Aricson Pereira | advanced composites | Manufacturing Excellence Award
Mr.Aricson Pereira , Procept Biorobotics , United States.
Mr.Aricson Pereira is a chemical engineer and researcher with expertise in advanced materials, nanotechnology, and sustainable engineering. He holds a Masterโs in Chemical Engineering from the University of Louisiana at Lafayette and a Bachelor’s from Pune University. Passionate about innovation, he has contributed extensively to high-impact research in metamaterials, MOFs, and nanofabrication. His work spans diverse applications, from electrorheology to AI-based thermal management in EVs. Currently pursuing a Project Management Certification at UC Berkeley, he continues to explore cutting-edge advancements in chemical engineering and material sciences. His research contributions have earned recognition in reputed journals and international conferences. ![]()
![]()
Publication Profile
Orcid
Scopus
Google Scholar
Education & Experienceย 

ย Master of Science in Chemical Engineeringย โ University of Louisiana at Lafayette (2012-2014)
ย Bachelor of Engineering in Chemical Engineeringย โ Pune University (2005-2009)
ย Pursuing Project Management Certificationย โ UC Berkeley
ย Researcher & Authorย โ Published in high-impact journals (Springer, De Gruyter, ES Energy & Environment)
ย Conference Presenterย โ Presented research at IEOM conferences in Washington DC, Germany, Tokyo, and Sydney
ย Industrial Experienceย โ Focused on sustainable materials, AI-driven equipment monitoring, and advanced composites
Suitability Summary
Mr.Aricson Pereira, a distinguished chemical engineer, is a deserving candidate for the Manufacturing Excellence Award, recognizing his groundbreaking contributions to nanomaterials, sustainable manufacturing, and AI-driven industrial advancements. With an extensive portfolio of high-impact research publications, international conference presentations, and academic mentorship, Pereira has made significant strides in material science, energy efficiency, and smart manufacturing.
Professional Developmentย 

Mr.Aricson Pereira is committed to professional growth through research, innovation, and continuous learning. With expertise in AI-driven chemical processes, metamaterials, and sustainable engineering, he has contributed significantly to high-impact journals and global conferences. His research on nanotechnology, electrorheology, and AI-assisted asset monitoring showcases his multidisciplinary approach. Currently advancing his knowledge through a Project Management Certification at UC Berkeley, he actively collaborates with experts worldwide. Aricsonโs dedication to scientific advancements extends beyond academia, as he explores industrial applications of novel materials in energy storage, healthcare, and environmental sustainability. ![]()
![]()
![]()
Research Focusย 

Mr.Aricson Pereira research spans multiple cutting-edge domains in chemical and material engineering. His work on MOFs (Metal-Organic Frameworks)ย explores their potential for mitigating air pollution. Inย high-entropy materials, he investigates unique applications in advanced composites. His contributions toย electrorheologyย involve nanodiamond/PDMS nanofluids and their behavior under oscillatory shear. He also exploresย metamaterials and AI-based predictionsย for selective reflective films. His research inย battery thermal managementย for EVs andย smart materials for biomedical applicationsย underscores his multidisciplinary expertise. Aricson continues to push the boundaries of sustainable engineering, leveraging AI for innovative solutions in material science.ย ![]()
![]()
![]()
Awards & Honorsย 

ย Co-Author of High-Impact Research Publicationsย โ Advanced Composites & Hybrid Materials (IF 23.1)
ย Recognized Speaker at International Conferencesย โ IEOM (Washington DC, Germany, Tokyo, Sydney)
ย Published Research on AI-Driven Equipment Monitoring & Electrorheologyย in leading journals
ย Best Poster Presentationย โ AIChE Annual Meeting on Nanodiamond Rheology
ย Contributor to Sustainable Engineering Innovationsย โ Transforming Waste Thermoplastics into Petrochemicals
ย Published Work in Top-Tier Journalsย โ ES Energy & Environment, De Gruyter, and Springer
Publication Top Notes
- Progress of MOFs for Air Pollution Mitigationย (2024) โย Cited by: XXย
ย
ย 
- High-Entropy Materials and Their Unique Applicationsย (2024) โย Cited by: XXย
ย 
- Electrorheology of Diamond/PDMS Nanofluidsย (2024) โย Impact Factor: 5.6ย

- Effect of Absorber Layer Thickness on Perovskite Solar Cellsย (2025) โย Cited by: XXย


- A Study on Doping Silver Nanowires in Cesium Tungsten Bronze Thin Filmsย (2025) โย Cited by: XXย


- From Concept to Creation: Micro/Nanobot Biomedical Applicationsย (2024) โย Cited by: XXย


- Smart Manufacturing Technologies: Implementation & Reviewย (2024) โย Cited by: XXย


- Artificial Intelligence-Based Thermal Management for EVsย (2024) โย Conference Paperย


- Simulation of Selective Reflective Films Using AIย (2024) โย Cited by: XXย






ย |ย ย Year:ย 2017
ย |ย ย 2023
. As a faculty member in the Chemistry Department at Shiraz Universityย
, she focuses on the development of advanced polymeric catalysts,
. Passionate about innovative chemical processes, Dr. Ghasemi has shared her findings at numerous national and international conferencesย
. A dedicated educator, she has made significant contributions to the academic and research landscape through her extensive teaching experience, inspiring future generations of chemistsย
.
ย Teaching Experience: Bachelorโs and Masterโs courses in organic and polymer chemistry, laboratory courses, and specialized topics in polymer synthesis and characterization.
. She actively participates in Iran’s Chemical and Polymer Societiesย
ย and has presented her research at esteemed conferences, sharing insights on
. Her continuous commitment to professional growth is evident in her ongoing contributions to scientific research, mentorship, and educational enrichment within Shiraz Universityย
. Her work includes the synthesis of controlled polymers and
. She also explores mechanical enhancements in industrial polymers, using polymers as carriers for targeted drug delivery, and developing highly absorbent hydrogelsย
. This multidisciplinary approach supports innovations in sustainable materials, pharmaceuticals, and environmental technologiesย
ย Presenterย – 8th International Conference on Chemistry, Chemical Engineering, and Petroleum, 2021
ย Speakerย – 10th National Biennial Seminar on Chemistry and Environment (Webinar), 2021





