Hebat-Allah S. Tohamy | Sustainable Food Processing and Preservation | Innovative Research Award

Innovative Research Award

Hebat-Allah S. Tohamy
National Research Centre, Egypt

Hebat-Allah S. Tohamy
Affiliation National Research Centre
Country Egypt
Scopus ID 57194446088
Documents 95
Citations 2,058
h-index 28
Subject Area Sustainable Food Processing and Preservation
Event Agri Scientist Awards
ORCID 0000-0001-5494-841X

Hebat-Allah S. Tohamy is a researcher at the National Research Centre, Egypt, whose scholarly work integrates cellulose science, carbon nanomaterials, sustainable food packaging, biosensing, adsorption, and antimicrobial materials. Her publications demonstrate interdisciplinary approaches to renewable resources, intelligent food preservation, microbial detection, and functional nanomaterials, with applications extending into environmental remediation and advanced sensing.[3]

Abstract

Hebat-Allah S. Tohamy is a researcher at the National Research Centre, Egypt, whose work integrates cellulose science, carbon nanomaterials, sustainable food packaging, biosensing, adsorption, and antimicrobial materials. Her publications explore renewable biomass, carbon dots, intelligent films, hydrogels, and nanostructured interfaces for food safety, preservation, environmental remediation, and chemical detection applications. Recent studies address food spoilage sensing, microbial detection, sustainable packaging, and functional carbon-dot systems derived from agricultural or biobased resources. Her research profile reflects interdisciplinary development of materials designed to connect sustainability, sensing performance, preservation, and practical applications across food, environmental, and advanced materials research, supporting consideration for scientific recognition in contemporary interdisciplinary fields.[3]

Keywords

cellulose-based packaging; sustainable food preservation; intelligent food packaging; carbon dots; carbon quantum dots; food spoilage biosensing; microbial detection; fluorescence sensing; agricultural waste valorization; antimicrobial films; edible films; hydrogel sensors; graphene oxide; adsorption; food safety; renewable biomaterials; nanostructured materials; chromogenic sensors; environmental remediation; smart packaging.[2]

Introduction

Hebat-Allah S. Tohamy’s research addresses sustainable food processing and preservation through cellulose-based films, carbon dots, hydrogels, and intelligent sensing materials. Her studies connect renewable biomass utilization with food safety, spoilage monitoring, antimicrobial functionality, and environmentally responsible packaging, while also extending these materials toward environmental remediation and chemical detection applications and approaches.[4]

Research Profile

Hebat-Allah S. Tohamy has developed an interdisciplinary research profile spanning cellulose chemistry, carbon quantum dots, graphene-based materials, food packaging, biosensors, adsorption, and antimicrobial systems. Publications demonstrate recurring interest in transforming agricultural or biobased resources into functional materials that provide sensing, preservation, remediation, and protective capabilities for applied scientific challenges and areas.[4]

Research Contributions

Hebat-Allah S. Tohamy contributes to research on intelligent packaging, microbial spoilage detection, fluorescent sensing, sustainable nanomaterials, and cellulose-derived functional structures. Reported studies include carbon-dot sensors for food contaminants, edible antimicrobial films, hydrogel systems, and biomass-derived nanostructures, illustrating a consistent effort to combine materials engineering with practical food safety objectives and innovation.[3]

Publications

Hebat-Allah S. Tohamy’s publications include studies on natural chromogenic sensors for strawberries, garlic-peel carbon-dot systems for apple spoilage biosensing, lignosulfonate carbon dots for bacterial detection, and cellulose-based antimicrobial films. Her broader record also covers quantum dots, adsorption, graphene oxide, desalination membranes, and functional hydrogels, demonstrating multidisciplinary materials research and applications. [4]

Research Impact

Hebat-Allah S. Tohamy’s research impact is reflected in work connecting sustainable materials with food quality monitoring, preservation, environmental remediation, and sensing. Her publications address emerging approaches such as agricultural-waste-derived carbon dots, intelligent packaging, fluorescence-based detection, antimicrobial films, and adsorption materials, supporting broader development of resource-efficient functional technologies and research worldwide.[2]

Award Suitability

Hebat-Allah S. Tohamy is suitably aligned with an Innovative Research Award because her research combines material innovation, sustainability, food safety, sensing, and applied nanotechnology. Her publication portfolio demonstrates recurring development of functional materials from renewable resources and their adaptation to practical challenges involving spoilage, contamination, preservation, environmental treatment, and detection.[1]

Conclusion

Hebat-Allah S. Tohamy represents an interdisciplinary research pathway centered on sustainable materials and functional technologies. Her studies demonstrate how cellulose, agricultural residues, carbon dots, hydrogels, and related nanostructures can support food preservation, intelligent sensing, antimicrobial protection, and environmental applications, providing a coherent foundation for continued scientific development and recognition efforts.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Hebat-Allah S. Tohamy, Author ID 57194446088. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57194446088
  2. Tohamy, H.-A. S. (2025). A novel natural chromogenic visual and luminescent sensor platform for multi-target analysis in strawberries and shape memory applications. Foods, 14(16), 2791. https://doi.org/10.3390/foods14162791
  3. Tohamy, H.-A. S. (2025). A two-in-one lignosulfonate carbon dots for bacterial detection and fluorescence quenching in food, pharmaceuticals, and cultural heritage preservation. Scientific Reports, 15, 43739. https://doi.org/10.1038/s41598-025-28621-2
  4. Tohamy, H.-A. S., & El-Masry, H. M. (2024). Fluffy-like amphiphilic graphene oxide and its effects on improving the antibacterial activity and thermal outstanding of ethyl cellulose/polyvinyl alcohol hydrogel film. BMC Chemistry, 18, 116. https://doi.org/10.1186/s13065-024-01221-3
  5. Tohamy, H.-A. S., El-Sakhawy, M., Hassan, E. B., & Kamel, S. (2023). Microwave-prepared quantum dots and their potential applications as adsorbents and chemosensors. Materials, 16(20), 6722. https://doi.org/10.3390/ma16206722

Ravi babu Valapa | Food packaging | Best Researcher Award

Dr Ravi babu Valapa |  Food packaging |  Best Researcher Award

Senior Scientist at CSIR-Central Electrochemical Research Institute …, India

Dr. V. Ravi Babu is a Senior Scientist at the Electrochemical Process Engineering Division, CSIR-Central Electrochemical Research Institute (CECRI) in Karaikudi, Tamil Nadu, India. With an M.Tech. and Ph.D. in his field, Dr. Babu specializes in electrochemical processes and materials. His research contributes to advancements in electrochemical engineering and applications, enhancing industrial processes and sustainable energy solutions.

Publication Profile

Education:

  • Ph.D. in Chemical Engineering, IIT Guwahati
  • M.Tech. in Chemical Engineering (Plant Design), NIT Trichy
  • B.Tech. in Chemical Engineering, Jawaharlal Nehru Technological University, Hyderabad

Professional Appointments:

  • Senior Scientist (2021–Present)
    Electrochemical Process Engineering Division, CSIR-CECRI, Karaikudi
  • Scientist (2017–2021)
    Electrochemical Process Engineering Division, CSIR-CECRI, Karaikudi
  • Technical Officer (2015–2017)
    Centre for Biopolymer Science and Technology, CIPET, Kochi
  • Research Fellow (2010–2015)
    Chemical Engineering, IIT Guwahati, Assam

Research Projects :

  • Functional Biodegradable Polymers for tissue engineering with antibacterial properties
  • COVID-19 Support: Design of printable face shields and ICU ventilator components
  • 3D Printable Aerospace Composites: Graphene-reinforced PEEK composite filament
  • Biopolymer-Based Medical Applications: 3D printed osteoplugs for medical use
  • Advanced Battery Materials: Hybrid polymer electrolyte for lithium-ion batteries
  • Carbon Capture Technology: Scaling adsorption processes for carbon capture in various industries

Technologies Developed & Transferred :

  • Carbon Capture Adsorbents for industrial applications (licensed to Summits Hygronics Pvt Ltd.)
  • 3D Printing Filaments: Graphene-reinforced polymer, cost-effective ABS, PLA for commercial uses
  • UV Protective Polymer Composites for automotive and packaging industries

Citations:

Citations: 1,094 (921 since 2019)
h-index: 15 (15 since 2019)
i10-index: 21 (19 since 2019)

Publication Top Notes

  • Thermogravimetric analysis for characterization of nanomaterials
    S Loganathan, RB Valapa, RK Mishra, G Pugazhenthi, S Thomas
    Thermal and Rheological Measurement Techniques for Nanomaterials (2017)
    Citations: 166
  • Effect of graphene content on the properties of poly (lactic acid) nanocomposites
    RB Valapa, G Pugazhenthi, V Katiyar
    RSC Advances 5 (36), 28410-28423 (2015)
    Citations: 162
  • UV protective poly (lactic acid)/rosin films for sustainable packaging
    M Narayanan, S Loganathan, RB Valapa, S Thomas, TO Varghese
    International Journal of Biological Macromolecules 99, 37-45 (2017)
    Citations: 152
  • An overview of polymer–clay nanocomposites
    RB Valapa, S Loganathan, G Pugazhenthi, S Thomas, TO Varghese
    Clay-Polymer Nanocomposites, 29-81 (2017)
    Citations: 105
  • Thermal degradation kinetics of sucrose palmitate reinforced poly (lactic acid) biocomposites
    R Valapa, G Pugazhenthi, V Katiyar
    International Journal of Biological Macromolecules 65, 275-283 (2014)
    Citations: 67
  • Hydrolytic degradation behaviour of sucrose palmitate reinforced poly (lactic acid) nanocomposites
    R Babu Valapa, G Pugazhenthi, V Katiyar
    International Journal of Biological Macromolecules 89, 70-80 (2016)
    Citations: 50
  • Fabrication and characterization of sucrose palmitate reinforced poly (lactic acid) bionanocomposite films
    RB Valapa, G Pugazhenthi, V Katiyar
    Journal of Applied Polymer Science 132 (3) (2015)
    Citations: 43
  • Investigating the properties of poly (lactic acid)/exfoliated graphene based nanocomposites fabricated by versatile coating approach
    G Chakraborty, RB Valapa, G Pugazhenthi, V Katiyar
    International Journal of Biological Macromolecules 113, 1080-1091 (2018)
    Citations: 39
  • Biobased polymer composite from poly (lactic acid): processing, fabrication, and characterization for food packaging
    J Jacob, U Lawal, S Thomas, RB Valapa
    Processing and Development of Polysaccharide-Based Biopolymers for Packaging (2020)
    Citations: 34
  • Influence of graphene on thermal degradation and crystallization kinetics behaviour of poly (lactic acid)
    R Valapa, S Hussain, PK Iyer, G Pugazhenthi, V Katiyar
    Journal of Polymer Research 22, 1-14 (2015)
    Citations: 33
  • An overview of polymer–clay nanocomposites
    R Babu Valapa, S Loganathan, G Pugazhenthi, S Thomas, TO Varghese
    Clay-Polymer Nanocomposites, 29-81 (2017)
    Citations: 32
  • Influence of linear and branched amine functionalization in mesoporous silica on the thermal, mechanical and barrier properties of sustainable Poly(lactic acid) biocomposite films
    S Loganathan, J Jacob, RB Valapa, S Thomas
    Polymer (2018)
    Citations: 31
  • Investigation on the Influence of EVA Content on the Mechanical and Thermal Characteristics of Poly (lactic acid) Blends
    VH Sangeetha, RB Valapa, SK Nayak, TO Varghese
    Journal of Polymers and the Environment 26, 1-14 (2018)
    Citations: 29
  • 3D bioprinted poly (lactic acid)/mesoporous bioactive glass based biomimetic scaffold with rapid apatite crystallization and in-vitro Cytocompatibility for bone tissue engineering
    S Pant, S Thomas, S Loganathan, RB Valapa
    International Journal of Biological Macromolecules 217, 979-997 (2022)
    Citations: 22
  • Antioxidant incorporated biopolymer composites for active packaging
    J Jacob, S Thomas, S Loganathan, RB Valapa
    Processing and Development of Polysaccharide-Based Biopolymers for Packaging (2020)
    Citations: 17
  • Super toughened renewable poly (lactic acid) based ternary blends system: effect of degree of hydrolysis of ethylene vinyl acetate on impact and thermal properties
    VH Sangeetha, R Babu Valapa, SK Nayak, TO Varghese
    RSC Advances 6 (76), 72681-72691 (2016)
    Citations: 15
  • Poly (lactic acid)/polyethylenimine functionalized mesoporous silica biocomposite films for food packaging
    J Jacob, V Robert, RB Valapa, S Kuriakose, S Thomas, S Loganathan
    ACS Applied Polymer Materials 4 (7), 4632-4642 (2022)
    Citations: 14
  • Non-isothermal crystallization kinetics of sucrose palmitate reinforced poly (lactic acid) bionanocomposites
    R Valapa, S Hussain, P Krishnan Iyer, G Pugazhenthi, V Katiyar
    Polymer Bulletin 73, 21-38 (2016)
    Citations: 14
  • Clay-Polymer Nanocomposites
    RB Valapa, S Loganathan, G Pugazhenthi, S Thomas, TO Varghese
    Bölüm An Overview of Polymer–Clay Nanocomposites, 29-8 (2017)
    Citations: 12
  • Studies on removal of chromium (VI) from water using chitosan coated Cyperus pangorei
    R Malarvizhi, Y Venkateswarlu, V Ravi Babu, S Syghana Begum
    Water Science and Technology 62 (10), 2435-2441 (2010)
    Citations: 12