at the Indian Institute of Technology (ISM) Dhanbad, where he conducted his research under the guidance of Prof. Vivek Bajpai.

🌐 Professional Profile

Educations📚📚📚

He completed his Ph.D. in Mechanical Engineering at the Indian Institute of Technology (ISM) Dhanbad in 2023, under the supervision of Prof. Vivek Bajpai, with a thesis titled “Development of high-speed micromachining center and its performance evaluation in micro and diamond turning.” He also holds an M.Tech in Mechanical Engineering with a specialization in Manufacturing Engineering from the same institution, completed in June 2018 under the guidance of Prof. Vivek Bajpai. His M.Tech thesis focused on the “Development of vibration-free machine structure for high-speed micro milling center,” and he graduated with first-class distinction, achieving a CGPA of 9.13. Prior to this, he earned a B.Tech in Mechanical Engineering from the Govt. College of Engineering & Textile Technology, Berhampore, West Bengal, in July 2016, where his project was titled “Refrigeration with the help of Peltier effect” and he graduated with a first-class CGPA of 8.95. He completed his 12th grade at Sree Ramkrishna Sikshalaya in Howrah, West Bengal, in June 2012 with a first division and a percentage of 87.2%, and his 10th grade at the same school in May 2010, also with a first division and a percentage of 84.75%.

Experience

He has extensive research experience in various aspects of mechanical engineering. His research endeavors include the development of dynamically stable high-speed micromachining centers capable of machining complex micro components from difficult-to-machine materials. Additionally, he has worked on introducing high-speed micro turning techniques to enhance the productivity of cylindrical micro components. Furthermore, his research focuses on reducing cutting forces in turning operations through the utilization of micro-structured cutting tools and Minimum Quantity Lubrication (MQL). Moreover, he has contributed to the advancement of diamond turning technology by developing cost-effective methodologies employing ceramic bearing spindles to achieve nano-finished surfaces. In terms of teaching, he has served as an Assistant Professor at Swami Vivekananda University in Barrackpore, Kolkata, since March 2024, and previously held the same position at Camellia Institute of Technology in Madhyamgram from July 2023 to February 2024. He also gained teaching experience as a Teaching Assistant during his M.Tech. and Ph.D. at the Indian Institute of Technology (ISM) Dhanbad, where he assisted in various subjects such as Manufacturing Process Lab, Theory of Metal Forming, Micromanufacturing, Advances in Machining, CNC Programming Lab, and Production Technology Lab.

Research Interests:

He is currently engaged in research spanning various areas of precision engineering and machining. His primary interests lie in micro turning, ultraprecision diamond turning, and high-speed micromachining, where he delves deep into the intricacies of metal cutting processes. Additionally, he focuses on understanding machine tool dynamics to optimize performance. Utilizing finite element modeling (FEM), he investigates the complex interactions within machining systems, aiming to enhance accuracy and efficiency. Beyond conventional methods, he explores unconventional machining techniques and embraces additive manufacturing, continually expanding his expertise and contributing to advancements in manufacturing technology.

📝🔬Publications📝🔬
  • . Arnab Das, Vivek Bajpai, “Turning insert with lubricating passage along the normal plane for
    minimization of friction, cutting force and tool wear”, Journal of Manufacturing Processes
    (2023) vol 101, pp 141-155, 2023. https://doi.org/10.1016/j.jmapro.2023.05.066 (Impact factor:
    5.684, SCI Indexed)
  • Arnab Das, Vivek Bajpai, “Machinability analysis of lead free brass in high speed micro turning
    using minimum quantity lubrication”, CIRP Journal of Manufacturing Science and Technology
    (2023) vol 41, pp 180-195, 2023. https://doi.org/10.1016/j.cirpj.2022.11.023 (Impact factor: 3.56,
    SCI Indexed)
  • Arnab Das, Abisoor Rishi Sharan Mundu, Vivek Bajpai, “Enhancing tribological performance of
    lead free brass in high speed micro turning via hybrid cryogenic cooling technique”, Tribology
    International (2022) vol 179, 108090, 2022. https://doi.org/10.1016/j.triboint.2022.108090
    (Impact factor: 5.62, SCI Indexed)
  • Arnab Das, Shashank Shukla, Mohan Kumar, Chitransh Singh, Madan Lal Chandravanshi, Vivek
    Bajpai, “Development of a vibration free machine structure for high-speed micro-milling center”,
    The International Journal of Advanced Manufacturing Technology, vol 116, 2021, pp 3489-
    3506. https://doi.org/10.1007/s00170-021-07533-1 (Impact factor: 3.563, SCI Indexed)
  • Chitransh Singh, Arnab Das, Vivek Bajpai, and Madan Lal Chandravanshi, “Effects of process
    parameters on tool vibration and force transmissibility in high-speed micro-milling machine”,
    Journal of the Brazilian Society of Mechanical Sciences and Engineering (2023) vol 45: 343,
    pp 1-14, 2023. https://doi.org/10.1007/s40430-023-04266-y (Impact factor: 2.361, SCI Indexed)
  • Arnab Das, Shri Narayan Agnihotri, Vivek Bajpai, “Compensation for Merchant’s Circle Diagram
    to predict cutting force in orthogonal micro turning”, Journal of Micromanufacturing, (Special
    issue on WCMNM 2021) vol 6(2), pp 101-111, 2023. https://doi.org/10.1177/25165984231171896
    (SCOPUS Indexed)
  • Arnab Das, Abisoor Rishi Sharan Mundu, and Vivek Bajpai, “Prediction of friction angle and
    cutting force considering sticking friction in machining process”, Sadhana, vol 48, 261, 2023.
    https://doi.org/10.1007/s12046-023-02312-y (Impact factor: 1.6, SCI Indexed)
  • Arnab Das, Vivek Bajpai, “A laser welding set up with dual focal lens for laser welding of
    dissimilar materials”, Indian Patent, Application no 202331006063 A, The Patent Office Journal
    No. 06/2023 Dated 10/02/2023, pp 9969. (Published)

Neha Agarwal – Additive Manufacturing and Material Science – Best Researcher Award

Neha Agarwal – Additive Manufacturing and Material Science – Best Researcher Award

Ms. Neha Agarwal distinguished academic and researcher in the field Additive Manufacturing and Material Science. Proven experience in bridging the gap between Biotechnology and Material Sciences with surface techniques
and characterization. Have successfully published scientific papers in high-impact journals.

🌐 Professional Profile

Educations📚📚📚

She is currently pursuing a PhD in Material Science at Dublin City University in Ireland, focusing on additive manufacturing of Ni-rich nitinol for superelastic properties for stent applications. Prior to that, she obtained a Master of Science in Micro and Nano Systems from Chemnitz University of Technology in Germany, with a grade of 2.1. She completed her Bachelor of Electronics and Communications Engineering with First Class with Distinction at Visveswariah Technological University in India.

Research experience

She has a diverse range of work experiences spanning various fields and countries. From May 2020 to August 2020, she engaged in upskilling herself with courses on Digital Marketing and Project Management through SkillnetIreland. In November 2019, she worked as a Researcher at Saarland University in Saabruecken, Germany, focusing on nanotechnological development for microfluidics.

From November 2018 to February 2019, she served as a Consultant at Altran S.A.S Deutschland – Carl Zeiss SMT in Oberkochen, Germany. Her responsibilities included the calculation of pressure drop in piping systems, development of a modular tool in Excel and MATLAB, and verification of the tool through Computational Fluid Dynamics (CFD).

She also engaged in upskilling on the German language for B2 certification at VHS in Saarbrücken, Germany, from January 2018 to October 2018.

Her work as an Optical Engineer at Sectago GmbH in Saarbrücken, Germany, from October 2016 to December 2017, involved the development of security features for banknotes and documents, including diffraction gratings, wafer preparation, material testing, and nanoimprinting.

Prior to that, from October 2014 to September 2016, she worked on electrode immobilization strategies for the construction of P450 biosensors.

Academic experience

She has extensive experience as a research assistant in various institutions and projects. At the Korea Institute of Science and Technology (KIST) Europe in Saarbrücken, Germany, she worked on sample preparation with aqueous solutions of pyrrole, polymerization using femtosecond Ultraviolet Laser on a microchip, synthesis of gold nanoparticles, and surface characterization using techniques like SEM, AFM, and conductivity measurements for antibody testing. She also contributed to the development of sensors in microfluidic chips through polymerization of conductive polymers using laser direct writing and surface modification techniques.

Previously, she was a research assistant at the Leibniz – Institute for New Materials (INM) in Saarbrücken, Germany. There, she worked on producing colorful coatings for various applications using Physical Vapor Deposition techniques, optimizing processes, investigating material properties, and employing different color measuring techniques.

Her master’s thesis at INM focused on micro-nano structuring and nitriding of Titanium alloy using fiber lasers for dental implants. This involved laser structuring, material characterization using various techniques, and structural analysis.

At Chemnitz University of Technology in Chemnitz, Germany, she worked on a research project involving capacitance-voltage characteristics of bi-layered MOSFETs, conducting measurements and analysis of dependency on frequency variations.

Her experiences demonstrate a strong background in research and hands-on work in materials science, nanotechnology, laser technology, and microfluidics.

📝🔬Publications📝

1. Effect of Heat Treatment Time and Temperature on the Microstructure and Shape Memory
Properties of Nitinol Wires, N Agarwal, J Ryan Murphy, TS Hashemi, T Mossop, D O’Neill, J
Power, A Shayegh, D Brabazon, Materials 16 (19), 6480

2. Influence of processing parameters on the corrosion resistance of additively manufactured
nitinol parts for biomedical applications, N Agarwal, KA Gallagher, S Keaveny, JG Carton, D
Brabazon, MA Obeidi, Results in Materials 21, 100536

3. Study of the effects of laser power and scanning speed on the microstructural morphologies and
physical properties of L-PBF produced Ni52. 39Ti47. 61, N Agarwal, MCC Monu, KT Selvam, MA
Obeidi, D Brabazon, Journal of Materials Research and Technology 27, 8334-8343

4. Influence of laser powder bed fusion and ageing heat treatment parameters on the phase
structure and physical behaviour of Ni-rich nitinol parts, N Agarwal, D Bourke, MA Obeidi, D
Brabazon, Journal of Materials Research and Technology, 2024

5. Laser induced anisotropic wetting on Ti–6Al–4V surfaces; Neha Agarwal, Alexander May, Juseok
Lee, Marcel Lambert, Cagri Kaan Akkan, F.P. Nothdurft, O.C. Aktas, Material Letters Journal

6. Ag–Al2O3 optical nanocomposites with narrow particle size distribution prepared by pulsed laser
deposition; Marcel Lambert, Alexander May, Cagri Kaan Akkan, Neha Agarwal, O.C. Aktas,
Material Letters Journal

7. A Cytochrome P450 3A4 Biosensor Based on Generation 4.0 PAMAM Dendrimers for the Detection
of Caffeine; Michael Müller, Neha Agarwal, Jungtae Kim, Biosensors

8. Direct writing of a conducting polymer pattern in aqueous solution by using an ultrashort laser
pulse; Neha Agarwal, Hyobong Ryu, Melanie Mangang, Wilhelm Pfleging, Jungtae Kim, Royal
Society of Chemistry Advances

Donglu Shi – Materials science – Best Researcher Award

Donglu Shi – Materials science – Best Researcher Award

Prof Dr. Donglu Shi distinguished academic and researcher in the field Material ScienceHe has held various esteemed positions throughout his career. Since 2001, he has served as a Professor of Materials Science and Engineering at the University of Cincinnati in Cincinnati, Ohio, United States. Additionally, from 2013 to 2023, he assumed the roles of Chair and Graduate Director of Materials Science and Engineering at the same institution.

His international experience includes a stint as a Visiting Scientist at the Centre National de la Recherche Scientifique in Grenoble, Dauphiné, France, in 2001. Furthermore, in the same year, he was a Fellow at Fitzwilliam College, University of Cambridge, Cambridge, Cambridgeshire, United Kingdom.

Prior to his professorial role, he held the position of Associate Professor at the University of Cincinnati’s Department of Materials Science and Engineering from 1995 to 2001. Earlier in his career, he worked as a Staff Scientist in the Materials Science Division of Argonne National Laboratory, based in Argonne, Illinois, United States, from 1988 to 1995. Preceding this, he served as a Postdoctoral Staff member at the same institution from 1987 to 1988.

🌐 Professional Profiles

Educations📚📚📚

He received his Master of Science in Physics from the University of Massachusetts, Amherst, MA, USA, in May 1983. Following this, he pursued his Doctor of Philosophy (PhD) in Engineering from the same institution, completing it in September 1986. Subsequently, he joined Argonne National Laboratory in Lemont, Illinois, United States, as a Postdoctoral Fellow from July 1987 to September 1988, specializing in Materials Science.

Synergistic Activities

He is actively engaged in teaching and research at the University of Cincinnati, where he teaches undergraduate courses in materials science and graduate courses in solid-state physics. Additionally, he oversees the minor degree programs in Nano Engineering and Materials Engineering.

As part of his commitment to STEM education, he participates in the Summer Institute at the University of Cincinnati, delivering lectures on nanoscience to groups of underrepresented students.

His research endeavors are groundbreaking, focusing on nanoscience, photonics, and magnetism. He investigates the electronic structures of nanomaterials, particularly emphasizing 3D solar harvesting and energy generation. Through his innovative work, he contributes to the development of novel devices, aiming to achieve a net-zero carbon footprint and promote environmental sustainability. Furthermore, he explores the applications of biomaterials in medical diagnosis and therapy.

His contributions to the field have been recognized through various prestigious honors and awards, including being named a Fellow of ASM-International and a Visiting Fellow of Fitzwilliam College, Cambridge University. He has also received accolades such as the Rieveschl Award for Distinguished Scientific Research, the Sarah Grant Barber Outstanding Faculty Advisor Award, the Distinguished Engineering Researcher Award, the Neil Wandmacher Teaching Award, the SIGMA XI Research Recognition Award, and the Honor Roll Professor of Excellence in Teaching Award. Moreover, he has been appointed to editorial positions for several prominent journals, including serving as Editorial Board Member of Journal of Energy and Power Technology, Associate Editor of Nanomaterials, Editor-in-Chief of Nano LIFE, Associate Editor of Nanomaterials, and Editorial Board Member of Biomaterials Advances and Bioengineering.

📝🔬Publications📝🔬