Shah Mohammad Azam Rishad | Composite Materials Science | FRP Composite Material Science Breakthrough Award

Mr. Shah Mohammad Azam Rishad | Composite Materials Science | FRP Composite Material Science Breakthrough Award

Khulna University of Engineering & Technology, Bangladesh

Profile:

Current Position📊

Shah Mohammad Azam Rishad is an Assistant Researcher at Khulna University of Engineering & Technology (KUET), Bangladesh. His role involves active participation in cutting-edge research, where he integrates advanced materials science with computational approaches to tackle pressing challenges in the field. His primary focus is on Nano Trimaterial bonded joints and Ultra-High Temperature Ceramic Matrix Composites (UHTCMCs). With a strong inclination toward interdisciplinary research, Shah is continuously contributing to innovations in materials design and performance optimization. 

Publication Achievements📚

Despite being early in his career, Shah Mohammad Azam Rishad has already contributed to several key publications in renowned scientific journals. His work on the prediction, optimization, and evaluation of Nano Trimaterial bonded joints using Finite Element Method (FEM) combined with various Machine Learning algorithms such as Random Forest, Neural Network, Support Vector Regression (SVR), and Decision Tree Regressor has received significant attention from the academic community. His publications explore the intersection of materials science and computational intelligence, making his research invaluable for industries aiming to optimize material behaviors and structural performance. 

Ongoing Research🔬

Currently, Shah is deeply involved in two main research areas. One of his ongoing projects explores UHTCMCs (Ultra-High Temperature Ceramic Matrix Composites) and MMCs (Metal Matrix Composites). His research focuses on the fabrication processes of these materials, along with their microstructural analysis using state-of-the-art techniques like SEM imaging, EDS, and mapping. Shah’s goal is to better understand the material behaviors and unlock potential applications in industries such as aerospace, automotive, and electronics. His work on Nano Trimaterial bonded joints continues, where machine learning algorithms are employed to predict and enhance the structural performance of advanced materials. 

Research Interests🔍

Shah’s research interests lie at the confluence of computational materials science, machine learning, and structural mechanics. He is particularly focused on developing innovative solutions for enhancing the mechanical properties of composites and nanomaterials. His areas of interest include:

  • Machine Learning Applications in Materials Science
  • Nano Trimaterial Bonded Joints
  • Ultra-High Temperature Ceramic Matrix Composites (UHTCMCs)
  • Metal Matrix Composites (MMCs)
  • Finite Element Method (FEM) for Structural Optimization
    His passion for merging materials science with artificial intelligence has opened new avenues for optimizing material properties and creating smarter, more resilient structures. 

Academic Background🎓

Shah Mohammad Azam Rishad holds a strong academic foundation in engineering and materials science, which has paved the way for his successful research endeavors. His education at KUET provided him with the skills necessary to excel in both theoretical and practical aspects of materials research. His academic journey reflects a commitment to understanding the deeper mechanics of materials and their applications across industries. 

Scholarships and Awards🏆

Throughout his academic career, Shah has been the recipient of numerous scholarships and academic awards, acknowledging his dedication to research and innovation. His ability to secure funding for research projects and his academic excellence have set him apart as a promising researcher in the field of materials science. 

Bioinformatics💻

While Shah’s core expertise lies in materials science, his interdisciplinary approach to research also draws upon aspects of bioinformatics. By applying computational methods to the analysis of material structures, Shah incorporates data-driven strategies to solve complex problems in materials behavior and optimization. His understanding of computational tools allows him to model and simulate material properties with high precision, leading to innovative research outcomes. 

Professional Associations🌐

Shah is a member of several professional societies and associations, which provide him with a platform to collaborate with fellow researchers and stay updated on the latest advancements in materials science. His involvement in these organizations reflects his commitment to expanding his network and contributing to the scientific community on a broader scale. 

Training & Workshops🎓

To further enhance his research capabilities, Shah actively participates in national and international workshops and training programs. These experiences allow him to stay abreast of the latest trends in materials research and computational methods. He has received hands-on training in microstructural analysis techniques, FEM simulation, and machine learning algorithms specific to materials science. 

Oral Presentation🎤

Shah has presented his research findings at various conferences and symposia, where he shared his insights on the potential applications of machine learning in optimizing material properties. His ability to communicate complex ideas effectively has garnered attention and appreciation from peers and experts in the field. 

Tasks Completed as a Researcher🛠️

Shah has successfully completed numerous tasks as a researcher, including the design and execution of experiments, data analysis using machine learning models, and the publication of his findings in respected journals. His responsibilities extend to mentoring junior researchers and collaborating with other faculty members to push the boundaries of materials science. 

Success Factors🚀

The key to Shah’s success lies in his problem-solving mindset, interdisciplinary knowledge, and commitment to innovation. His ability to seamlessly blend theoretical knowledge with practical applications has allowed him to make significant contributions to his field. His work ethic and continuous pursuit of excellence have earned him a reputation as a dedicated and forward-thinking researcher. 

Publications & Laboratory Experience🏭

Shah’s extensive laboratory experience in fabrication, microstructural analysis, and mechanical testing has been pivotal in his research. His publications reflect his in-depth knowledge of advanced materials and his ability to apply computational models for optimization. The hands-on experience Shah has gained in the lab has been complemented by his proficiency in FEM analysis and machine learning tools, making his contributions both practical and innovative. 

📖Publications:

Paper Title: Evaluation of Stress Distributions in Trimaterial Bonded Joints with Nano-Resin Adhesive Using Machine Learning Models

  • Authors: SMA Rishad, MS Islam, MA Islam
  • Journal: Results in Materials
  • Year: 2024

Paper Title: Analysis of Stress Distribution of CFRP Bonded Joints: A Study of Numerical and Machine Learning Approach

  • Authors: SMA Rishad, MA Islam, MS Islam
  • Journal: Available at SSRN
  • Year: 2024

 

Mukhlis A Rahman | Composite Materials Science | FRP Academic Excellence Award

Assoc Prof Dr. Mukhlis A Rahman | Composite Materials Science | FRP Academic Excellence Award

University Teknologi Malaysia, Malaysia

Profiles:

🏛️Current Position

Dr. Mukhlis bin A Rahman is a renowned professor at the Department of Energy Engineering, Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia (UTM), where he specializes in ceramic membranes and microporous materials for fluid separation. His work is pivotal in developing sustainable energy solutions. Dr. Mukhlis is also actively involved in teaching, mentoring students, and spearheading research initiatives that align with global energy needs.

🔬 Ongoing Research

Dr. Mukhlis is currently engaged in cutting-edge research on the application of ceramic membranes in fluid separation processes. His ongoing projects focus on enhancing the efficiency of microporous materials to improve separation and purification processes, which have widespread applications in industries such as water treatment, gas separation, and fuel cells. He is also exploring novel photocatalytic reactors for organic wastewater treatment, further extending his research to environmental sustainability.

🔎 Research Interests

  • Ceramic membranes for fluid separation: Developing advanced materials to improve separation processes in various industrial applications.
  • Microporous materials: Investigating new porous materials that can enhance separation efficiency.
  • Photocatalytic reactors: Exploring innovative solutions for the treatment of organic pollutants in wastewater.

His expertise extends to both theoretical and applied aspects of chemical engineering, particularly in membrane technology and its applications.

🎓 Academic Background

Dr. Mukhlis’ academic journey began with a Bachelor’s degree in Chemical Engineering from Universiti Teknologi Malaysia (UTM), completed in 2004. He later pursued a Master’s degree in Chemical Engineering (Gas) at UTM, finishing in 2006. His thirst for knowledge led him to Imperial College London, where he completed his Ph.D. in Chemical Engineering in 2011. This strong academic foundation has provided him with the expertise to contribute significantly to chemical and energy engineering fields.

🏅 Scholarships and Awards

Dr. Mukhlis has been the recipient of numerous prestigious awards throughout his career. 

  • 15 international awards, including recognition for his work on SPEEK-Nanoclay membranes.
  • 8 national awards, underscoring his contributions to Malaysia’s scientific and academic landscape.
  • 26 UTM awards, reflecting his excellence in research and teaching.
  • 5 faculty awards for his dedicated service to the Faculty of Chemical and Energy Engineering.

Notable honors include the Best of the Best Award and Gold Medal at PECIPTA 2013, as well as several Excellent Service Awards from UTM.

🧬 Bioinformatics Contributions

Although Dr. Mukhlis’ primary focus is on chemical engineering, his interdisciplinary approach has led him to explore bioinformatics applications, particularly in materials science and fluid dynamics. By incorporating computational models, he enhances the predictive power of his research on membrane technology.

👥 Professional Associations

Dr. Mukhlis is an active member of several professional associations, both national and international. His involvement in these organizations not only allows him to collaborate with other experts but also to stay updated on the latest advancements in his field.

🛠️ Training & Workshops

Throughout his career, Dr. Mukhlis has participated in various workshops and training sessions, contributing to his professional development. These programs have allowed him to refine his skills in advanced chemical engineering techniques, and he frequently shares his expertise by organizing and leading similar workshops for students and professionals.

🎤 Oral Presentations

Dr. Mukhlis has delivered numerous presentations at international conferences, sharing his insights on ceramic membranes and microporous materials. His engaging and informative talks have made him a sought-after speaker in the global chemical engineering community.

📝 Tasks Completed as a Researcher

Dr. Mukhlis has successfully completed several high-impact research projects. His work on developing novel ceramic membranes and photocatalytic reactors has advanced fluid separation processes. His projects often involve cross-disciplinary collaboration, reflecting his ability to work at the intersection of engineering, chemistry, and environmental science.

🌟 Success Factors

Dr. Mukhlis attributes his success to a combination of rigorous academic training, a passion for innovation, and a commitment to excellence. His ability to stay ahead of industry trends and his interdisciplinary approach have allowed him to make groundbreaking contributions to membrane technology.

🔬 Publications & Laboratory Experience

Dr. Mukhlis has an extensive list of publications in high-impact journals. His research is often cited by fellow academics, further solidifying his position as a leader in his field. His laboratory experience is equally impressive, having overseen numerous experiments that have led to the development of innovative materials for fluid separation.

📖Publications:

Paper Title: Effect of capillary pressure on the CO2 flux in the pores of membrane contactor: Theory and simulation results

  • Authors: Ahmad, S.N.A., Matsuura, T., Jaafar, J., Othman, M.H.D., A Rahman, M.
  • Journal: Chemical Engineering Research and Design
  • Year: 2023

Paper Title: Tailoring surface structure and diameter of etched fiber Bragg grating for high strain sensing

  • Authors: Koo, K.N., Ismail, A.F., Othman, M.H.D., A Rahman, M., Samavati, A.
  • Journal: Optics and Laser Technology
  • Year: 2023

Paper Title: Self-cleaning and anti-fouling superhydrophobic hierarchical ceramic surface synthesized from hydrothermal and fluorination methods

  • Authors: Abd Aziz, M.H., Othman, M.H.D., Tavares, J.R., A Rahman, M., Jaafar, J.
  • Journal: Applied Surface Science
  • Year: 2022

Paper Title: Adsorptive Membrane for Boron Removal: Challenges and Future Prospects

  • Authors: Mehanathan, S., Jaafar, J., Nasir, A.M., Bilad, M.R., Naseer, M.N.
  • Journal: Membranes
  • Year: 2022

Paper Title: A review of the potential of conventional and advanced membrane technology in the removal of pathogens from wastewater

  • Authors: Nasir, A.M., Adam, M.R., Mohamad Kamal, S.N.E.A., A Rahman, M., Wan Salleh, W.N.
  • Journal: Separation and Purification Technology
  • Year: 2022

 

Rubia Gouveia | Fiber Reinforcement in Composites | Best Researcher Award

DR. Rubia Gouveia | Fiber Reinforcement in Composites | Best Researcher Award

Brazilian Center for Research in Energy and Materials, Brazil

Profiles:

📝Introduction

Rubia Figueredo Gouveia is a dedicated researcher at the Brazilian Nanotechnology National Laboratory (LNNano), which is part of the Brazilian Center for Research in Energy and Materials (CNPEM) in Campinas, Brazil. In her role, she focuses on advancing the field of sustainable materials, particularly through her expertise in polymeric nanocomposites. Dr. Gouveia’s work is pivotal in exploring bio-based alternatives to traditional petroleum-derived materials, contributing significantly to the development of sustainable materials in her field.

📚 Publication Achievements

Dr. Gouveia has an impressive publication record, with 43 journal articles indexed in recognized databases like SCI and Scopus. Her contributions have garnered considerable attention in the scientific community, reflected in her citation indices: she has 2411 citations on Google Scholar with an H-index of 22, and 1613 citations on Web of Science with an H-index of 20. These metrics highlight the impact and recognition of her research on bio-based polymers and nanocomposites within the scientific community.

🔍 Ongoing Research

Currently, Dr. Gouveia is leading a groundbreaking project with a packaging paper company aimed at exploring the use of biopolymers in coating applications. This project, which runs from 2024 to 2027 with a substantial budget of R$ 1.7 million, exemplifies her commitment to developing sustainable solutions. Additionally, she collaborates with various companies and institutions to investigate nanocellulose’s potential as a filler in polymeric composites, further advancing the field of green materials.

🧪 Research Interests

Dr. Gouveia’s research interests revolve around bio-based polymers, nanocellulose, nanocomposites, and fibers. She is particularly focused on extracting nanostructures from biomass and developing high-performance alternatives to petroleum-derived materials. Her expertise in utilizing X-ray microtomography for advanced morphological characterization in relevant environmental conditions enables her to engineer well-organized and aligned porous structures, especially for filter and membrane applications. Her work also extends to bio-based adhesives and biopolymer-based nanocomposites for packaging and structural applications, emphasizing sustainability and innovation.

🎓 Academic Background

Dr. Gouveia holds a Bachelor of Science degree in Chemistry from the State University of Maringa (2003) and obtained her MSc (2005) and Ph.D. (2010) from the University of Campinas. Her doctoral thesis, which focused on innovative applications of chemistry, was recognized with the prestigious “Casimiro Montenegro Award” for the best thesis in Chemistry. This solid academic foundation paved the way for her successful career in research and development.

🏆 Scholarships and Awards

Throughout her academic and professional journey, Dr. Gouveia has received several accolades and scholarships. Notably, her Ph.D. thesis was awarded the Casimiro Montenegro Award, which underscores her exceptional contributions to the field of chemistry. Additionally, her work has been supported by four research grants from Brazilian public foundations and companies, allowing her to pursue innovative projects that have a significant impact on sustainable material development.

🔬 Bioinformatics and Professional Associations

Dr. Gouveia is actively involved in the bioinformatics community, where she utilizes computational tools and techniques to analyze and interpret data related to bio-based polymers and nanocomposites. Her involvement in professional associations, such as the Brazilian Nanotechnology National Laboratory (LNNano) and participation in organizing events like the 3rd Nanocellulose Workshop in Campinas, reflects her commitment to advancing the field of nanotechnology and fostering collaboration among researchers.

📅 Training & Workshops

Dr. Gouveia has participated in numerous training sessions and workshops to stay at the forefront of her field. Her continuous learning approach ensures that she remains up-to-date with the latest advancements in nanotechnology and sustainable materials. This commitment to professional development has equipped her with the skills and knowledge necessary to lead cutting-edge research projects and contribute to the global scientific community.

🎤 Oral Presentations

As a thought leader in her field, Dr. Gouveia has delivered numerous oral presentations at national and international conferences, sharing her research findings and insights with peers. Her presentations often focus on the innovative use of bio-based polymers and nanocomposites, highlighting the potential of sustainable materials to replace traditional petroleum-derived options. Her ability to effectively communicate complex scientific concepts to diverse audiences underscores her expertise and passion for her work.

✅ Tasks Completed as a Researcher

Throughout her career, Dr. Gouveia has successfully completed various research projects, ranging from the development of nanocellulose-based composites to exploring bio-based adhesives. Her work has involved extensive laboratory experimentation, data analysis, and collaboration with industry partners. By leading multiple research initiatives, she has demonstrated her ability to manage complex projects, meet deadlines, and deliver impactful results.

🌟 Success Factors

Dr. Gouveia attributes her success to her dedication, innovation, and collaboration with fellow researchers and industry partners. Her ability to think creatively and approach problems from different angles has enabled her to develop novel solutions for sustainable materials. Additionally, her strong network within the scientific community and industry has provided valuable opportunities for collaboration and knowledge exchange, further enhancing the impact of her research.

📖Publications:

Paper Title: Ultrafast microfluidic solvent extraction and machine learning-assisted impedimetric sensor for multidetermination of scaling ions in crude oils

  • Authors: da Silva, A.A., de Oliveira, R.A.G., Giordano, G.F., Gobbi, A.L., Lima, R.S.
  • Journal: Sensors and Actuators B: Chemical
  • Year: 2024

Paper Title: Enhancing Water Resistance in Cationic Cellulose Nanofibril Adhesive with Natural Rubber Latex

  • Authors: Silva, D.B., Nascimento, D.M., Claro, P.I.C., Gouveia, R.F., Bernardes, J.S.
  • Journal: ACS Applied Nano Materials
  • Year: 2024

Paper Title: From micro- to nano- and time-resolved x-ray computed tomography: Bio-based applications, synchrotron capabilities, and data-driven processing

  • Authors: Claro, P.I.C., Borges, E.P.B.S., Schleder, G.R., Fazzio, A., Gouveia, R.F.
  • Journal: Applied Physics Reviews
  • Year: 2023

Paper Title: Designing 3D fractal morphology of eco-friendly nanocellulose-based composite aerogels for water remediation

  • Authors: Lorevice, M.V., Claro, P.I.C., Aleixo, N.A., Martinez, D.S.T., Gouveia, R.F.
  • Journal: Chemical Engineering Journal
  • Year: 2023

Paper Title: How lignin sticks to cellulose—insights from atomic force microscopy enhanced by machine-learning analysis and molecular dynamics simulations

  • Authors: Nascimento, D.M., Colombari, F.M., Focassio, B., Driemeier, C., Bernardes, J.S.
  • Journal: Nanoscale
  • Year: 2023