Mohsen Mhadhbi | Nanotechnology | Innovative Research Award

Innovative Research Award

Mohsen Mhadhbi
Affiliation National Institute of Research and Physicochemical Analysis
Country Tunisia
Scopus ID 59953317500
Documents 3
Citations 1
h-index 1
Subject Area Nanotechnology
Event Global Innovation Technologist Awards
ORCID 0000-0003-1488-8699

Mohsen Mhadhbi

National Institute of Research and Physicochemical Analysis, Tunisia

Mohsen Mhadhbi is a researcher working in the field of nanotechnology with particular interest in advanced nanocarbide materials, powder metallurgy, mechanical alloying, biodegradable biomaterials, and functional nanomaterials. His published work demonstrates an emphasis on sustainable material processing, microstructural engineering, and the development of high-performance materials for industrial and biomedical applications. These research activities form the basis for consideration within the Global Innovation Technologist Awards while reflecting measurable scholarly contributions and ongoing research development.[1]

Abstract

This article summarizes the academic profile of Mohsen Mhadhbi, highlighting research activities in nanotechnology and advanced material engineering. His studies focus on nanocrystalline carbides, mechanical alloying, sustainable recycling of titanium resources, spark plasma sintering, biodegradable alloys, and biomedical nanomaterials. The body of work demonstrates interdisciplinary integration between materials science, manufacturing technology, and biomedical engineering while contributing to environmentally responsible processing techniques.[2]

Keywords

Nanotechnology; Mechanical Alloying; Nanocarbides; Titanium Carbides; Spark Plasma Sintering; Biodegradable Alloys; Powder Metallurgy; Sustainable Materials.

Introduction

Modern nanotechnology increasingly relies on innovative processing techniques capable of producing materials with superior structural and functional performance. Mohsen Mhadhbi’s research aligns with these objectives through investigations into nanostructured carbides and environmentally sustainable material synthesis. His publications emphasize both laboratory-scale innovation and practical engineering relevance.[3]

Research Profile

The research profile includes publications concerning nanocarbide synthesis, high-energy mechanical alloying, biodegradable metallic systems, and nanoparticle applications for healthcare. According to the available scholarly metrics, the researcher has a Scopus Author ID of 59953317500 with indexed publications and citations demonstrating continuing academic activity within the nanotechnology community.[1]

Research Contributions

  • Development of TiC nanocarbides from recycled titanium machining chips.
  • Investigation of nanocrystalline Ti-V-C phase evolution using mechanical alloying.
  • Evaluation of spark plasma sintered nanocarbides for tool applications.
  • Studies on biodegradable Zn-Ag alloys for biomedical use.
  • Contributions to nanoparticle technologies for breast cancer detection and therapy.

Publications

  • Synthesis of TiC Nanocarbide from Recycled Machined Ti Chips and Graphite Powder.
  • Microstructural Evolution and Phase Formation in Nanocrystalline Ti0.8V0.2C Powder.
  • Microstructural and Mechanical Properties of Spark Plasma Sintered TiCrC Nanocarbide.
  • Recent Developments in Biodegradable Nanoparticles for Detection and Therapy of Breast Cancer.
  • Effect of Iron on Zn-3Ag Biodegradable Alloys.

Research Impact

The available publication record reflects sustained participation in emerging nanotechnology research. Current bibliometric indicators, including indexed publications, citations, and h-index, provide quantitative evidence of scholarly visibility while recent publications suggest continuing research productivity and future citation potential.[4]

Award Suitability

Based on the documented research profile, Mohsen Mhadhbi demonstrates contributions consistent with innovation in nanotechnology, sustainable materials processing, and interdisciplinary engineering research. His work supports technological advancement through recyclable raw materials, advanced powder processing, and biomedical material development, making the profile relevant for consideration within the Global Innovation Technologist Awards.[5]

Conclusion

Mohsen Mhadhbi’s research portfolio illustrates continuing engagement in nanotechnology with emphasis on advanced materials, sustainable manufacturing, and biomedical applications. The combination of scientific publications, indexed research output, and innovative material development establishes a credible academic profile suitable for professional recognition while encouraging further scholarly advancement.

References

  1. Elsevier. Scopus Author Details: Mohsen Mhadhbi, Author ID 59953317500.
    https://www.scopus.com/authid/detail.uri?authorId=59953317500
  2. Mhadhbi M. Synthesis of TiC Nanocarbide from Recycled Machined Ti Chips.
    https://doi.org/10.1007/s42824-026-00243-7
  3. Mhadhbi M. Microstructural Evolution and Phase Formation in Nanocrystalline Ti0.8V0.2C Powder.
    https://doi.org/10.3390/cryst16070459
  4. Mhadhbi M. Microstructural and Mechanical Properties of Spark Plasma Sintered TiCrC Nanocarbide.
    https://doi.org/10.1088/1361-6528/ae2bf5
  5. Springer Nature. Recent Developments in Biodegradable Nanoparticles for Detection and Therapy of Breast Cancer.
    https://doi.org/10.1007/978-981-95-3682-5_22

Siddarth Usulkar | Nanotechnology | Best Researcher Award

Mr. Siddarth Usulkar | Nanotechnology | Best Researcher Award

Student at KLE Academy of Higher Education and Research, KLE College of Pharmacy, Belagavi, India

Siddarth Usulkar is a passionate and innovative M.Pharmacy graduate committed to advancing pharmaceutical sciences through research and development. With strong leadership, adaptability, and problem-solving skills, he aims to contribute significantly to the life sciences field while fostering personal and professional growth. Siddarth is fluent in English, Hindi, Marathi, and proficient in Kannada, making him an effective communicator in diverse environments. 📚💡

Publication Profile : 

Scopus

 

🎓 Educational Background :

Siddarth Usulkar is a dedicated pharmacy professional who earned his M.Pharmacy degree from KLE College of Pharmacy, Belagavi, in 2023, following a B.Pharmacy from Maratha Mandal’s College of Pharmacy in 2021. His educational journey began with a Pre-University Course at Govindram Seksaria Science College in 2017, after completing his Secondary Schooling at St. Mary’s High School in 2015.

đź’Ľ Professional Experience :

Siddarth has developed a solid foundation in pharmaceutical research and practical applications through his work. His M.Pharmacy research focused on the “Development and Characterization of Berberine Nanoethosomal Vaginal in situ Gel for Polycystic Ovary Syndrome.” He conducted extensive studies, including the formulation of nanoethosomes, in vivo activity assessments, and vaginal irritancy studies in female Wistar rats. Additionally, he has worked on optimizing topical formulations like ibuprofen-loaded cubosomal nano-formulations and acyclovir gels for herpes management. He gained hands-on experience through a 45-day internship at Pragati Pharma in Belagavi, Karnataka.

📚 Research Interests : 

Siddarth’s research interests lie in the formulation and evaluation of innovative drug delivery systems, particularly focusing on nanoformulations and their therapeutic applications. He has also engaged in projects validating UV-Spectrophotometric methods and has filed patents for his work on nanoethosomal gels.

📝 Publication Top Notes :

  1. Usulkar, S., Sutar, K.P., Biradar, P., Patil, V., & Jadhav, V. (2024). Innovative berberine nanoethosomal vaginal in situ gel: Unraveling polycystic ovary syndrome treatment on female Wistar rats. International Journal of Pharmaceutics, 663, 124564.
    Abstract: [Link Disabled]
  2. Patil, V.S., Sutar, K.P., Pockle, R.D., Usulkar, S., & Jadhav, V.A. Formulation, optimization and evaluation of amisulpride-loaded niosomal intranasal gel for brain targeting.
    Abstract: [Link Disabled]