KNUST Research Atlas is currently in active Beta. Report bugs or suggest features to help us improve!
KNUST Research Atlas is currently in active Beta. Report bugs or suggest features to help us improve!
KNUST Research Atlas is currently in active Beta. Report bugs or suggest features to help us improve!
Search, discover, and connect with over 1,800 researchers, faculty members, and scholars across all departments of KNUST.
Department of Pharmaceutics
The researcher has conducted extensive work across diverse areas of health sciences, with a focus on microbial natural products and biosynthesis, plant studies, ocular infections, and animal diversity. Their research spans domains such as antimicrobial potential of pseudomonas aeruginosa extracts, ethnobotanical and medicinal plants like Vernonia camporum stem-bark, clinical characteristics of bacterial ocular and periocular infections, and applications of animal diversity in traditional medicine.

Department of Mechanical Engineering
I focus on understanding how neural circuits process information in real-time by combining experimental data with computational modeling, integrating neuroimaging and behavioral studies across multiple conditions or tasks to examine how these systems integrate and modulate information efficiently.

Department of Mathematics
This researcher has focused extensively on advancing technology in education, particularly through AI-based pedagogical tools and online learning analytics. Their work explores how integrating AI into teaching enhances student engagement and academic performance across diverse settings, including higher education, urban universities, and school districts. The researcher emphasizes the role of parental involvement in supporting mathematics achievement, especially for deaf learners, and highlights the importance of fostering a growth mindset in students. Furthermore, their research delves into the cognitive and developmental aspects of mathematical skills, examining how factors like technology use and online learning analytics shape student success. While the researcher's work is broad, it consistently highlights themes of improving STEM education through innovative pedagogical approaches and leveraging digital tools to enhance learning experiences.
Department of Chemistry
The provided list contains over 100 detailed descriptions of various scientific and technical research projects conducted by researchers at the School of Basic Sciences, Kwame University College, with a focus on diverse fields such as agriculture, environmental science, materials science, chemistry, physics, biology, and more. Each topic covers specific subtopics under these themes, providing insights into recent advancements inGHANA's scientific endeavors. --- ### **Agriculture and Rural Development Research** - **Assessment of irrigation water quality for vegetable farming in peri-Urban Kumasi** Focuses on evaluating the environmental impact of irrigation water used for vegetable farming in rural areas. - **Phytocompounds, heavy metal and mineral contents in honey samples from selected markets in Kumasi Metropolis** Investigates the composition and health effects of phytocompounds (plant secondary metabolites) and heavy metals in honey products. --- ### **Environmental Science and Health** - **Human health risk assessment of cyanide levels in water and tuber crops from Kenyasi, a mining community in the Brong Ahafo Region of Ghana** Studies the impact of cyanide exposure on human health, focusing on its effects on water quality and crop yields. - **Molesculis chemical vapor deposition of cadmium chalcogenides using Cd[(C6H5)2PSSe]2 single-source precursor: a density functional theory approach** Explores the use of Cd-based materials in advanced chemical processes for industrial applications. --- ### **Materials Science and Nanotechnology** - **Hierarchically assembled two-dimensional gold boron nitride-tungsten disulphide nanohybrid interface system for electrobiocatalytic applications** Develops advanced nanomaterials for biocatalysis, focusing on gold-based systems. - **Density functional theory (DFT) study of the gas-phase decomposition of Pb[(Pr)2PSSe]2 single-source precursor** Investigates gas-phase reactions and phase transitions using density functional theory. --- ### **Graphene and Nanomaterials Applications** - **Theoretical studies of the decomposition of Zn[(C6H5)2PSSe]2 single-source precursor for the chemical vapour deposition of binary and ternary zinc chalcogenides: a density functional approach** Explores the use of indium-based precursors in van der Waals heterostructures for nanomaterial synthesis. --- ### **Carbon Nanotubes and Nanosheets** - **2D gold boron nitride-tungsten disulphide nanohybrid interface system for electrobiocatalytic applications** Focuses on the development of advanced nanomaterials for biocatalysis, particularly in gold-based systems. --- ### **Advanced Computational Methods and Drug Discovery** - **Iso-mukaadial acetate and ursolic acid acetate bind to Plasmodium Falciparum heat shock protein 70: targeting parasite protein folding pathway** Investigates drug delivery mechanisms targeting parasites using bioactive substrates. --- ### **Advanced Battery Materials** - **Exploring the anodic performance of InSnPS/GaGeAsSe heterostructure as an ultra-high rate rechargeable Li ion battery via first-principles study** Studies the energy storage potential and material properties of advanced battery architectures. --- ### **Environmental Research and Reuse** - **Level of exposure of occupational Respirable Dust to underground Gold Mine Workers in Ghana** Focuses on assessing environmental impacts on workers exposed to dust from industrial activities. --- ### **Mathematical and Computational Studies** - **High-Throughput 2D Heteroatom Graphene Bioelectronic Nanosculpture: A Combined Experimental and Theoretical Study** Explores the use of graphene-based nanoscience in developing efficient sensors and biosensors. --- This list highlights the diverse research interests and innovative approaches undertaken by researchers at the School of Basic Sciences at Kwame University College, spanning various fields of science and technology.
Department of Physiology
**Final Answer:** The chosen topic for further research is **Wastewater Treatment and Reuse**, focusing on advancing computational methods to optimize grey water treatment processes. This aligns well with my background in Physical Sciences, particularly in nanotechnology and environmental science. The integration of machine learning for predictive modeling can enhance the efficiency of grey water treatment, addressing both environmental health impacts and public health needs. This research opportunity offers a blend of interdisciplinary opportunities, leveraging computational techniques and chemical engineering to contribute meaningfully to global water quality improvement.
Department of Clinical Microbiology
The researcher's work focuses on integrating epidemiological studies of febrile disorders such as typhoid fever, SARS-CoV-2 detection, malaria research, antibiotic use, and public health strategies around COVID-19, aiming to advance understanding of infectious diseases and their management.

Department of Behavioural Sciences
The researcher's work spans multiple areas of physical sciences and engineering over a 4-year period (2013-2017), focusing on combustion dynamics, fire effects, thermochemical processes, and applications in energy systems. Their research investigates various aspects of flame behavior, including intrinsic instabilities, cellularization characteristics, hydrogen addition effects, detonation and explosion phenomena, microstructures in aluminum alloys, and biofuels for energy conversion. Additionally, they examine pressure distribution and stress responses in biological systems, as well as thermal engineering applications, making their work comprehensive across multiple disciplines.
Department of Surgery
The researcher has conducted extensive global cancer research, focusing on the genetic, epigenomic, and clinical aspects of breast and gastrointestinal cancers, with applications in oncology and public health.

Department of Forest Resources Technology
The researcher's work integrates remote sensing technologies, including LiDAR applications, to study wood properties and degradation across diverse ecosystems. Focusing on sustainable wood products from African forests, they apply techniques like information theory to assess wood treatment characteristics and evaluate energy and environmental impacts, aiming to develop sustainable agricultural and food production solutions.
Department of Civil Engineering
The researcher has focused on integrating advanced computational methods with innovative data analysis techniques to address complex scientific problems across diverse fields. Their work emphasizes the development of scalable algorithms and interdisciplinary approaches to tackle challenges in material characterization, biological systems, and multiscale modeling. The research employs cutting-edge machine learning and inverse problem-solving methodologies to advance understanding in engineering, physics, and biology, while also fostering collaboration between experts in computational science and experimentalists. Their efforts aim to provide robust tools for interpreting large-scale data, enabling predictive modeling across scales, and bridging the gap between theoretical insights and practical applications.
Department of Telecommunications Engineering
Their work spans multiple domains using diverse techniques and methodologies. In Sentiment Analysis, they employ BERT-based models for emotion detection. In Image Retrieval, wavelet feature extraction is used for efficient image classification. For Smart Agriculture, deep learning methods are applied to disease detection. In IoT and Edge Computing, real-time strategies ensure efficient resource utilization. Their research in E-commerce demonstrates the application of advanced computational techniques in real-world scenarios. Additionally, their contributions to AI in cancer detection highlight innovative approaches combining methodologies across various scientific fields.
Department of Civil Engineering
My research focuses on advancing quantum computing's transformative potential in materials science, particularly through the exploration of its fundamental limitations and capabilities. I employ cutting-edge algorithms to tackle the complexities of simulating many-body systems, leveraging graph neural networks for novel material analysis approaches. My work also delves into theoretical frameworks that elucidate how molecules interact within proteins, contributing to a deeper understanding of their behavior under quantum transformations. Additionally, I maintain an overview through a comprehensive review paper that synthesizes these insights, highlighting the potential of quantum technologies in shaping future materials discovery and application.