Tayyaba Ghani | Materials Science | Best Researcher Award

Tayyaba Ghani | Materials Science | Best Researcher Award

Dr Tayyaba Ghani, Pakistan Institute of Engineering and Aplplied Sciences, Pakistan

Dr. Tayyaba Ghani: A Strong Contender for the Best Researcher Award

Publication  Profile

Google Scholar

Education

Dr. Tayyaba Ghani has an impressive academic background with a PhD in Materials and Surface Engineering from the National University of Sciences and Technology, Pakistan. She holds an MS in Materials Engineering from PIEAS, Islamabad, and an MSc in Physics from QAU, Islamabad, along with a B.Ed. from AIOU, Islamabad.

Professional Experience

Dr. Ghani has been serving as Principal Scientist at DMME, PIEAS, since 2016. Prior to this, she held roles as Senior Scientist (2007-2016) and Junior Scientist (2005-2007), showcasing a rich career in scientific research and leadership.

Awards and Honours

She has received numerous prestigious awards, including the 2017 Peking University Research Scholarship and the 2013 NUST University Fellowship. In 2005, she earned both the Best Thesis Certificate and a Gold Medal for her first position in MS Materials Engineering, with a PIEAS Fellowship supporting her studies.

Teaching Experience

Dr. Ghani has contributed significantly to academia, teaching courses like Structure and Properties of Materials, Corrosion and its Control, and Characterization of Materials at the MS and BS levels in Materials Engineering.

Research Experience

Her research focuses on nanomaterials, particularly nanostructured semiconductor oxides, and their applications in photovoltaics and photocatalysis. She is also known for her work on catalytic applications of nanomaterials.

Research Supervision

Dr. Ghani has supervised 7 PhD and 10 MS students, reflecting her expertise in guiding advanced research.

Publications

Dr. Ghani has co-authored numerous impactful research papers, with her latest publications in Solar Energy and Materials Chemistry and Physics in 2024, focusing on dye-sensitized solar cells and TiO2 nanoparticles.

Talks Delivered

Dr. Ghani has presented her work at various esteemed forums, including the 6th Conference on Emerging Materials and Processes organized by NUST and an international workshop at the National Centre for Physics, Islamabad.

Trainings Received

Dr. Ghani has continuously enhanced her professional skills through various training programs, such as the Professional Competency Enhancement Program for Teachers by HEC and a course on activated carbons at PIEAS.

Publication Top notes

Band structure tuning of ZnO/CuO composites for enhanced photocatalytic activity

Microfluidic platform for encapsulation of plant extract in chitosan microcarriers embedding silver nanoparticles for breast cancer cells

Corrosion behaviour of zinc–nickel alloy coatings electrodeposited in additive free chloride baths

Formation of carbon nanostructures on nickel acetate alcogel by CVD method and its OER electrocatalytic study in alkaline media

Highly ordered combined structure of anodic TiO2 nanotubes and TiO2 nanoparticles prepared by a novel route for dye-sensitized solar cells

Fabrication of self-branched TiO2 nanotubes by anodization method, ordering and crystallinity

Effect of Processing Temperature on the Morphology and Crystal Structure of Anodic TiO2 Nanotubes

Comparative study of microscale and macroscale technique for encapsulation of Calotropis gigantea extract in metal-conjugated nanomatrices for invasive ductal …

Conclusion

Dr. Tayyaba Ghani’s remarkable achievements in education, research, supervision, and academia make her a strong candidate for the Best Researcher Award. Her extensive work in nanomaterials and solar energy systems, alongside her recognized teaching and leadership, highlight her as a prominent figure in the field of materials engineering.

Rudi Dungani | Materials Science | Best Researcher Award

Rudi Dungani | Materials Science | Best Researcher Award

Assoc Prof Dr Rudi Dungani ,Institut Teknologi Bandung, Indonesia

Assoc. Prof. Dr. Rudi Dungani appears to be a strong candidate for the Best Researcher Award. His extensive research and contributions in biocomposites, nanocellulose, and polymer composites align well with criteria for innovation and academic excellence. Here are key points that support his candidacy:

Publication profile

Scopus

  1. Academic and Research Excellence: Dr. Dungani has a diverse academic background, with a Doctorate in Industrial Technology and substantial research grants focused on cutting-edge materials like nanocomposites and biopolymers. His work addresses sustainability challenges, particularly with bio-based materials.
  2. Publications and Impact: With numerous publications in high-impact journals like Bioresource Technology and Polymers, his research in materials science is well-cited, reflected by his Google Scholar H-index of 27 and Scopus H-index of 24. His patents also demonstrate a strong emphasis on innovation in nanomaterials and bio-composites.
  3. Recognition and Awards: He has received several prestigious awards, including being named in Stanford University’s list of the World’s Top 2% Scientists for three consecutive years, a clear indication of his influence and leadership in the field.
  4. Patents and Innovation: Dr. Dungani’s registered patents on nanocellulose and biocomposites underscore his contributions to advancing sustainable materials.
  5. International Collaboration and Mentorship: His work with international journals, collaborations on research projects, and contributions to conferences and seminars show his commitment to knowledge dissemination and global impact.

In summary, Dr. Dungani’s remarkable body of work in biocomposites, recognition from peers, and continued innovation make him an outstanding candidate for a Best Researcher Award.

Publication top notes

Physical, mechanical, and electrical conductivity characteristics of coconut shell-based H3PO4-Activated carbon/epoxy nanocomposites

A sustainable in situ synthesis of hydrophobic tung oil epoxy bifunctional nanocomposites with potential fire retardant and antioxidant properties

Preparation of superhydrophobic biomedical pulp from rice straw coated with a stearic acid-cellulose composite

Performance of Particleboard Made of Agroforestry Residues Bonded with Thermosetting Adhesive Derived from Waste Styrofoam