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

Mingdong Yao | Food | Best Researcher Award

Assoc. Prof. Dr  Mingdong  Yao | Food |  Best Researcher Award

Associate professor at  Tianjin University, China

Assoc. Prof. Dr. Mingdong Yao is an Associate Professor at Tianjin University, where he works at the Frontiers Science Center for Synthetic Biology and the School of Chemical Engineering and Technology. He earned his Ph.D. in Applied Life Chemistry from the University of Tokyo, Japan. Dr. Yao has made significant contributions to the fields of synthetic biology, microbial cell factories, biocatalysis, and enzyme engineering.

 

Publication Profile

Academic Background:

Dr. Mingdong Yao received his PhD in Applied Life Chemistry from the University of Tokyo, Japan. He is currently an Associate Professor at the Frontiers Science Center for Synthetic Biology and the School of Chemical Engineering and Technology at Tianjin University, China.

Research Focus:

Dr. Yao’s research expertise includes synthetic biology, microbial cell factories, biocatalysis, and enzyme engineering. His work focuses on the design, development, and optimization of key functional enzymes in biosynthetic pathways.

Key Contributions:

Dr. Yao has significantly advanced the construction of cell factories, improving the production of lipophilic compounds in yeast by extending the cellular G1 phase and enhancing enzyme expression. He also developed a rational enzyme assembly strategy, improving the biosynthesis efficiency of terpenoid products. Additionally, his work in enzyme design has led to the functional expansion of adenosinase to halogenase.

Research Projects:

He has completed several major research projects, including a National Natural Science Foundation project, two subprojects of the National Key Research and Development Program of China, and a Tianjin Natural Science Foundation project. He is currently leading another subproject of the National Key Research and Development Program of China.

Awards and Recognition:

Dr. Yao’s research has been widely recognized internationally, contributing significantly to the fields of synthetic biology and enzyme engineering.

Citations:

  • Total Citations: 1,276
  • Citations by Documents: 1,015
  • Number of Documents: 65
  • h-index: 20

Publication Top Note:

  • Systematic metabolic engineering enables highly efficient production of vitamin A in Saccharomyces cerevisiae
    Shi, Y., Lu, S., Zhou, X., Xiao, W., Yao, M.
    Synthetic and Systems Biotechnology, 2025, 10(1), pp. 58–67.
  • Extending the G1 phase improves the production of lipophilic compounds in yeast by boosting enzyme expression and increasing cell size
    Hao, H., Yao, M., Wang, Y., Xiao, W., Yuan, Y.
    Proceedings of the National Academy of Sciences of the United States of America, 2024, 121(47), e2413486121.
  • A customized self-assembled synergistic biocatalyst for plastic depolymerization
    Zhang, W., Han, Y., Yang, F., Yao, M., Qin, H.-M.
    Journal of Hazardous Materials, 2024, 477, 135380.
  • Improving the expression of taxadiene synthase to enhance the titer of taxadiene in Saccharomyces cerevisiae
    Zhang, C., Wang, J., Shi, Y., Yao, M., Yuan, Y.
    Green Chemistry, 2024, 26(20), pp. 10604–10616.
  • Highly efficient synthesis of lysergic acid using engineered budding yeast
    Wu, N., Yao, M., Xiao, W., Wang, Y., Yuan, Y.-J.
    Green Chemistry, 2024, 26(19), pp. 10330–10343.
  • Systematic Engineering to Enhance β-Myrcene Production in Yeast
    Shu, Y., Dong, T., Zhou, X., Wang, Y., Xiao, W.
    Journal of Agricultural and Food Chemistry, 2024, 72(35), pp. 19395–19402.
  • Biotransformation of ethylene glycol by engineered Escherichia coli
    Yan, W., Qi, X., Cao, Z., Ding, M., Yuan, Y.
    Synthetic and Systems Biotechnology, 2024, 9(3), pp. 531–539.
  • Multidimensional combinatorial screening for high-level production of erythritol in Yarrowia lipolytica
    Li, L., Zhang, Q., Shi, R., Lu, F., Qin, H.-M.
    Bioresource Technology, 2024, 406, 131035.
  • Research Progress in the Synthesis of Astaxanthin by Yeast
    Shu, Y., Wang, Y., Yao, M., Xiao, W.
    China Biotechnology, 2024, 44(6), pp. 116–128.
  • Molecular Insights into Converting Hydroxide Adenosyltransferase into Halogenase
    Jiang, Y., Yao, M., Feng, J., Dong, M., Yuan, Y.
    Journal of Agricultural and Food Chemistry, 2024, 72(22), pp. 12685–12695.

 

Pothiyappan Karthik | Food Technology | Best Researcher Award

Assoc Prof Dr Pothiyappan Karthik |  Food Technology |  Best Researcher Award

Associate Professor & Head at  Karpagam Academy of Higher Education,  India

Dr. Pothiyappan Karthik is an Associate Professor and Head of the Department of Food Technology at Karpagam Academy of Higher Education. He earned his Ph.D. in Food Technology from the CSIR-Central Food Technological Research Institute (CFTRI) in Mysore and completed post-doctoral research at Zhejiang Gongshang University, China. Dr. Karthik has received the CSIR-Senior Research Fellowship and has led a major research project funded by the DST, amounting to Rs. 75 lakhs. He has published extensively with 24 journal articles and holds multiple patents in food technology.

Publication profile:

🎓 Academic Background:

Dr. Pothiyappan Karthik completed his Ph.D. in Food Technology at CSIR-Central Food Technological Research Institute, India. He pursued post-doctoral research at Zhejiang Gongshang University, China, in collaboration with the University of Leeds, UK. He has received the CSIR-Senior Research Fellowship and led a major research project funded by the DST, India.

🔬 Research Focus:

Dr. Karthik’s research centers on food technology, including:

  • Development of sustainable millet resources
  • Nanoencapsulation techniques for nutraceutical delivery
  • Biobased food packaging solutions

📚 Publications & Patents:

  • Citations: 2,475 (1,834 since 2019)
  • h-index: 15 (same since 2019)
  • i10-index: 17 (same since 2019)
  • Journals Published: 24, including notable works in Food Hydrocolloids and Food Science and Biotechnology.
  • Patents: 3 published, including innovations in food emulsifiers and probiotic drinks.

Publication Top Notes: