Nihal Mohamed | Safety | Innovative Research Award

Innovative Research Award

Nihal Mohamed
Icahn School of Medicine at Mount Sinai

             Nihal Mohamed
Affiliation Icahn School of Medicine at Mount Sinai
Country United States
Scopus ID 8580878100
Documents 68
Citations 1,663
h-index 24
Subject Area Safety
Event Petroleum Engineering Awards

Nihal Mohamed  the Innovative Research Award recognizes sustained scholarly excellence, impactful scientific contributions, and continued advancement of research within specialized academic disciplines. Nihal Mohamed, affiliated with the Icahn School of Medicine at Mount Sinai, has established a documented research portfolio reflected through Scopus-indexed publications, citation performance, and measurable scholarly impact. These indicators provide an objective basis for evaluating research influence and professional recognition within the international scientific community.[1]

Abstract

This article presents an academic overview of Nihal Mohamed’s research profile in relation to the Innovative Research Award. Available scholarly indicators demonstrate consistent publication activity, significant citation performance, and measurable research influence. Such bibliometric evidence is commonly used alongside peer evaluation to assess academic achievement and research excellence.[1]

Keywords

Innovative Research Award; Nihal Mohamed; Safety Research; Scopus Author; Icahn School of Medicine at Mount Sinai; Scholarly Publications; Citation Analysis; h-index; Academic Recognition; Research Excellence.

Introduction

Academic recognition programs acknowledge researchers whose work demonstrates scientific quality, originality, and measurable scholarly influence. Bibliometric indicators such as publication count, citation performance, and h-index provide standardized evidence for assessing research productivity while complementing qualitative peer review processes.[2]

Research Profile

  • Researcher: Nihal Mohamed
  • Institution: Icahn School of Medicine at Mount Sinai
  • Country: United States
  • Subject Area: Safety
  • Scopus Documents: 68
  • Scopus Citations: 1,663
  • Scopus h-index: 24

Research Contributions

The documented research portfolio reflects continued engagement in peer-reviewed scientific publishing and interdisciplinary collaboration. Citation metrics indicate that published work has been referenced by other researchers, demonstrating academic visibility and influence within the scholarly literature.[1]

Publications

Representative scholarly outputs are indexed within Scopus and include peer-reviewed journal publications. Published articles commonly include Digital Object Identifiers (DOIs), ensuring permanent identification and discoverability within international scholarly databases.[3]

Research Impact

Bibliometric indicators demonstrate substantial academic engagement, including 68 indexed publications, 1,663 citations, and an h-index of 24. These metrics suggest sustained scholarly influence and continued recognition within the international research community.[1]

Award Suitability

Based on publicly available scholarly indicators, Nihal Mohamed demonstrates characteristics frequently considered during evaluations for research recognition programs. The documented publication record, citation performance, measurable h-index, and institutional affiliation collectively support eligibility for consideration within the Innovative Research Award framework, subject to the formal evaluation criteria established by the Petroleum Engineering Awards organizing committee.[2]

Conclusion

Nihal Mohamed’s documented scholarly profile reflects sustained academic productivity supported by internationally indexed publications and significant citation performance. Objective bibliometric indicators provide evidence of research visibility and scientific contribution, making the profile consistent with the standards typically considered during academic recognition and research award evaluations.[1]

External Links

References

  1. Elsevier. (n.d.). Scopus author details: Nihal Mohamed, Author ID 8580878100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=8580878100
  2. Petroleum Engineering Awards. (n.d.). Innovative Research Award.
    https://petroleumengineering.org/
  3. International DOI Foundation. (n.d.). Digital Object Identifier (DOI) Handbook
  4. Mohamed, N. E., Berry, D. L., McReynolds, J., … Wiklund, P. N., & Lober, W. B. (2026). Development and evaluation of the Personal Patient Profile–Bladder Cancer (P3-BC): A web-based decision support system for patients considering cystectomy and urinary diversion.

Dr. Yang Guo | Environmental behavior of pollutants | Best Researcher Award

Dr. Yang Guo | Environmental behavior of pollutants | Best Researcher Award

Dr. Yang Guo | Changzhou University | China

Dr. Yang Guo  research focuses on water disinfection processes, with particular emphasis on the formation, detection, and environmental risks of disinfection by-products from antibiotics and aquatic pollutants. The work addresses critical gaps in understanding volatile disinfection by-products, including key breakthroughs related to chlorine dioxide disinfection. Recent findings highlight the potential role of microalgae in transforming antibiotics and their by-products, offering promising strategies to mitigate environmental contamination and improve water safety.

Citation Metrics (Scopus)

10

8

6

4

2

0

Citations
7

Documents
3

h-index
1


View Scopus Author Profile

Featured Publication

Zehra Gülten Yalçın | Green Corrosion Inhibitors | Best Research Article Award

Assist. Prof. Dr. Zehra Gülten Yalçın | Green Corrosion Inhibitors | Best Research Article Award

Doctor Lecturer at Çankırı Karatekin University | Turkey

Dr. Zehra Gülten Yalçın is a Doctor Lecturer in the Department of Engineering, Faculty of Engineering, at Çankırı Karatekin University, specializing in Chemical Engineering. Her academic work focuses on energy systems, environmental and sustainable processes, and materials science and technologies, reflecting her commitment to innovation and sustainability within engineering disciplines. She has made significant contributions through her research on corrosion inhibition, recycled polymer materials, biogas efficiency, and the development of polyurethane-based composites incorporating industrial waste. Dr. Yalçın’s studies often integrate advanced thermodynamic, surface, and mechanical analyses, contributing to a deeper understanding of material behavior and environmental performance. Her research has been featured in reputable international journals such as Petroleum Science and Technology, Journal of Current Research in Engineering, Science and Technology (JoCREST), and the Black Sea Engineering and Science Journal. In addition to her publications, she has presented numerous papers at international conferences, addressing topics such as solar energy production, risk analysis in hazardous chemical processes, and waste management innovations. Dr. Yalçın’s interdisciplinary expertise also extends to the application of machine learning in chemical process optimization, advancing sustainable engineering practices through data-driven methodologies. Her scientific achievements have been recognized through academic incentive awards from Çankırı Karatekin University, underscoring her excellence in teaching, research, and innovation. With a strong dedication to the advancement of sustainable chemical technologies, Dr. Yalçın continues to contribute to the global scientific community through impactful research that bridges theory with industrial application. Her forward-thinking approach and integration of environmental awareness into chemical engineering make her a prominent academic voice in the pursuit of cleaner and more efficient technological solutions.

Profile: ORCID

Featured Publications

Hussein, M. Y., Yalçın, Z. G., Yaqoob, G. B., & Dağ, M. (2025). Investigation of the corrosion‐inhibition effect of Turkish coffee extract on L-80 carbon steel in 15% HCl: Thermodynamic and surface analyses.

Günay, K., & Yalçın, Z. G. (2025). Maximizing biogas yield in anaerobic digestion: A response surface methodology approach.

Dağ, M., Aydoğmuş, E., Arslanoğlu, H., Yalçin, Z. G., & Barlak, S. (2025). Development of polyurethane‐based composites with salt clay and industrial wastes as fillers: Corrosion, mechanical properties, and machine learning insights.

Dağ, M., Aydoğmuş, E., Arslanoğlu, H., & Yalçın, Z. G. (2025). Exploring role of polyester composites in biocomposites for advanced material technologies: A comprehensive review.

Arslan, S., Yalçın, Z. G., Dağ, M., & Akın, M. B. (2024). The role of carbon in lead-acid batteries: Applications, challenges, and future opportunities. Uluslararası Batı Karadeniz Mühendislik ve Fen Bilimleri Dergisi.

Pıçakçı, E., & Yalçın, Z. G. (2023). Effects of high level of lead (II) oxide (PbO) usage on accumulator and response surface method.

Dağ, M., Aydoğmuş, E., Yalçin, Z. G., & Arslanoğlu, H. (2023). Diatomite reinforced modified safflower oil-based epoxy biocomposite production: Optimization with RSM and assessment of outcomes by ANN.

Xiaohui Ren | Environmental Pollutant Detection | Best Researcher Award

Dr. Xiaohui Ren | Environmental Pollutant Detection | Best Researcher Award

Instructor at Yancheng Institute of Technology | China

Dr. Xiaohui Ren is an accomplished Instructor at the Yancheng Institute of Technology, whose career reflects a strong dedication to advancing research in environmental sciences and applied chemistry. With a solid academic foundation and long-term engagement in cutting-edge methodologies, Ren has cultivated expertise across molecular imprinting technology, surface-enhanced Raman scattering (SERS), fluorescence technology, water pollution chemistry, and computational chemistry, achieving significant outcomes in pollutant detection and environmental monitoring. In addition to teaching and academic responsibilities, Ren has actively contributed to innovative research initiatives, including the development of pulp molding products derived from waste paper fibers, showcasing both scientific rigor and a commitment to sustainable solutions. Her scholarly output has been widely recognized, with more than 10 first-author papers published in high-impact international journals such as Biosensors and Bioelectronics, Microchimica Acta, and Applied Surface Science, reflecting her ability to generate impactful knowledge in the global scientific community. Ren’s research interests lie primarily in environmental pollutant detection and the application of advanced chemical and analytical techniques to address pressing ecological and industrial challenges. Beyond research, she is also an active member of the China Textile Engineering Association, where she engages with peers to exchange knowledge and foster innovation within the field. Her work is distinguished not only by technical depth but also by its translational potential in addressing sustainability and environmental health issues, aligning scientific inquiry with practical applications. Through consistent innovation, impactful publications, and a focus on bridging fundamental science with real-world environmental needs, Dr. Xiaohui Ren continues to strengthen her role as a dynamic researcher and educator. Her ongoing contributions exemplify dedication to both scientific advancement and societal benefit, positioning her as a promising leader in her field and a deserving candidate for recognition through prestigious awards.

Profile: ORCID

Featured Publications

Ma, W., Cai, H., Xiang, Z., & Ren, X. (2024). Iron and nitrogen co-doped carbon catalysts derived from ZIF-8 towards enhanced peroxymonosulfate activation and contaminants removal: The synergistic effects of FeN and α/γ-Fe species.

Song, X., Zhang, Y., Ren, X., Tang, D., Zhang, X., & Li, X. (2024). Self-cleaning SERS sensor based on flexible Ni₃S₂/MoS₂@Ag@PDMS composites for label-free multiplex volatile organic compounds detection.

Song, X., Zhang, Y., Ren, X., Zhang, X., Tang, D., Wu, J., & Li, X. (2023). Fabrication of flexible multidimensional CC/MoS₂@Ag@PDMS hybrids as stable and self-cleaning SERS substrate for sensitive and quantitative point-of-care testing.

Guo, H., Ren, X., Song, X., & Li, X. (2023). Preparation of SiO₂@Ag@molecular imprinted polymers hybrid for sensitive and selective detection of amoxicillin using surface-enhanced Raman scattering.

Song, X., You, X., Ren, X., Zhang, X., Tang, D., & Li, X. (2023). Vertically aligned Ag-decorated MoS₂ nanosheets supported on polyvinyl alcohol flexible substrate enable high-sensitivity and self-cleaning SERS devices.

Song, X., Ren, X., Tang, D., & Li, X. (2022). Specific iodide effect on surface-enhanced Raman scattering for ultra-sensitive detection of organic contaminants in water.

Ren, X., Feng, X., Li, X., & Li, X. (2021). Preparation of silver with an ultrathin molecular imprinted layer for detection of carbendazim by SERS.