Kriti Ranjan Sahu | Material Science | Best Researcher Award

Assist. Prof. Dr .Kriti Ranjan Sahu | Material Science | Best Researcher Award

Assistant Professor, Bhatter College, Dantan(Autonomous), India

Dr. Kriti Ranjan Sahu is an accomplished physicist and academic leader with a track record of novel research in piezoelectricity, superconductivity, optical materials, and bio-physics. His multifaceted experience, spanning material synthesis to device application, reflects deep scientific rigor and societal relevance. His innovations have the potential for technological translation in energy, defense, and industrial applications. Furthermore, his leadership role as HOD and teaching legacy contribute to knowledge dissemination.

Professional Profile

šŸŽ“ Education Background

Dr. Kriti Ranjan Sahu earned his Ph.D. in Physics from Jadavpur University in January 2016 under the supervision of Prof. Dr. Udayan De, a former senior scientist at VECC, Kolkata. His doctoral thesis, titled “Study of some piezoelectric and other oxides and of their polymeric composites for applications,” focused on developing advanced functional materials. He completed his M.Sc. in Physics from G.G.D. University, Bilaspur in 2004 with a commendable score of 64.39%. His foundational studies include a B.Sc. in Physics from P.K. College, Contai under Vidyasagar University, and school-level education from Tickrapara Ambikyamoye High School in West Bengal.

šŸ§‘ā€šŸ« Teaching & Academic Experience

Dr. Sahu currently serves as the Assistant Professor and Head of the Department of Physics at Bhatter College, Dantan (Autonomous), Paschim Medinipur, West Bengal, a position he has held since December 11, 2019. Previously, he served as a Government-approved part-time teacher (now SACT) in the Department of Physics at Egra S.S.B. College, from August 2005 to December 2019, where he also led the department. His extensive teaching experience spans undergraduate and postgraduate levels, reflecting his commitment to physics education over two decades.

🧪 Research Expertise and Technical Skills

Dr. Kriti Ranjan Sahu possesses extensive expertise in experimental condensed matter physics, with a strong focus on material synthesis, characterization, and device applications. His core competencies include the preparation of advanced materials such as piezoelectric ceramics, optical glasses, EMI shielding composites, and high-temperature superconductors. He is skilled in a wide range of characterization techniques including X-ray diffraction (XRD), UV-Visible spectroscopy, FTIR, SEM, TEM, Raman spectroscopy, fluorescence analysis, and thermal techniques like DSC, DTA, and TGA. Dr. Sahu has conducted low-temperature resistivity and magnetization measurements, dielectric property analysis, and electrical conductivity studies. His technical abilities extend to refractive index measurement using laser-based methods, as well as organic solar cell fabrication and testing. He has also worked with gamma and ion irradiation processes.

šŸ† Awards & Recognitions

While the list of formal recognitions is still growing, Dr. Sahu’s innovations have earned academic distinction and publication in reputed journals, particularly in material physics and applied sciences. His interdisciplinary work has contributed both to fundamental physics and real-world applications, including imaging sensors for nuclear reactors and cost-effective educational lab setups.

Publication Top Notes

  • Title: Ferroelectric materials for high temperature piezoelectric applications
    Authors: U De, KR Sahu, A De
    Journal: Solid State Phenomena, Vol. 232, pp. 235–278
    Citations: 54
    Year: 2015

  • Title: Characterization of new natural cellulosic fibers from Cyperus compactus Retz. (Cyperaceae) Plant
    Authors: Anup Kumar Bhunia, Dheeman Mondal, Kriti Ranjan Sahu, Amal Kumar Mondal
    Journal: Carbohydrate Polymer Technologies and Applications, Vol. 5, 100286
    Citations: 29
    Year: 2023

  • Title: Structural characterization of orthorhombic and rhombohedral lead meta-niobate samples
    Authors: KR Chakraborty, KR Sahu, A De, U De
    Journal: Integrated Ferroelectrics, Vol. 120(1), pp. 102–113
    Citations: 29
    Year: 2010

  • Title: Thermal characterization of piezoelectric and non-piezoelectric Lead Meta-Niobate
    Authors: KR Sahu, U De
    Journal: Thermochimica Acta, Vol. 490(1–2), pp. 75–77
    Citations: 22
    Year: 2009

  • Title: Spectroscopic Investigation of Degradation Reaction Mechanism in γ-Rays Irradiation of HDPE
    Authors: SG Prasad, C Lal, KR Sahu, A Saha, U De
    Journal: Biointerface Research in Applied Chemistry, Vol. 11(2), pp. 9405–9419
    Citations: 19
    Year: 2021

  • Title: Dielectric Properties of PbNbā‚‚O₆ up to 700°C from Impedance Spectroscopy
    Authors: KR Sahu, U De
    Journal: Journal of Materials, Vol. 2013(1), Article ID 702946
    Citations: 19
    Year: 2013

  • Title: Role of Nbā‚‚Oā‚… phase in the formation of piezoelectric PbNbā‚‚O₆
    Authors: KR Sahu, U De
    Journal: Thermochimica Acta, Vol. 589, pp. 25–30
    Citations: 17
    Year: 2014

  • Title: Dielectric and thermal investigations on PbNbā‚‚O₆ in pure piezoelectric phase and pure non-piezoelectric phase
    Authors: U De, KR Sahu, KR Chakraborty, SK Pratihar
    Journal: Integrated Ferroelectrics, Vol. 119(1), pp. 96–109
    Citations: 16
    Year: 2010

  • Title: Synthesis and study of electroactive nanoparticles and their polymer composites for novel applications
    Authors: N Dutta Gupta, KR Sahu, I Das, A De, U De
    Journal: Indian Journal of Physics, Vol. 84, pp. 1413–1419
    Citations: 14
    Year: 2010

  • Title: Polymer Composites for Flexible Electromagnetic Shields
    Authors: KR Sahu, U De
    Journal: Macromolecular Symposia: Advance Science News, Vol. 381(1), Article 1800097
    Citations: 9
    Year: 2018

ConclusionĀ 

Dr. Kriti Ranjan Sahu is highly suitable for the Best Researcher Award. His scientific excellence, interdisciplinary work, academic leadership, and innovation in material science align well with the award’s objectives. He represents a model researcher whose work pushes the boundaries of applied physics while contributing meaningfully to science, education, and industry. With minor steps to globalize his efforts and protect intellectual property, his profile would reach even greater heights.

Xuan Fang | Semiconductor Materials | Best Researcher Award

Dr. Xuan Fang | Semiconductor Materials | Best Researcher Award

Research Fellow at State Key Laboratory of High Power Semiconductor Lasers, School of Physics, Changchun University of Science and Technology, China.

Dr. Xuan Fang šŸŽ“ is a dedicated Research Fellow at the State Key Laboratory of High Power Semiconductor Lasers, Changchun University of Science and Technology šŸ‡ØšŸ‡³. Specializing in advanced optoelectronic materials and devices šŸ”¬, she focuses on structural engineering, low-dimensional materials, and MBE growth techniques āš™ļø. Her pioneering monolayer-distributed epitaxy strategy has resolved key challenges in III–V alloy semiconductor growth 🧪. Dr. Fang’s innovations, including mid-IR emitting ā€œsuperalloyā€ structures šŸ’”, push the limits of bandgap engineering and open new pathways for next-generation photonic devices 🌐. She is also a prolific inventor with multiple national patents šŸ….

Professional Profile:

Scopus

šŸ† Suitability for Best Researcher Award – Dr. Xuan Fang

Dr. Xuan Fang exhibits all the hallmarks of a top-tier researcher in the field of advanced optoelectronic materials and semiconductor device engineering. Her proven research leadership, technological innovation, and impactful contributions to semiconductor materials, MBE growth techniques, and mid-infrared photonics make her an ideal candidate for this prestigious recognition.

šŸ“˜ Education & Experience

  • šŸŽ“ Ph.D. in Optoelectronics or Physics – Specializing in semiconductor materials and nanotechnology.

  • 🧪 Research Fellow, State Key Lab of High Power Semiconductor Lasers, Changchun University of Science and Technology (Current).

  • šŸ’¼ Principal Investigator in over 10 national and regional research projects, including NSFC, China Postdoc Foundation, and industry collaborations.

  • 🧠 Expert in MBE growth, energy band prediction, low-dimensional materials, and mid-IR photonic devices.

  • šŸ“ˆ Published multiple high-impact papers in SCI-indexed journals (e.g., Rare Metals, Nano Research).

  • šŸ› ļø Holds six national patents on semiconductor device structures and epitaxy methods.

šŸš€ Professional DevelopmentĀ 

Dr. Xuan Fang’s professional journey is marked by innovative thinking and technological excellence šŸŽÆ. As Principal Investigator on numerous competitive projects šŸŽ“, she has developed and led groundbreaking work on III-V superlattices, mid-IR lasers, and photodetectors šŸ’”. She bridges fundamental science and real-world applications, contributing novel concepts like monolayer-distributed epitaxy and high-responsivity avalanche photodiodes šŸ”. Through collaborative research and consistent experimentation, she fosters cutting-edge semiconductor advancements 🧪. Her dedication to research excellence, coupled with intellectual property creation šŸ“‘, reflects a career built on curiosity, precision, and scientific impact šŸŒ.

šŸ”¬ Research Focus Category

Dr. Fang’s research lies at the intersection of advanced semiconductor materials and device engineering āš™ļø. Her focus spans low-dimensional systems, type-II superlattices, quantum heterostructures, and mid-infrared optoelectronics šŸ”¦. She specializes in molecular beam epitaxy (MBE) to develop multicomponent alloy structures with high luminescence and carrier lifetimes 🌈. With deep expertise in energy band structure prediction and device integration, Dr. Fang addresses critical challenges in laser efficiency, detection precision, and material compatibility šŸ”. Her work propels forward-thinking technologies in infrared imaging, sensing, and next-gen photonic integration šŸš€.

šŸ† Awards & Honors

  • 🧠 Principal Investigator for major NSFC and China Postdoc Foundation projects.

  • šŸ„‡ Multiple national patents granted on novel epitaxy methods and optoelectronic devices.

  • 🧪 Recognized for pioneering mid-IR superalloy device structures.

  • šŸ“Š Consistently publishes in high-impact journals indexed in SCI and Scopus.

  • šŸ… Leading innovator in semiconductor structural engineering and optoelectronic integration.

Publication Top Notes

1. Cu-Plasma-Induced Interfacial Engineering for Nanosecond Scale WSā‚‚/CuO Heterojunction Photodetectors

Authors: Tianze Kan, Kaixi Shi, Fujun Liu, Jinhua Li, Xuan Fang
Journal: Advanced Optical Materials, 2025
Summary: This study presents a novel Cu-plasma treatment to engineer the WSā‚‚/CuO interface, significantly boosting carrier dynamics and photoresponse speed. Achieving nanosecond-level response, the device offers enhanced performance for ultrafast photodetection in optoelectronic systems.
Citations: 1

2. Nanoengineering Construction of g-Cā‚ƒNā‚„/Biā‚‚WO₆ S-Scheme Heterojunctions for Enhanced COā‚‚ Reduction and Pollutant Degradation

Authors: Bingke Zhang, Yaxin Liu, Dongbo Wang, Liancheng Zhao, Jinzhong Wang
Journal: Separation and Purification Technology, 2025
Summary: This paper demonstrates a g-Cā‚ƒNā‚„/Biā‚‚WO₆ S-scheme heterojunction that significantly improves photocatalytic COā‚‚ reduction and pollutant degradation. The synergistic interface enhances charge separation and transfer, yielding superior photocatalytic efficiency.
Citations: 17
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3. Plasma-Enhanced Interfacial Electric Field for High-Performance MoSā‚‚/p-Si Photovoltaic Photodetectors

Authors: Wanyu Wang, Kaixi Shi, Jinhua Li, Xueying Chu, Xuan Fang
Journal: ACS Applied Nano Materials, 2024
Summary: The authors explore plasma treatment to create a strong interfacial electric field in MoSā‚‚/p-Si heterostructures, enabling enhanced light absorption and charge carrier dynamics for high-performance photovoltaic photodetection.
Citations: 1

4. High-Performance Self-Driven Broadband Photoelectrochemical Photodetector Based on rGO/Biā‚‚Teā‚ƒ Heterojunction

Authors: Chenchen Zhao, Yangyang Liu, Dongbo Wang, Liancheng Zhao, Jinzhong Wang
Journal: Nano Materials Science, 2024 | Open Access
Summary: A reduced graphene oxide (rGO)/Biā‚‚Teā‚ƒ heterojunction-based self-powered photodetector is introduced, featuring broadband detection and fast photoresponse, promising for next-gen PEC optoelectronics.
Citations: 3

5. Al@Alā‚‚Oā‚ƒ Core-Shell Plasmonic Design for Solving High Responsivity–Low Dark Current Tradeoff in MoSā‚‚ Photodetectors

Authors: Ziquan Shen, Wanyu Wang, Zhe Xu, Xuan Fang, Mingze Xu
Journal: Applied Physics Letters, 2024
Summary: By integrating Al@Alā‚‚Oā‚ƒ core-shell nanostructures, this study mitigates the tradeoff between responsivity and dark current in MoSā‚‚ photodetectors, enhancing device performance through plasmonic effects.
Citations: 2

6. Design of a Self-Powered 2D Te/PtSeā‚‚ Heterojunction for Room-Temperature NIR Detection

Authors: Fengtian Xia, Dongbo Wang, Wen He, Lihua Liu, Liancheng Zhao
Journal: Journal of Materials Chemistry C, 2024
Summary: This paper introduces a novel 2D Te/PtSeā‚‚ heterojunction photodetector capable of room-temperature NIR sensing. The self-powered device exhibits low power consumption, high sensitivity, and stability.
Citations: 1

🧾 Conclusion

Dr. Xuan Fang is not only a prolific and innovative researcher but also a strategic thinker with a rare blend of academic excellence, technical innovation, and practical relevance. Her pioneering work in mid-IR optoelectronics, mastery of semiconductor growth technologies, and tangible contributions through patents and publications establish her as a top contender for the Best Researcher Award.

Angelica Rocco | Building Materials | Women Researcher Award

Dr. Angelica Rocco | Building Materials | Women Researcher Award

Orcid Profile

Educational Details

Dr. Angelica Rocco has a rich educational background centered on architecture and sustainable design. She participated in the International Workshop for PhD Students Water & Cities: Ecological Transition Through Water Saving and Management organized by UNISCAPE at the University of Naples Federico II in 2022. She earned a II Level Master in Architecture and Design for Internal Areas – Reconstruction of Small Countries from the Department of Architecture (DIARC) at the same university, where she completed her thesis titled The Head of the Skein: Interweaving of Ancient Knowledge and Flavors on the Traces of the Ancient Wool Route under the supervision of Prof. Adele Picone, achieving the highest evaluation of 110/110.

Dr. Rocco also holds a Master’s Degree in Building Engineering Architecture from the University of Naples Federico II, completed in July 2019. Her thesis, supervised by Prof. Dora Francese and co-supervised by Prof. Paulo J. MendonƧa from the University of Minho (Portugal), explored Tensile Structures and Other Materials for Sustainable Architecture in Guimaraes (Portugal) – Social Housing, and she earned a final evaluation of 107/110. Additionally, she completed an Annual University Perfection Diploma in CLIL Methodology in Secondary School Education with English Reference from Dante Alighieri University for Foreigners in 2021, again achieving top marks of 110/110.

Her academic journey also includes professional training through a three-year program on initial teaching and internships (FIT) at the University of Naples Federico II (2017/2018), as well as participation in the Erasmus+ Program at the University of Minho, Portugal, during the 2015/2016 academic year. She began her educational path by earning a Scientific High School Diploma from L. Da Vinci Scientific High School in Vallo della Lucania, Italy, in 2003, graduating with a final score of 86/100.

Professional Experience

Technology Teacher (A060): First Level Secondary School, Naples (2020 – Present).

Laboratory Teacher for Textile and Embroidery: IFTS Training Center, Regenerative Tourism (March – June 2006).

Expert in Traditional Processing and Conservation: IFTS Training Center, Regenerative Tourism (March – June 2006).

Teaching Collaboration: Since 2019, Dr. Rocco has been collaborating with the University of Naples Federico II in teaching activities, particularly in the architectural technology sector (ICAR/12). She has worked closely with Prof. Paola De Joanna, Prof. Dora Francese, and Prof. Antonio Passaro.

Research Interest

Sustainable Architecture and Building Materials: Focus on tensile structures and the integration of eco-friendly materials for social housing projects.

Water Management in Urban Systems: Engaged in research on ecological transitions through water saving and sustainable urban design.

Conservation of Traditional Techniques: Specialization in traditional textile processing and its role in regenerative tourism.

Memberships

IEEE (Institute of Electrical and Electronics Engineers) since June 2023.

Eudoxia Research University, USA & India: International Innovation Program since January 2024.

Top Notable Publications

Adobe Blocks Reinforced with Vegetal Fibres: Mechanical and Thermal Characterisation
Authors: Angelica Rocco
Year: 2024
DOI: 10.3390/buildings14082582
Source: Buildings, August 22, 2024.

RETE DELLE GRANDI MACCHINE A SPALLA ITALIANE: ESTENSIONE DEL PATRIMONIO IMMATERIALE DAL DIVE INTO ICH UNESCO
Authors: Angelica Rocco
Year: 2023
Source: Los cuadernos del ReUSO, November 21, 2023.

Bibliometric Review of Building Material Assessment for Energy Efficiency in Urban Digital Twins
Authors: Angelica Rocco
Year: 2023
DOI: 10.55529/ijasm.35.22.32
Source: International Journal of Applied and Structural Mechanics, September 13, 2023.

Use of Vegetable Materials for Temporary Structures and Infrastructures
Authors: Angelica Rocco
Year: 2023
Source: Mediterranean Architecture and the Green-Digital Transition, September 8, 2023, pp. 313–324.

GIS Model of Vegetable Fibre Building Materials
Authors: Angelica Rocco
Year: 2023
Source: ICBBM 2023 5th International Conference on Bio-Based Building Materials (RILEM), June 20, 2023.

Bio-Based Building Materials
Authors: Angelica Rocco
Year: 2023
DOI: 10.1007/978-3-031-33465-8
ISBN: 9783031334641, 9783031334658
Source: Springer Nature Switzerland, 2023.

Farm to Fork e BiodiversitĆ : nuove opportunitĆ  per il settore delle costruzioni dagli scarti delle filiere cerealicole
Authors: Angelica Rocco
Year: 2023
Source: Urbanistica Informazioni, 2023.

Paesaggio rurale, economia circolare e risorse vegetali: l’architettura dei Mulini ad acqua
Authors: Angelica Rocco
Year: 2023
Source: A cento anni dalla legge Croce. Nuove prospettive sul paesaggio, Department of Architecture, University of Naples Federico II, 2023.

Dalla Valle della BiodiversitĆ  Brembana per una rinascita della filiera del lino
Authors: Angelica Rocco
Year: 2023
Source: GIS Day 2022. Il GIS per il governo e la gestione del territorio, 2023.

On the Trail of the Ancient ā€˜The Wool Route’: Enhancement Proposal for the Campania Region in Italy
Authors: Angelica Rocco
Year: 2023
Source: GIS Day 2022. Il GIS per il governo e la gestione del territorio, 2023.

Copertina Rivista SMC N.16 | 2022 Digital and Completion Procedure
Authors: Angelica Rocco
Year: 2022
Source: Luciano Editore, December 2022.

Waterfront Renaissance in Bagnoli (Italy)
Authors: Angelica Rocco
Year: 2022
Source: Proceedings of the Xth edition of the ReUSO – Documentation, Restoration and Reuse of Heritage, November 2, 2022.

PRACTICABILITY STUDY FOR THE DEVELOPMENT OF A WOOL SUPPLY CHAIN IN CAMPANIA REGION, STUDIO DI FATTIBILITƀ PER LO SVILUPPO DI UNA FILIERA DELLA LANA NELLA REGIONE CAMPANIA
Authors: Angelica Rocco
Year: 2022
Source: Sustainable Mediterranean Construction, 2022.
EID: 2-s2.0-85160223775
ISSN: 24208213, 23851546.

Conclusion

Based on her diverse educational background, active teaching roles, and research contributions in architecture, sustainability, and urban systems, Dr. Angelica Rocco is well-suited for the Research for Best Researcher Award. Her work on sustainable architecture and her integration of traditional knowledge with modern engineering solutions make her a strong candidate for this award.

 

Mozahar Ali | Computational Materials | Best Researcher Award

Assis Prof Dr. Mozahar Ali | Computational Materials | Best Researcher Award

Orcid ProfileĀ 

Google Scholar Profile

Educational Details:

md. mozahar ali holds a Ph.D. in Engineering with a specialization in Functional Material Systems from the University of Yamanashi, Japan, awarded in 2017. He also obtained a Postgraduate Diploma in Condensed Matter Physics from the Abdus Salam International Centre for Theoretical Physics (ICTP) in Italy in 2011. His academic excellence is further demonstrated by his M.Sc. in Solid State Physics, where he achieved 1st class honors, ranking 4th in his class at the University of Rajshahi in 2007. He earned his B.Sc. (Hons.) in Physics from the same university, graduating with 1st class honors and securing the 3rd position in 2006. Additionally, he completed his Higher Secondary Certificate (H.S.C.) in Science from Govt. A. H. College, Bogura, with a 1st Division in 2002, and his Secondary School Certificate (S.S.C.) in Science from A. U. C. M. High School, Bogura, also with a 1st Division in 2000.

 

Professional Experience

md. mozahar ali has accumulated extensive academic experience through various positions in higher education. He currently serves as an Assistant Professor at the American International University-Bangladesh (AIUB) since May 2022. Prior to this, he held the position of Assistant Professor in the Department of Basic Sciences at Primeasia University, Dhaka, from October 2021 to May 2022. His experience also includes serving as an Assistant Professor in the Department of Mathematics and Natural Sciences at BRAC University from May 2019 to July 2020, and earlier as an Assistant Professor at AIUB from May 2018 to April 2019. Additionally, he worked as an Assistant Professor at the International Islamic University Chittagong (IIUC) from July 2017 to May 2018 and as a Lecturer at the same institution from March 2013 to September 2013. In 2019, he further enhanced his teaching skills by completing a professional training program in Theory and Practice of Learner-Centered Teaching at BRAC University.

Research Interest

md. mozahar ali’s research focuses on:

Crystal growth and characterization of functional oxides

Computational physics

Ab-initio studies of metal alloys, semiconductors, and superconductors

He has published a significant body of work and has been recognized with several awards, including the United Group Research Award in 2019 for outstanding research in General Science and Engineering and a gold medal for academic excellence during his B.Sc. (Hons.) studies.

Top Notable Publications

Superconducting Double Perovskite Bismuth Oxide Prepared by a Low‐Temperature Hydrothermal Reaction
MHK Rubel, A Miura, T Takei, N Kumada, M Mozahar Ali, M Nagao, …
Angewandte Chemie 126 (14), 3673-3677, 2014
Citations: 101

Hydrothermal synthesis, crystal structure, and superconductivity of a double-perovskite Bi oxide
MHK Rubel, T Takei, N Kumada, MM Ali, A Miura, K Tadanaga, K Oka, …
Chemistry of Materials 28 (2), 459-465, 2016
Citations: 68

Hydrothermal synthesis of a new Bi-based (Ba<sub>0.82</sub>K<sub>0.18</sub>)(Bi<sub>0.53</sub>Pb<sub>0.47</sub>)O<sub>3</sub> superconductor
MHK Rubel, T Takei, N Kumada, MM Ali, A Miura, K Tadanaga, K Oka, …
Journal of Alloys and Compounds 634, 208-214, 2015
Citations: 43

Physical properties of a novel boron-based ternary compound Ti<sub>2</sub>InB<sub>2</sub>
MM Ali, MA Hadi, I Ahmed, A Haider, A Islam
Materials Today Communications 25, 101600, 2020
Citations: 37

Firstāˆ’ principles study: Structural, mechanical, electronic and thermodynamic properties of simpleāˆ’ cubicāˆ’ perovskite (Ba<sub>0.62</sub>K<sub>0.38</sub>)(Bi<sub>0.92</sub>Mg<sub>0.08</sub>)O<sub>3</sub>
MHK Rubel, MM Ali, MS Ali, R Parvin, MM Rahaman, KM Hossain, …
Solid State Communications 288, 22-27, 2019
Citations: 31

Hydrothermal Synthesis, Structure, and Superconductivity of Simple Cubic Perovskite (Ba<sub>0.62</sub>K<sub>0.38</sub>)(Bi<sub>0.92</sub>Mg<sub>0.08</sub>)O<sub>3</sub> with Tc ∼ 30 K
MHK Rubel, T Takei, N Kumada, MM Ali, A Miura, K Tadanaga, K Oka, …
Inorganic Chemistry 56 (6), 3174-3181, 2017
Citations: 30

New superconductor (Na<sub>0.25</sub>K<sub>0.45</sub>)Ba<sub>3</sub>Bi<sub>4</sub>O<sub>12</sub>: A first-principles study
MS Ali, M Aftabuzzaman, M Roknuzzaman, MA Rayhan, F Parvin, MM Ali, …
Physica C: Superconductivity and its Applications 506, 53-58, 2014
Citations: 29

DFT investigations into the physical properties of a MAB phase Cr<sub>4</sub>AlB<sub>4</sub>
MM Ali, MA Hadi, ML Rahman, FH Haque, A Haider, M Aftabuzzaman
Journal of Alloys and Compounds 821, 153547, 2020
Citations: 25

Influence of heavy Hf doping in CeO<sub>2</sub>: prediction on various physical properties
KM Hossain, SK Mitro, SA Moon, MM Ali, S Chandra, MA Hossain
Results in Physics 37, 105569, 2022
Citations: 10

Conclusion

In summary, Assist Prof Dr. Md. Mozahar Ali stands out as a highly qualified candidate for the Best Researcher Award due to his exemplary educational background, extensive professional experience, significant research contributions, and alignment with current scientific challenges. His commitment to advancing knowledge in computational materials and his impactful research trajectory make him an excellent choice for this honor.