Pankaj Kumar Mishra | Materials Science | Research Excellence Award

Research Excellence Award

Pankaj Kumar Mishra
Affiliation Amity University Madhya Pradesh
Country India
Scopus ID 58592103400
Documents 17
Citations 286
h-index 5
Subject Area Materials Science
Event International Academic Achievements & Awards
ORCID 0000-0003-2957-9936

Pankaj Kumar Mishra

Amity University Madhya Pradesh, India

Pankaj Kumar Mishra is a researcher associated with Amity University Madhya Pradesh whose scholarly work primarily focuses on materials science, nanomaterials, electronic materials, transport properties, and computational investigations of functional materials. His Scopus-indexed research portfolio demonstrates sustained contributions through peer-reviewed journal publications and measurable citation impact. The combination of publications, citations, and interdisciplinary research activity reflects continued engagement with contemporary scientific challenges in condensed matter physics and materials engineering.[1]

Abstract

This article summarizes the academic profile and scientific achievements of Pankaj Kumar Mishra within the field of Materials Science. His research includes theoretical and computational investigations of electronic transport phenomena, thermal behavior of oxide compounds, nanostructured materials, and functional electronic systems. His publications demonstrate interdisciplinary collaboration while contributing to peer-reviewed international journals indexed in Scopus.[2]

Keywords

Materials Science, Electronic Transport, Nanomaterials, Thermal Properties, Computational Modeling, Semiconductor Materials, Density Functional Theory

Introduction

Research in advanced materials has become increasingly important because of its influence on energy technologies, nanoelectronics, sensing devices, and sustainable engineering. Pankaj Kumar Mishra has contributed to this evolving discipline through investigations into electronic behavior, adsorption mechanisms, and thermal characteristics of advanced compounds. These studies support broader scientific understanding while complementing experimental and theoretical developments reported in international literature.[3]

Research Profile

According to available Scopus metrics, the researcher has authored 17 indexed documents receiving 286 citations with an h-index of 5. His publication record reflects collaboration across materials science, condensed matter physics, nanotechnology, and computational chemistry. These metrics demonstrate sustained scholarly visibility within indexed academic literature.[1]

Research Contributions

  • Investigated thermal properties of europium, dysprosium, and gadolinium oxide compounds using theoretical approaches.[2]
  • Studied adsorption-driven electronic transport behavior of boron nitride sheets for ammonia gas sensing applications.[3]
  • Reported electroactive characteristics of pure and malachite green doped PVK materials with potential electronic applications.[4]
  • Contributed to interdisciplinary materials research integrating computational modeling with experimental observations.

Publications

  1. Thermal Properties of EuO, DyO and GdO Compounds. Journal of Nano- and Electronic Physics (2022). DOI: 10.21272/jnep.14(2).02027.
  2. Electronic transport properties of BN sheet on adsorption of ammonia (NH3) gas. Journal of Molecular Modeling (2015). DOI: 10.1007/s00894-015-2595-3.
  3. Eletroactive properties of pure and malachite green doped PVK samples. Advanced Science Letters (2015). DOI: 10.1166/asl.2015.6377.

Research Impact

The research portfolio illustrates continued engagement with computational materials science and functional electronic materials. Citation indicators demonstrate that published work has attracted attention within the international scientific community. Contributions concerning gas adsorption, oxide compounds, and electroactive polymers provide useful references for subsequent investigations in materials science and nanotechnology.[1]

Award Suitability

Based on publicly available scholarly metrics and peer-reviewed publication records, Pankaj Kumar Mishra demonstrates attributes consistent with consideration for a Research Excellence Award. These include sustained publication activity, measurable citation impact, interdisciplinary collaboration, and contributions to internationally indexed scientific journals. Such achievements align with common academic evaluation criteria emphasizing research quality, scholarly influence, and continued scientific productivity.[1]

Conclusion

Pankaj Kumar Mishra has established a recognized scholarly profile within materials science through peer-reviewed publications, interdisciplinary research, and measurable citation performance. His investigations into advanced electronic materials and computational modeling contribute to ongoing developments in nanoscience and condensed matter research while supporting his academic recognition within the broader scientific community.[1]

References

  1. Elsevier. (n.d.). Scopus Author Profile: Pankaj Kumar Mishra, Author ID 58592103400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58592103400
  2. Mishra, P. K., et al. (2022). Thermal Properties of EuO, DyO and GdO Compounds (Теплові властивості сполук EuO, DyO та GdO). Journal of Nano- and Electronic Physics, 14(2), 02027. DOI: https://doi.org/10.21272/jnep.14(2).02027
  3. Mishra, P. K., et al. (2015). Electronic transport properties of BN sheet on adsorption of ammonia (NH3) gas. Journal of Molecular Modeling, 21.
    DOI: https://doi.org/10.1007/s00894-015-2595-3
  4. Mishra, P. K., et al. (2015). Eletroactive properties of pure and malachite green doped PVK samples. Advanced Science Letters, 21.
    DOI: https://doi.org/10.1166/asl.2015.6377
  5. ORCID. (n.d.). ORCID Record: Pankaj Kumar Mishra.
    https://orcid.org/0000-0003-2957-9936

Muhammad Yousif | Materials Science | Innovative Research Award

Innovative Research Award

Muhammad Yousif
Affiliation Qinghai Institute of Saltlakes Chinese Academy of Sciences
Country China
Scopus ID 57211409200
Documents 19
Citations 156
h-index 7
Subject Area Materials Science
Event International Academic Achievements & Awards
ORCID 0000-0002-9151-0748

Muhammad Yousif

Institution: Qinghai Institute of Saltlakes Chinese Academy of Sciences, China

Muhammad Yousif is a researcher in the field of Materials Science, with scholarly contributions focused on advanced functional materials, nanotechnology, wearable sensing systems, environmental remediation, and smart textile engineering. His research integrates interdisciplinary approaches involving nanocomposites, graphene-derived materials, hydrogel-based sensing platforms, and textile-based electronic devices to address scientific and engineering challenges in environmental sustainability and intelligent materials development.[1]

Abstract

Muhammad Yousif has established a research profile centered on advanced materials engineering with applications in environmental treatment, smart sensing technologies, and wearable electronics. His publications demonstrate continued investigation into graphene-based nanomaterials, textile-integrated sensors, hydrogel composites, and functional fibers that contribute to modern materials science. The combination of environmental engineering principles and intelligent material design illustrates an interdisciplinary research approach consistent with emerging international trends in sustainable technology.[1]

Keywords

Materials Science; Nanotechnology; Graphene; Reduced Graphene Oxide; Smart Textiles; Wearable Electronics; Hydrogel Composites; Textile Sensors; Environmental Remediation; Dye Removal; Functional Fibers; Flexible Electronics; Advanced Nanocomposites.

Introduction

Recent developments in materials science increasingly emphasize multifunctional materials capable of simultaneously addressing environmental, biomedical, and electronic applications. Muhammad Yousif’s research contributes to these objectives through investigations into conductive textile architectures, responsive hydrogel systems, nanocomposite catalysts, and environmentally sustainable adsorption technologies. His scholarly work demonstrates the integration of chemistry, materials engineering, textile science, and sensor technology into practical engineering solutions.[2]

Research Profile

The research profile of Muhammad Yousif encompasses the design, synthesis, characterization, and application of advanced functional materials. His Scopus record reports 19 indexed publications, 156 citations, and an h-index of 7, reflecting consistent scholarly activity within the international materials science community.[1]

  • Wearable and flexible sensing systems
  • Graphene-based nanocomposites
  • Environmental wastewater remediation
  • Hydrogel-textile multifunctional materials
  • Fiber-based intelligent sensing technologies

Research Contributions

Among his recent contributions are studies describing aramid nanofiber adsorption systems for dye recovery, reduced graphene oxide hybrid yarn sensors for wearable devices, braided optical fiber sensing technologies, hydrogel-textile multimodal sensing platforms, and nanocomposite catalysts for degradation of organic pollutants. These investigations contribute to the advancement of sustainable materials, flexible electronics, and environmental technologies.[2][3][4]

Publications

  • Efficient, reversible recovery of anionic acidic dyes from water with aramid nanofibers. The Journal of The Textile Institute (2026). DOI:
    10.1080/00405000.2026.2670988
  • Scalable rGO–Ni Hybrid Yarn Sensors for Durable and Sensitive Wearable Electronics. IEEE Sensors Journal (2026). DOI:
    10.1109/JSEN.2026.3654231
  • Fiber Braiding Structure for Spatially Resolved Intensity-Modulated Liquid Level Sensing. IEEE Sensors Journal (2026). DOI:
    10.1109/JSEN.2026.3704258
  • A hydrogel–textile composite with synapse-inspired ionic multimodal sensing. Science China Materials (2025). DOI:
    10.1007/s40843-025-3644-9
  • High-performance catalytic degradation of rhodamine 6G dye by NiO/Reduced graphene oxide nanocomposite from the wastewater system. International Journal of Environmental Analytical Chemistry (2025). DOI:
    10.1080/03067319.2025.2532590

Research Impact

The published research has contributed to the advancement of environmentally sustainable nanomaterials, multifunctional sensing platforms, and flexible wearable systems. The citation profile indicates measurable scholarly recognition within materials science, particularly in emerging topics involving smart textiles, graphene-enabled devices, and environmental remediation technologies.[1]

Award Suitability

Based on documented publication output, interdisciplinary research scope, measurable citation performance, and continued contributions to advanced materials science, Muhammad Yousif demonstrates characteristics commonly associated with recognition under an Innovative Research Award. His work addresses practical scientific challenges through the development of advanced materials for environmental protection, sensing technologies, and wearable electronics while maintaining consistent scholarly productivity.[1]

Conclusion

Muhammad Yousif’s academic portfolio illustrates sustained contributions to materials science through innovative research involving nanomaterials, smart textiles, hydrogel composites, and environmental technologies. His publication record, citation performance, and interdisciplinary investigations collectively support his standing as an active researcher contributing to contemporary developments in advanced functional materials.

References

  1. Elsevier. (n.d.). Scopus Author Details: Muhammad Yousif, Author ID 57211409200.
    https://www.scopus.com/authid/detail.uri?authorId=57211409200
  2. Yousif, M. et al. (2026). Efficient, reversible recovery of anionic acidic dyes from water with aramid nanofibers. The Journal of The Textile Institute.
    DOI:
    https://doi.org/10.1080/00405000.2026.2670988
  3. Yousif, M. et al. (2026). Scalable rGO–Ni Hybrid Yarn Sensors for Durable and Sensitive Wearable Electronics. IEEE Sensors Journal.
    DOI:
    https://doi.org/10.1109/JSEN.2026.3654231
  4. Yousif, M. et al. (2026). Fiber Braiding Structure for Spatially Resolved Intensity-Modulated Liquid Level Sensing. IEEE Sensors Journal.
    DOI:
    https://doi.org/10.1109/JSEN.2026.3704258
  5. Yousif, M. et al. (2025). A hydrogel–textile composite with synapse-inspired ionic multimodal sensing. Science China Materials.
    DOI:
    https://doi.org/10.1007/s40843-025-3644-9

Yagmur Okcay | Pharnacology, Medical Pharmacology | Best Researcher Award

Ms.Yagmur Okcay | Pharnacology, Medical Pharmacology | Best Researcher Award

PhD Candidate/Research assistant PhD Candidate/Research assistant Turkey

Yağmur Okçay is a dedicated PhD Candidate and Research Assistant at the University of Health Sciences. With a background in pharmacy and a master’s in pharmacology, she is advancing her expertise in medical pharmacology. Her research efforts focus on neuropathic pain, cannabinoids, and behavioral pharmacology, contributing significantly to the field with multiple publications and collaborations.

profile

ORCiD

Education 🎓

Yağmur Okçay completed her undergraduate studies at Anadolu University Faculty of Pharmacy in 2019. She then pursued a master’s degree in Pharmacology. Currently, she is a PhD candidate in Medical Pharmacology at the University of Health Sciences, furthering her academic and research pursuits.

Experience 🏫

In her role as a research assistant at the University of Health Sciences, Yağmur has been actively involved in various research projects and academic endeavors. Her experience spans across multiple areas of pharmacology, where she has contributed to the understanding and development of new therapeutic strategies.

Research Interests 🔬

Yağmur’s research interests are primarily focused on neuropathic pain, behavioral pharmacology, cannabinoids, and the autonomic nervous system pharmacology. Her work aims to elucidate complex biochemical pathways and explore novel therapeutic applications for various pharmacological challenges.

Awards 🏆

Yağmur Okçay’s contributions to pharmacology have been recognized through her active involvement in significant research projects and publications. While specific awards are not mentioned, her nomination for the Best Researcher Award reflects her dedication and impact in the field.

Publications 📄

  1. Dynamic Endocannabinoid-mediated Neuromodulation of Retinal Circadian Circuitry (2024) – Ageing Research Reviews
    • Cited by articles in various pharmacology and neuroscience journals.
  2. Additional publications include 5 research articles and 2 review articles in SCI/SCIE indexed journals, showcasing her extensive research output and scholarly impact.