Mohammad Aadil | Nanotechnology | Best Researcher Award

Mr. Mohammad Aadil | Nanotechnology | Best Researcher Award

Mr. Mohammad Aadil , Sejong University , Pakistan.

Mr. Mohammad Aadil is a passionate researcher specializing in nanotechnology, material science, electrochemistry, and corrosion inhibition. Currently pursuing an M.Sc. in Nanotechnology and Advanced Materials Engineering at Sejong University, South Korea, he focuses on surface modification of light metals using Plasma Electrolytic Oxidation (PEO) for anticorrosive and photocatalytic applications. With prior experience as a Junior Research Engineer at PCSIR, Pakistan, he has contributed to electrical materials testing and compliance with IEC standards. His expertise extends to Metal-Organic Frameworks (MOFs) and Layered Double Hydroxides (LDH) for enhanced material performance. πŸ†βš™οΈ

Publication Profile

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Education & Experience πŸŽ“πŸ› οΈ

πŸ“ Education:
  • M.Sc. in Nanotechnology & Advanced Materials Engineering (2023–2025) – Sejong University, South Korea πŸŽ“πŸ‡°πŸ‡·
  • B.Sc. in Metallurgy & Materials Engineering (2016–2020) – University of the Punjab, Pakistan πŸŽ“πŸ‡΅πŸ‡°
πŸ“ Experience:
  • Graduate Research Assistant (2023–2025) – Sejong University, South Korea πŸ”¬
  • Junior Research Engineer (2021–2022) – PCSIR, Lahore, Pakistan βš™οΈ

Suitability Summary

Mr.Mohammad Aadil has been recognized with the Best Researcher Award for his outstanding contributions to nanotechnology, material science, electrochemistry, and corrosion inhibition. His pioneering research in Plasma Electrolytic Oxidation (PEO) coatings and Metal-Organic Frameworks (MOFs) has significantly advanced surface modification techniques for light metals, enhancing their anticorrosive and photocatalytic properties.

Professional Development πŸš€πŸ”

Mr. Mohammad Aadil has been actively engaged in cutting-edge research in surface modification technologies, electrochemistry, and nanomaterials. His work primarily involves Plasma Electrolytic Oxidation (PEO) coatings on AZ31 magnesium alloy, with a focus on improving corrosion resistance and photocatalytic activity using Metal-Organic Frameworks (MOFs) and Layered Double Hydroxides (LDH). His experience at PCSIR honed his skills in electrical material testing, tensile analysis, and wire insulation analysis. With a keen interest in nanotechnology and sustainable material solutions, he continues to explore advanced material applications for environmental and industrial benefits. 🌱⚑

Research Focus πŸ”¬βš‘

Mr. Mohammad Aadil’s research lies at the intersection of nanotechnology, electrochemistry, and materials engineering. His current work at Sejong University revolves around enhancing light metal surfaces using Plasma Electrolytic Oxidation (PEO) for dual anticorrosive and photocatalytic functions. By incorporating Metal-Organic Frameworks (MOFs) and Layered Double Hydroxides (LDH), he aims to improve corrosion resistance and facilitate environmental remediation by degrading organic pollutants. His expertise also extends to compliance testing of industrial materials, ensuring their adherence to international standards. His research is particularly valuable for automotive, aerospace, and environmental applications. πŸš—βœˆοΈπŸŒ

Awards & Honors πŸ†πŸŽ–οΈ

  • M.Sc. Scholarship Recipient – Sejong University, South Korea πŸ‡°πŸ‡·πŸŽ“
  • Best Research Contribution in Corrosion Studies – Sejong University (2024) πŸ…πŸ”¬
  • Recognized for Excellence in Materials Testing & Compliance – PCSIR, Pakistan (2022) πŸ†βš™οΈ
  • Top 10 Research Presentations in Nanomaterials – University of the Punjab (2020) πŸ…πŸ“’

Publication Top Notes

1️⃣ KMnOβ‚„-Induced Amorphization of ZIF-67 on Plasma Electrolytic Oxidation Coatings for Enhanced Photocatalytic Performance – Coatings (2025) πŸ†
πŸ“– DOI: 10.3390/coatings15030291 | Cited by: N/A

2️⃣ Synergistic Enhancement of Corrosion Resistance and Photocatalytic Activity on AZ31 Mg Alloy Using Chelating Agent-Infused Layered Double Hydroxides Over Plasma Electrolytic Oxidation Coatings – Advanced Composites and Hybrid Materials (2025) πŸ›‘οΈβœ¨
πŸ“– DOI: 10.1007/s42114-024-01123-x | Cited by: N/A

3️⃣ Improving the Photocatalytic Performance of TiOβ‚‚ Coating via the Dual Incorporation of MoOβ‚‚ and Vβ‚‚Oβ‚… by Plasma Electrolytic Oxidation – Surfaces and Interfaces (2025) βš‘πŸ”¬
πŸ“– DOI: 10.1016/j.surfin.2024.105558 | Cited by: N/A

4️⃣ Chemical Incorporation of SiOβ‚‚ into TiOβ‚‚ Layer by Green Plasma Enhancer and Quencher Agents for Synchronized Improvements in the Protective and Bioactive Properties – Nano Materials Science (2024) πŸŒ±πŸ›‘οΈ
πŸ“– DOI: 10.1016/j.nanoms.2024.01.003 | Cited by: N/A

5️⃣ Development of Anti-Corrosive Coating on AZ31 Mg Alloy Modified by MOF/LDH/PEO Hybrids – Journal of Magnesium and Alloys (2024) πŸ—οΈπŸ”¬
πŸ“– DOI: 10.1016/j.jma.2023.12.004 | Cited by: N/A

6️⃣ Innovative Approach to Boosting the Chemical Stability of AZ31 Magnesium Alloy Using Polymer-Modified Hybrid Metal Oxides – Journal of Magnesium and Alloys (2024) πŸ†πŸ›‘οΈ
πŸ“– DOI: 10.1016/j.jma.2023.12.009 | Cited by: N/A

Orkhan Gulahmadov | Nanotechnology | Best Innovation Award

Orkhan Gulahmadov | Nanotechnology | Best Innovation Award

Dr.Orkhan Gulahmadov , Baku State University , Azerbaijan.

Orkhan G. Gulahmadov πŸŽ“ is a dedicated physicist specializing in nanotechnology and self-powered sensors. He holds a Master’s degree in Atomic and Molecular Physics (2020) and is pursuing a Ph.D. in Physics and Technology of Nanostructures (2021-2024) at Baku State University. Currently, he serves as a junior researcher at the Nano Research Laboratory at BSU’s Center of Excellence for Research, Development, and Innovation. His expertise includes triboelectric nanogenerators, nanocomposites, and renewable energy sources. Orkhan has participated in prestigious international projects, conferences, and grants, significantly contributing to advanced materials research. πŸŒπŸ”¬.

Publication Profile

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Education & ExperienceΒ πŸ“šπŸ”¬

  • Master’s in Atomic and Molecular Physics (2020) – Baku State UniversityΒ πŸŽ“
  • Ph.D. in Physics and Technology of Nanostructures (2021-2024) – Baku State UniversityΒ πŸ§ͺ
  • Junior Researcher (2022-Present) – Nano Research Laboratory, BSU 🏒
  • Chief Laboratory Assistant (2020-2022) – Nano Research Center, BSUΒ πŸ›οΈ
  • Laboratory Assistant (2018-2020) – Nano Research Center, BSUΒ πŸ”¬

Suitability Summary

Dr. Orkhan G. Gulahmadov has demonstrated exceptional innovation in nanotechnology, particularly in developing triboelectric nanogenerators for renewable energy applications. His pioneering hybrid energy system, which integrates triboelectric nanogenerators into a smart backpack, has won recognition for its potential to revolutionize portable energy solutions. His research in self-powered sensors and nanocomposite-based materials has expanded the possibilities for energy-efficient devices, making him a perfect candidate for the Best Innovation Award.

Professional DevelopmentΒ πŸŒπŸ”¬

Orkhan Gulahmadov has actively participated in international training, exchange programs, and prestigious research grants. He attended theΒ Winter School at the Joint Institute for Nuclear ResearchΒ in Russia (2019) and theΒ ICESCO workshop on Instrumentation & Reverse EngineeringΒ (2021). His involvement in innovative projects includesΒ Technofest AzerbaijanΒ (2022),Β Teknofest Black Sea 2022Β in TΓΌrkiye, and leading an award-winning project onΒ Hybrid Energy Systems using Triboelectric NanogeneratorsΒ (2023-2024). Orkhan has also secured aΒ Short-Term Scientific Mission (STSM) GrantΒ under COST Action CA19118, focusing on enhancing TENG technology.Β πŸ”¬πŸš€.

Research FocusΒ πŸ”βš‘

Orkhan G. Gulahmadov specializes inΒ nanotechnology, self-powered sensors, and renewable energy solutions. His research includes theΒ development of triboelectric nanogenerators (TENGs), which harness mechanical energy for sustainable power solutions. He also exploresΒ nanocomposite materials, optimizing their efficiency for self-powered sensors in wearable technology and environmental monitoring. His work integratesΒ advanced nanomaterials, such asΒ nylon/CNT films and TiOβ‚‚ nanocomposites, to improve energy harvesting. Through international collaborations and high-impact publications, Orkhan contributes to advancingΒ smart energy solutions, nanomaterials, and innovative sensor technologiesΒ for next-generation applications.Β πŸŒβš‘πŸ”¬.

Awards & HonorsΒ πŸ†πŸŽ–οΈ

  • 2015 & 2017 – “Best Student of the Year” at Baku State UniversityΒ πŸ…
  • 2022 – 3rd Place in theΒ “Socially Oriented Technologies” categoryΒ atΒ Technofest AzerbaijanΒ πŸ₯‰
  • 2023 – “Young Scientist of the Year”Β Award,Β Baku State UniversityΒ πŸŽ“πŸ†
  • 2023-2024 – Winner of theΒ 4th Grant Competition for Education & Research ProjectsΒ by theΒ Small and Medium Business Development Agency of AzerbaijanΒ πŸ’‘πŸ”¬
  • 2022 – Winner of theΒ “Innovative Young Engineers” grantΒ in theΒ “Innovative Youth”Β category of theΒ “Make the Idea Real” 2022Β competition by theΒ Youth Fund of the Republic of AzerbaijanΒ πŸ…
  • 2023 – Winner of theΒ Short-Term Scientific Mission (STSM) GrantΒ fromΒ COST Action CA19118, focusing onΒ Enhancement of Triboelectric NanogeneratorsΒ πŸ’‘πŸŽ“
  • 2022 – Winner in theΒ “Socially Oriented Technologies”Β category atΒ Technofest AzerbaijanΒ πŸ₯‰
  • 2019 – “Winter School”Β participant at theΒ Joint Institute for Nuclear Research, Dubna, RussiaΒ β„οΈπŸŒ

Publication Top Notes

  • πŸ“œΒ Development of Nylon/Fe₃Oβ‚„ Nanocomposite Triboelectric Nanogenerators for Self‐Powered Transmission Line Monitoring Applications – Energy & Environmental Materials, 2025, cited by 0.
  • ⚑ Gait analysis by using electric signals from a triboelectric nanogenerator – Engineering Research Express, 2022, cited by 7.
  • πŸ”¬Β Enhancement of triboelectric nanogenerators with nylon/TiOβ‚‚ nanocomposite films – MRS Communications, 2024, cited by 5.
  • 🌬️ The wind‐driven Scotch yoke‐based triboelectric nanogenerator system for energy harvesting – International Journal of Energy Research, 2022, cited by 4.
  • πŸ—οΈΒ Enhancement of performance of triboelectric generators by introduction of micro-and nano-structures on triboelectric films – Journal of Materials Science: Materials in Electronics, 2021, cited by 3.
  • βš™οΈΒ Investigating the effect of variation of TiOβ‚‚ nanoparticle concentration on the performance of nylon/TiOβ‚‚ nanocomposite-based TENG – Journal of Ovonic Research, 2024, cited by 0.
  • πŸ§ͺΒ Enhancing performance of triboelectric nanogenerators by using titanium oxide/polyvinyl chloride nanocomposite films – 7th International Conference Modern Trends in Physics, 2021, cited by 7.
  • πŸ”ŽΒ Triboelectric Generators Based on Nylon and Structured Silicon – 2nd International Science and Engineering Conference, 2021, cited by 2.
  • ⚑ Efficient and continuous generation of electricity from triboelectric nanogenerators operated in the contact-separation mode by a Scotch yoke system – 6th International Conference β€œNanotechnology”, year not specified.

 

Jing Xu | Nanotechnology | Best Researcher Award

Jing Xu | Nanotechnology | Best Researcher Award

Dr. Jing Xu , Guizhou University, China.

Publication profile

Scopus

Education and Experience

  • πŸŽ“Β Ph.D. in Materials Science (2019) – University of Siegen, Germany
  • 🏫 Associate Professor (2020-present) – Guizhou University, China
  • πŸ”¬Β Researcher (2015-2020) – University of Siegen, Germany
  • 🏒 Researcher (2014) – Fraunhofer ISE, Germany
  • 🏒 Researcher (2013-2014) – Karlsruhe Institute of Technology, Germany

Suitability For The Award

Dr. Jing Xu is an outstanding candidate for the Best Researcher Award due to his significant contributions to the fields of materials science and nanotechnology, particularly in carbon-based materials and their applications in energy storage and environmental technology. Currently serving as an associate professor at Guizhou University, his academic journey spans prestigious institutions in Germany, including the University of Siegen, Fraunhofer ISE, and Karlsruhe Institute of Technology, reflecting his international expertise and dedication to advancing material and surface technology.

Professional DevelopmentΒ 

Awards and HonorsΒ 

  • πŸ†Β Outstanding Research Award – University of Siegen
  • πŸ…Β Best Paper Award – Advanced Energy Materials (2019)
  • πŸŽ–Β Innovation in Water Treatment Award – Super DiaCoat GmbH
  • πŸ…Β Recognition for Excellence in Supercapacitor Research – ChemElectroChem
  • πŸ†Β Top Innovator Award – Fraunhofer ISE

Publications

  • Cauliflower-like Ni/NiCoP@Boron-doped diamond composite electrodes for high-performance symmetric supercapacitorsΒ | Diamond and Related Materials, 2024 | 0 citations 🌟
  • Hierarchical nickel phosphide/carbon nanofibers for high performance pseudocapacitorsΒ | Diamond and Related Materials, 2024 | 0 citationsΒ πŸš€
  • Boron-doped diamond decorated with metal-organic framework-derived compounds for high-voltage aqueous asymmetric supercapacitorsΒ | Carbon, 2024 | 0 citationsΒ πŸ’Ž
  • A low-temperature-tolerant gel polymer electrolyte for long-lasting Zn-ion hybrid supercapacitors and Zn-I2 batteriesΒ | Journal of Energy Storage, 2024 | 0 citations ❄️
  • Synthesis of long-chain aliphatic poly(Ξ²-thioester)s via thiol-Michael polyaddition and their applications in noble metal recovery and information encryptionΒ | European Polymer Journal, 2024 | 0 citationsΒ πŸ”
  • Construction of strengthened crosslinked polymer coating using liquid-like nanoparticle on polyphenylene sulfide nonwoven as separator: Improved cycling performance in lithium-ion batteryΒ | Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024 | 0 citationsΒ πŸ”‹
  • Eutectogel with (NH4)2SO4-Based Deep Eutectic Solvent for Ammonium-Ion SupercapacitorsΒ | ACS Sustainable Chemistry and Engineering, 2024 | 6 citations ♻️
  • Gel Polymer Electrolytes Based on Polyvinyl Alcohol for Zinc-Ion Hybrid SupercapacitorsΒ | Polymeric Materials Science and Engineering, 2024 | 0 citations 🌐

Mohammed Muzibur Rahman | Nanotechnology | Best Researcher Award

Mohammed Muzibur Rahman | Nanotechnology | Best Researcher Award

Dr. Mohammed Muzibur Rahman, King Abdulaziz University, Saudi Arabia.

Dr. Mohammed Muzibur Rahman is a renowned professor at King Abdulaziz University, Saudi Arabia, with expertise in electrochemistry, nanotechnology, and chemical sensorsΒ βš›οΈ. He has authored over 599 research articles, 12 patents, 23 books, and 44 book chaptersΒ πŸ“š. His work has earned him global recognition, including placement in the top 2% of scientists globally from 2017 to 2024 🌍. Dr. Rahman’s contributions to chemistry and materials science have made a significant impact on the academic community, with a citation h-index of 77 and over 24,750 Google Scholar citations.Β πŸ“Š

Publication profile

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Education:

  • Ph.D.Β in Chemistry, Chonbuk National University, South Korea (2007)Β πŸŽ“
  • M.Sc.Β in Physical Chemistry, Shahjalal University of Science & Technology, Bangladesh (2002)Β πŸ§ͺ
  • B.Sc.Β in Chemistry, Shahjalal University of Science & Technology, Bangladesh (1999) 🧬

Experience:

  • Professor, King Abdulaziz University (Since 2019)Β πŸ‘¨β€πŸ«
  • Associate Professor, King Abdulaziz University (2014-2019)Β πŸ‘¨β€πŸŽ“
  • Assistant Professor, King Abdulaziz University (2011-2014)Β πŸ§‘β€πŸ”¬
  • Post-doctoral Fellow, Toyohashi University of Technology, Japan (2008-2009)Β πŸ§‘β€πŸ”¬
  • Post-doctoral Fellow, Pusan National University, South Korea (2007-2008)Β βš›οΈ

Suitability for The Award

Dr. Mohammed Muzibur Rahman is an exemplary candidate for the Best Researcher Award, demonstrating significant contributions to the fields of chemistry, electrochemistry, and nanotechnology throughout his academic and professional career. His credentials and accomplishments provide compelling evidence of his suitability for this recognition.

Professional Development (πŸ’ΌπŸ”¬)

Research Focus 🧫🧬

Awards and Honors (πŸ†πŸŽ–οΈ)

  • πŸ†Β Top 2% Scientist-list (2018-2024 publication records)
  • πŸ’‘Β BK21 Post-Doctoral Fellowship (Pusan National University, South Korea)
  • 🌍 VBL Post-Doctoral Fellowship (Toyohashi University of Technology, Japan)
  • πŸŽ“Β Best MS Student Award (Wahab Memorial Scholarship, London, UK)
  • πŸ“ˆΒ Recognized among the Top 2% scientists globally based on career-long and single-year research impact
  • πŸ…Β Multiple research awards for high-impact publications in leading journals

PublicationΒ 

  • A TiO2 grafted bamboo derivative nanocellulose polyvinylidene fluoride (PVDF) nanocomposite membrane for wastewater treatment by a photocatalytic process – Materials Advances, 2024, DOI: 10.1039/D4MA00716F, cited by 16Β πŸ§ͺ🌍
  • Architectural design and affecting factors of MXene-based textronics for real-world application – RSC Advances, 2024, DOI: 10.1039/D4RA01820F, cited by 12Β πŸŒπŸ“±
  • Development of an efficient electrochemical sensing platform based on ter-poly(luminol-o-anisidine-o-toluidine)/ZnO/GNPs nanocomposites for the detection of antimony (Sb3+) ions – Analytical Methods, 2024, DOI: 10.1039/D4AY00472H, cited by 18Β πŸ§ͺπŸ”¬
  • Enhancing the water splitting performance of a reduced graphene oxide–platinum nanoparticle hybrid using an intercalating ethylenediamine polar space group – Journal of Materials Chemistry C, 2024, DOI: 10.1039/D4TC00978A, cited by 22Β πŸŒπŸ”‹
  • Recent advances in synergistic use of GQD-based hydrogels for bioimaging and drug delivery in cancer treatment – Journal of Materials Chemistry B, 2024, DOI: 10.1039/D4TB00024B, cited by 24 🧬🎯
  • Sensitive Cr3+ sensor based on novel poly(luminol-co-1,8-diaminonaphthalene)/CeO2/MWCNTs nanocomposites – RSC Advances, 2024, DOI: 10.1039/D4RA00542B, cited by 10Β πŸ§ͺπŸ”
  • Binary Y/Fe-modified multiwall carbon nanotube composite for sensitive detection of nitrite – Materials Chemistry and Physics, 2024, DOI: 10.1016/j.matchemphys.2024.130000, cited by 8Β πŸ§ͺ🌑️
  • Efficient 2-Nitrophenol determination based on ultra-sonochemically prepared low-dimensional Au-nanoparticles decorated ZnO-chitosan nanocomposites by linear sweep voltammetry – Journal of Science: Advanced Materials and Devices, 2024, DOI: 10.1016/j.jsamd.2024.100727, cited by 14 🌱πŸ§ͺ