Assoc. Prof. Dr. Jan Kruzelak | biodegrability | Best Researcher Award
Researcher, Slovak University of Technologyy, Slovakia
Assoc. Prof. Ján Kruželák, PhD. is a prominent Slovak researcher and educator in the field of polymer chemistry and rubber technology. With an academic journey rooted at the Slovak University of Technology in Bratislava, he has contributed significantly to the advancement of sustainable rubber materials and cross-linking systems. His extensive academic experience, combined with research excellence, has made him a leading expert in elastomer development and rubber recycling. 🌍🔬
Profile
🎓 Education
Dr. Kruželák completed his Bachelor’s (2002–2005), Master’s (2002–2007), and PhD (2007–2011) degrees at the Slovak University of Technology in Bratislava, followed by postdoctoral studies (2011–2012) at the same institution. His strong educational foundation laid the groundwork for a focused and impactful research career in polymer science. 📚🎓
💼 Professional Experience
Since 2012, he has been an integral part of the Department of Plastics, Rubber, and Fibres at the Slovak University of Technology, first as an Assistant Professor (2012–2017), and currently as an Associate Professor (2017–present). He has supervised numerous theses at all academic levels, mentored PhD students, and represented Slovakia in international rubber research forums like IRCO. 🏫🧪
🔬 Research Interest
Dr. Kruželák’s work focuses on the development of rubber materials enhanced by magnetic, biopolymer, and traditional fillers. His specialties include sulfur and peroxide vulcanization systems, optimizing filler-rubber interaction, and valorizing waste rubber. His work bridges sustainability with advanced material performance, pushing the boundaries of elastomeric innovation. 🌱🧬
🏆 Awards and Honors
📚 Publications
Sulfur and Peroxide Cross-Linking of Lignosulfonate-Filled Compounds Based on Acrylonitrile–Butadiene Rubber and Styrene–Butadiene Rubber
Polymers, 2025 – Cited by 0
Influence of Plasticizers on Cross-Linking Process, Morphology, and Properties of Lignosulfonate-Filled Rubber Compounds
Polymers, 2025 – Cited by 1
Strategy for Reducing Rubber Wear Emissions: The Prospect of Using Calcium Lignosulfonate
Express Polymer Letters, 2024 – Cited by 1
Sulfur and Peroxide Curing of NBR-Based Rubber Compounds Filled with Kraft Lignin and Calcium Lignosulfonate
Journal of Applied Polymer Science, 2024 – Cited by 1
The Impact of Surface Roughness on Conformal Cooling Channels for Injection Molding
Materials, 2024 – Cited by 5
Sulfur and Peroxide Vulcanization of Blends Based on SBR, EPDM, and Their Combinations
Materials, 2024 – Cited by 0
Electrical Conductivity, EMI Shielding, and Mechanical Properties of Rubber Composites
Polymers, 2024 – Cited by 8
Electromagnetic Absorption Shielding and Mechanical Properties of Rubber Composites
Polymers for Advanced Technologies, 2024 – Cited by unknown
🏁 Conclusion