Mrs. Livia Macak | Nanocomposites Awards | Best Researcher Award

Mrs. Livia Macak | Nanocomposites Awards | Best Researcher Award

Mrs. Lívia MačÑk ,Technical university of Koőice, Slovakia

LΓ­via MačÑk is a versatile professional with a strong background in engineering and ongoing doctoral studies focused on the production of silver nanoparticles at the Technical University of KoΕ‘ice. With extensive experience in MS Office and specialized software like ImageJ and Mendeley, she adeptly manages data across platforms and utilizes graphic tools such as GIMP, Photoshop, and Illustrator for photo and graphic content creation. LΓ­via’s career includes diverse roles in marketing, HR, and administration, where she has honed her communication, problem-solving, and organizational skills. Currently pursuing a PhD, she actively contributes to teaching and research, employing a range of scientific instruments and participating in academic and professional development activities.

Professional Profile:

Scopus

πŸŽ“Education:

LΓ­via MačÑk holds a strong academic background from the Technical University of KoΕ‘ice, beginning with her Bachelor’s degree in processing and recycling of waste from the Faculty of Metallurgy, completed in 2010. She continued her education at the same institution, earning an engineering degree focused on non-ferrous metals and waste processing in 2013. Currently, LΓ­via is immersed in her doctoral studies at the Faculty of Materials, Metallurgy and Recycling, specializing in the production of silver nanoparticles. Alongside her research, she actively contributes to teaching materials engineering subjects, demonstrating her commitment to both academic pursuit and practical application within her field of expertise.

🏒Work Experience:

LΓ­via MačÑk’s career path has been marked by diverse experiences that have shaped her professional journey. During her university years, she gained valuable skills in marketing and human resources through various part-time positions. After completing her engineering studies, LΓ­via transitioned into roles within smaller companies where she further developed her computer proficiency, communication abilities, teamwork dynamics, and organizational acumen. Currently, LΓ­via is deeply involved in her doctoral research at the Technical University of KoΕ‘ice’s Faculty of Materials, Metallurgy and Recycling. Her focus lies on the production of silver nanoparticles, conducting detailed work in chemical laboratories. She employs advanced instruments such as UV-vis spectrophotometers, pH meters, and light microscopes for the preparation, characterization, and analysis of these nanoparticles, showcasing her dedication to advancing scientific knowledge in her field.

Publication Top Notes:

  • Transfer of AgNPs’ Anti-Biofilm Activity into the Nontoxic Polymer Matrix
    • Citations: 1
  • Preparation, Structure, and Properties of PVA–AgNPs Nanocomposites
    • Citations: 9
  • Influence of Reagents on the Synthesis Process and Shape of Silver Nanoparticles
    • Citations: 9
  • Synthesis and Analysis of Polymorphic Silver Nanoparticles and Their Incorporation into the Polymer Matrix
    • Citations: 8
  • The Influence of Reagents on the Shape, Stability, and Toxicity of AgNPs and Their Use to Produce Polymer-AgNPs Composites

 

 

Nanocomposites

Introduction of Nanocomposites

Nanocomposites research is at the forefront of materials science and engineering, focusing on the development of advanced materials that combine the unique properties of nanoscale materials with conventional matrices. These hybrid materials hold incredible potential for a wide range of applications, from aerospace to electronics, as they offer enhanced mechanical, electrical, and thermal properties, opening doors to unprecedented innovations.

Polymer Nanocomposites 🧬:

Explore the integration of nanoparticles into polymer matrices to create lightweight and durable materials with improved mechanical strength and flexibility. 🌟

Nanocomposites for Energy Storage ⚑:

Investigate the utilization of nanomaterials to enhance the performance of batteries and supercapacitors, enabling more efficient energy storage solutions. πŸ”‹

Carbon Nanotube Composites 🌐:

Delve into the world of carbon nanotube-based composites, known for their exceptional electrical conductivity and mechanical properties, and their potential in electronics and structural applications. πŸ’‘

Nanocomposites for Biomedical Applications πŸ’‰:

Examine how nanocomposites are being used in the development of biocompatible materials for drug delivery, tissue engineering, and medical devices, revolutionizing healthcare. πŸ₯

Nanocomposites in Aerospace πŸš€:

Discover the use of nanocomposites in aircraft and spacecraft construction, offering reduced weight, increased fuel efficiency, and improved resistance to extreme conditions. πŸ›°οΈ