My research interests are centered on analytical chemistry, laboratory quality systems, sustainable chemical engineering, and the development of innovative technologies that improve industrial performance and environmental sustainability. I am particularly interested in translating practical laboratory experience into scientific research that addresses real-world challenges and contributes to technological advancement.
As an experienced laboratory professional, I seek to integrate analytical science, quality management, and process optimization with emerging research areas such as carbon nanomaterials, green chemistry, laboratory digitalization, and circular economy principles.
Development, validation, and optimization of analytical methods for industrial, environmental, and petrochemical applications using advanced analytical instrumentation.
Implementation and continual improvement of ISO/IEC 17025 laboratory management systems, quality assurance, measurement uncertainty, data integrity, and laboratory accreditation.
Development of sustainable technologies for converting industrial by-products into valuable chemicals and advanced functional materials that support circular economy initiatives.
Synthesis and characterization of carbon-based nanomaterials derived from petrochemical feedstocks for applications in environmental remediation, antimicrobial materials, catalysis, and energy storage.
Exploring innovative approaches to transform petrochemical by-products into high-value specialty chemicals and advanced carbon materials through sustainable engineering processes.
Application of Lean Six Sigma methodologies to improve laboratory efficiency, analytical reliability, workflow optimization, and operational excellence.
Integration of Laboratory Information Management Systems (LIMS), Enterprise Resource Planning (ERP), automation, artificial intelligence, and digital technologies to enhance laboratory productivity and data management.
Design of environmentally friendly analytical methods and sustainable chemical processes that minimize waste, improve resource efficiency, and reduce environmental impact.
My long-term research goal is to develop innovative analytical methodologies and sustainable engineering solutions that strengthen laboratory quality, improve industrial productivity, and contribute to the advancement of chemical engineering and analytical sciences. Through interdisciplinary collaboration and applied research, I aim to bridge the gap between industrial practice and academic innovation while supporting sustainable technological development.
Analytical Chemistry
Laboratory Quality Management
ISO/IEC 17025
Sustainable Chemical Engineering
Carbon Nanomaterials
Petrochemical By-products
Green Chemistry
Laboratory Digitalization
Lean Six Sigma
Process Optimization
Laboratory Information Management Systems (LIMS)
Measurement Uncertainty
Data Integrity
Industrial Analytics
Circular Economy