Prof. Nonhlangabezo Mabuba – Photocatalytic Materials – Excellence in Research

Prof. Nonhlangabezo Mabuba - Photocatalytic Materials - Excellence in Research

University of Johannesburg - South Africa

EARLY ACADEMIC PURSUITS

Prof. Nonhlangabezo (Bezo) Mabuba began her academic journey by obtaining a Master of Science degree in Water Science from Duisburg-Essen Universität, Germany, in 2007, followed by a Ph.D. in Natural Sciences from the same institution in collaboration with ThyssenKrupp Steel AG, Hamborn, Germany, in 2010. These early academic pursuits laid the foundation for her future contributions to the field of Analytical Chemistry, Material and Processing Science.

PROFESSIONAL ENDEAVORS

Prof. Mabuba's professional journey has been characterized by various roles in academia, research, and leadership. She currently serves as an Associate Professor in the Department of Chemical Sciences at the University of Johannesburg (UJ), where she also holds the position of Acting Deputy Dean in the Faculty of Science. Over the years, she has held key positions such as Senior Lecturer, Deputy Director for the Centre of Nanomaterial Science Research, and Deputy Head of the Department of Chemical Sciences for teaching and learning at UJ.

CONTRIBUTIONS AND RESEARCH FOCUS

Prof. Mabuba's research focuses on the development of Photocatalytic Materials for water quality monitoring and treatment. She supervises students in exploring innovative applications of nanomaterials in (bio)sensors, (bio)adsorbents, and piezocatalytic materials. Her research is dedicated to advancing methods for efficient and sustainable wastewater quality monitoring and treatment, aligning with global efforts towards environmental sustainability.

IMPACT AND INFLUENCE

Prof. Mabuba's international visibility in the scientific community is evidenced by her high H-index on Google Scholar and Scopus. Her research outputs have contributed significantly to the field of Analytical Chemistry and Nanomaterial Science, with implications for water treatment technologies and environmental conservation efforts.

ACADEMIC CITATIONS

Prof. Mabuba's research findings have been cited extensively, reflecting their impact and relevance in the scientific community. Her work has garnered attention from peers, researchers, and professionals in the field, further solidifying her reputation as a leading expert in Photocatalytic Materials and water treatment.

LEGACY AND FUTURE CONTRIBUTIONS

Prof. Mabuba's legacy lies in her continued dedication to research excellence, mentorship, and community development. Through her leadership roles, collaborative efforts, and academic contributions, she aims to inspire future generations of researchers and make lasting contributions to the field of Photocatalytic Materials and environmental science.

PHOTOCATALYTIC MATERIALS

Prof. Mabuba's research expertise and focus revolve around Photocatalytic Materials, which play a crucial role in water quality monitoring and treatment. By leveraging nanomaterials and innovative approaches, she aims to develop efficient and sustainable methods for addressing water pollution and ensuring access to clean water resources. Through her research, Prof. Mabuba contributes to advancements in environmental science and sustainable development, with implications for global health and well-being.

NOTABLE PUBLICATION

Design of New Schiff-Base Copper(II) Complexes: Synthesis, Crystal Structures, DFT Study, and Binding Potency toward Cytochrome P450 3A4.  2021 (78)

Coupling cathodic electro-fenton with anodic photo-electrochemical oxidation: A feasibility study on the mineralization of paracetamol.  2020 (68)

Marzieh Shekarriz -Organic Chemistry – Editorial Board Member

Marzieh Shekarriz -Organic Chemistry - Editorial Board Member

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS:

Marzieh Shekarriz embarked on her academic journey, culminating in a Ph.D. in Organic Chemistry. Her early academic pursuits focused on establishing a strong foundation in organic chemistry, laying the groundwork for her future contributions.

PROFESSIONAL ENDEAVORS:

Dr. Shekarriz has amassed a wealth of professional experience, showcasing her expertise in various roles. Her significant roles include serving as the Head of the Chemical, Polymeric & Petrochemical Technology Development Research Division, Project Manager of the Novel Chemical Technology Research Group, and Head of the Petroleum Additive Research Department at RIPI in Iran. These roles highlight her leadership and management skills in overseeing research initiatives.

CONTRIBUTIONS AND RESEARCH FOCUS:

Dr. Shekarriz's contributions are diverse, spanning several areas of organic chemistry and technology development. Notably, her research interests encompass the synthesis of biofuels and nanomaterials, as well as the synthesis of antibacterial, organic, and organometallic compounds. Her involvement in managing projects related to the synthesis of nanoparticles, nanoemulsion fuels, and biofuels underscores her commitment to advancing novel chemical technologies.

IMPACT AND INFLUENCE:

As Head of the Chemical, Polymeric & Petrochemical Technology Development Research Division, and previously as Project Manager and Head of the Petroleum Additive Research Department, Dr. Shekarriz has left a significant impact on the research landscape. Her leadership in managing projects related to nanoparticles, biofuels, and petroleum additives demonstrates her influence in pioneering advancements in these fields.

ACADEMIC CITES:

Dr. Shekarriz's impact is likely evident in academic literature, particularly through her supervision and advisory role in 18 MSc theses and 7 Ph.D. theses. The successful guidance of numerous students attests to her influence in fostering the next generation of researchers.

LEGACY AND FUTURE CONTRIBUTIONS:

Marzieh Shekarriz's legacy is marked by her extensive contributions to the fields of organic chemistry, nanotechnology, and chemical technology. As a seasoned professional and mentor, her legacy is ongoing through the researchers and projects she has guided. Her future contributions are anticipated to further shape the landscape of chemical research and technology development.

NOTABLE PUBLICATION

Highly Efficient, Regio- and Stereoselective Ring Opening of Epoxides and Thiiranes with Ce(OTf)4.

Catalytic Esterification of Alcohols, Carboxylic Acids and Transesterification Reactions with Cerium(IV) Triflate.

Conversion of Epoxides to Thiiranes with Thiourea or Ammonium Thiocyanate Catalyzed with Poly(4-Vinyl Pyridine)-Ce(OTf)4.

Ring Opening of Epoxides with Sodium Cyanide Catalyzed with Ce(OTf)4.