Shashikala BS | Material Science | Research Excellence Award

Dr. Shashikala BS | Material Science | Research Excellence Award

JSS Science and Technology University | India

Dr. Shashikala B. S. is a distinguished researcher at JSS Science and Technology University, Mysore, India, specializing in materials science and nanotechnology with a focus on advanced energy storage systems. With 10 publications cited 77 times, she has contributed significantly to the development of polymer nanocomposites, particularly exploring the synergistic effects of Core-Shell PANI/HNT nanofillers in polycarbonate films to enhance structural integrity, electrical permittivity, and thermal stability. Dr. Shashikala has collaborated extensively with a network of 39 co-authors, fostering interdisciplinary research and advancing innovation in functional materials. Her work not only strengthens the scientific understanding of polymer nanocomposites but also holds practical implications for sustainable energy solutions, reflecting a commitment to societal and technological impact. Recognized for her rigor and scholarly contributions, she continues to influence both academic research and applied materials engineering.

Citation Metrics (Scopus)

77
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Citations

77

Documents

10

h-index

5

Citations

Documents

Documents

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Top 5 Featured Publications

Ahmed A. Ahmed | Infrastructure materials | Editorial Board Member

Assoc. Prof. Dr. Ahmed A. Ahmed | Infrastructure materials | Editorial Board Member

Assistant Professor | Mustansiriyah University | Iraq

Dr. Ahmed A. Ahmed is a civil engineering researcher at Mustansiriyah University, Baghdad, Iraq, recognized for his contributions to sustainable construction materials and innovative concrete technologies. With a Scopus-indexed record of 12 publications, 77 citations, and an h-index of 5, his work demonstrates a consistent commitment to advancing environmentally responsible engineering solutions. His research focuses on the development and performance evaluation of alternative binders, fiber-reinforced composites, and agricultural waste-derived additives that enhance the mechanical, durability, and thermal properties of concrete systems. A notable recent contribution is his open-access article on concrete masonry unit mixtures incorporating citric acid-treated corn stover ash and alkalinized corn stover fibers, reflecting his emphasis on circular-economy practices and low-carbon construction methodologies. Dr. Ahmed collaborates with multidisciplinary teams across materials science, structural engineering, and environmental engineering, supporting the integration of sustainable design principles into contemporary infrastructure. His research outputs have been cited in diverse international studies, evidencing the practical relevance and applicability of his findings to global construction challenges. Beyond academic publications, he contributes to capacity building in engineering education and fosters collaborative opportunities within the regional research community. Through his combined efforts in experimental research, innovation in eco-friendly materials, and knowledge dissemination, Dr. Ahmed is strengthening the scientific foundation for more resilient, efficient, and sustainable building practices in Iraq and beyond.

Profiles: Scopus | ORCID

Featured Publications

1. Shakouri, M., & Ahmed, A. A. (2025). Performance Evaluation of Concrete Masonry Unit Mixtures Incorporating Citric Acid-Treated Corn Stover Ash and Alkalinized Corn Stover Fibers. Buildings, 15(17), 3213.

2. Ahmed, A. A., Shakouri, M., & Abraham, O. F. (2025). Assessing the Impact of Graphene Nanoplatelets Aggregates on the Performance Characteristics of Cement-Based Materials. Sustainability, 17(6), 2349. Cited by: 2

3. Shakouri, M., Ahmed, A. A., & Teymouri, M. (2024). Evaluating the performance of thermomechanically beneficiated fly ash blended mortar. Construction and Building Materials. Cited by: 5

Dr. Ahmed A. Ahmed advances sustainable construction materials through innovative use of agricultural waste, contributing to resilient infrastructure and reduced environmental impact. His work bridges scientific innovation with practical industry solutions, supporting global efforts toward greener, cost-effective civil engineering technologies.