Narges Vaezi | Analytical Chemistry | Best Research Article Award

Dr. Narges Vaezi | Analytical Chemistry | Best Research Article Award

Narges Vaezi is a dedicated researcher in the field of analytical and environmental chemistry, currently associated with the Department of Chemistry at the University of Zanjan, Iran. Born in 1986 in Saeinqaleh, Zanjan, Iran, she has consistently demonstrated a strong commitment to scientific research and academic excellence. Her work primarily focuses on environmental pollution analysis, the removal of heavy metals, and the development of advanced extraction techniques for environmental samples. Narges has significantly contributed to the academic community through her extensive involvement in student supervision, research publications, and participation in national and international conferences. She has successfully guided five MSc students in analytical chemistry, contributing to applied solutions for environmental challenges such as water pollution and heavy metal contamination. Narges has also co-authored a book on electrochemical experiments, further showcasing her academic versatility. Her research emphasizes practical methodologies for environmental remediation, making her work highly relevant in addressing current ecological concerns. Through continuous learning and dedication, Narges Vaezi has established herself as a rising expert in her field, with the potential to make impactful contributions to scientific research and environmental sustainability on both national and international platforms.

Professional Profile

Education

Narges Vaezi’s educational journey has been firmly rooted at the University of Zanjan, Iran, where she pursued all her higher education degrees in chemistry. She obtained her Bachelor of Science in Applied Chemistry from the University of Zanjan between 2007 and 2011. During this period, she developed a solid foundation in the practical and theoretical aspects of chemistry. She continued her studies at the same institution, earning her Master of Science in Analytical Chemistry from 2011 to 2014. Her postgraduate research deepened her expertise in environmental and water analysis, solidifying her interest in the removal of pollutants and the use of innovative extraction methods. Narges is currently completing her Ph.D. in Analytical Chemistry, which she commenced in 2017 and is expected to complete in 2023. Throughout her academic progression, Narges has focused on developing practical solutions for environmental monitoring and pollutant extraction. Her educational background demonstrates her unwavering dedication to expanding her scientific knowledge, refining her research skills, and contributing to the academic community through both study and research. Her continuous academic engagement has prepared her well to conduct impactful research and provide leadership in analytical and environmental chemistry.

Professional Experience

Narges Vaezi has built a commendable professional career within the academic environment of the University of Zanjan, where she has gained significant experience in both research and student supervision. As an advisor, she has successfully guided five MSc students in the field of analytical chemistry. Her supervisory roles covered diverse environmental research topics, including the use of biosorbents like Daylily and sugarcane pulp for heavy metal and dye removal, the preparation of magnetized activated carbon, and the application of metal-organic frameworks such as ZIF-8 for pollutant extraction. Narges has also collaborated extensively with Professor Naser Dalali, working on advanced extraction techniques and biosorbents. Her active participation in national and international conferences highlights her commitment to scientific dissemination and continuous learning. Narges has published several journal articles in reputed scientific outlets, focusing on nano-materials, ionic liquids, and microextraction methods for trace metal determination. In addition to her research, she co-authored a book on electrochemical experiments, demonstrating her versatility and dedication to academic development. Her professional experience illustrates her ability to contribute both as an independent researcher and as an academic mentor, positioning her as an emerging leader in the field of analytical and environmental chemistry.

Research Interests

Narges Vaezi’s research interests are strongly aligned with analytical chemistry and environmental remediation. She focuses extensively on developing novel microextraction methods for the detection and removal of pollutants from environmental samples. Her key research areas include environmental analysis, water analysis, and the removal of heavy metals such as cadmium, cobalt, and lead from contaminated water sources. Narges is particularly interested in applying advanced techniques like dispersive solid-phase microextraction, solid-phase extraction, and hollow fiber microextraction. She has shown a significant inclination toward the use of metal-organic frameworks, especially Zeolitic Imidazolate Framework-8 (ZIF-8), which provides high adsorption efficiency and selectivity in pollutant removal processes. Her studies also explore the applications of biosorbents, ionic liquids, and natural materials for cost-effective environmental clean-up. Narges combines theoretical chemistry with practical field applications, ensuring her research contributes to solving real-world environmental issues. Her work addresses urgent challenges in water purification, solid waste management, and pollutant monitoring, making her contributions both timely and highly relevant. Narges Vaezi’s broad and application-oriented research interests set her on a promising path toward further innovations in analytical and environmental chemistry.

Research Skills

Narges Vaezi possesses a wide range of research skills that make her an effective and versatile analytical chemist. She is highly skilled in advanced microextraction techniques such as vortex-assisted dispersive solid-phase microextraction, hollow fiber microextraction, and ion-pair solvent bar microextraction. These methods enable the efficient preconcentration and separation of trace metal ions and organic pollutants from complex environmental matrices. She has practical expertise in the use of metal-organic frameworks like ZIF-8 as highly selective adsorbents in environmental analysis. Narges is also proficient in spectroscopic analysis methods, particularly UV-Vis spectrophotometry and flame atomic absorption spectrometry (FAAS), which are central to her pollutant quantification research. In addition, she has extensive experience in the preparation and modification of nano-materials and biosorbents, such as nano-silica coated with functional ligands and magnetized activated carbon derived from natural sources. Her experimental design, method optimization, and practical application of laboratory techniques demonstrate her strong problem-solving ability and analytical thinking. Beyond laboratory skills, Narges is experienced in scientific writing, conference presentation, and academic supervision, allowing her to contribute meaningfully to research teams and student development. Her comprehensive research capabilities position her as a highly competent and innovative scientist in the field.

Awards and Honors

While Narges Vaezi’s profile does not list specific individual awards or honors, her consistent academic and professional contributions highlight her as a valuable asset to the scientific community. Her selection as an advisor for multiple MSc research projects is a testament to her academic competence and the trust placed in her by both students and faculty. The acceptance of her research papers at national and international chemistry congresses underscores the recognition of her scientific work within the research community. Narges has successfully presented her findings at prominent conferences, including the Iranian Chemistry Congress and the Iranian Seminar of Analytical Chemistry, which demonstrates her active participation in knowledge dissemination and professional networking. Additionally, her co-authorship of a book on electrochemical experiments, published in 2016, reflects her dedication to advancing educational resources for future chemists. Narges’s growing list of journal publications in respected international journals further signifies her emerging prominence in analytical and environmental chemistry. As her career progresses, continued international collaborations and higher-profile publications may pave the way for prestigious research awards and broader recognition of her scientific impact.

Conclusion

Narges Vaezi’s academic and research journey exemplifies a dedicated pursuit of scientific advancement in analytical and environmental chemistry. Her work is focused on addressing real-world environmental challenges through the development of efficient, cost-effective, and innovative pollutant extraction methods. Narges has demonstrated strong research capabilities, mentorship skills, and a commitment to student success through her supervision of multiple MSc theses. Her scientific contributions, particularly in the use of metal-organic frameworks and advanced microextraction techniques, are both innovative and practically significant for environmental monitoring and water purification. Narges’s active involvement in conferences and her growing body of published work highlight her dedication to both academic growth and knowledge dissemination. While there is room for further international exposure and recognition, her current trajectory suggests a promising future in scientific research. With her ability to balance practical application and scientific rigor, Narges Vaezi is well-positioned to make impactful contributions to the field and is a deserving candidate for consideration in prestigious research recognitions and awards.

Publications Top Notes

  1. Title: Ion Pair Solvent Bar Microextraction of Paraquat from Soil Samples Prior to Determination by UV–Vis Spectrophotometry
  • Journal: Water Air and Soil Pollution
  • Year: 2024
  • Citations: 1

 

Kadriye Ertekin | Analytical Chemistry | Women Researcher Award

Ms. Kadriye Ertekin | Analytical Chemistry | Women Researcher Award

 Professor of Dokuz Eylül University, Turkey.

Born on February 9, 1964, in Batman, Turkey, Prof. Ertekin completed her secondary and higher education at İzmir Karşıyaka Girls’ High School and Ege University Faculty of Science. She earned her Master’s and Doctorate degrees from Celal Bayar University and Ege University, respectively. During her doctoral studies, she conducted research at the Institute of Analytical Chemistry, Chemo-and Biosensors, Regensburg University, Germany. She has authored 63 journal articles and presented 110 papers at national and international conferences, with over 1000 citations. Prof. Ertekin has been a faculty member in the Department of Analytical Chemistry at Dokuz Eylül University’s Faculty of Science since 2003. Her primary research areas include the development of chemical optical sensors for CO2, O2, cations, and pH, as well as fiber optic sensors, fluorescence and phosphorescence-based analyses, phosphorus materials, and chemical safety in occupational settings.

Profile
Education

Prof. Dr. Kadriye Ertekin completed her undergraduate studies in Chemistry at Ege University, Faculty of Science, Turkey, from 1980 to 1985. She then pursued her postgraduate degree in Analytical Chemistry at Celal Bayar University, completing her thesis in 1996. Her academic journey continued with a Doctorate in Chemistry from Ege University, where she conducted research at the Institute of Analytical Chemistry, Chemo-and Biosensors, University of Regensburg, Germany. She received her doctoral degree in 2001, focusing on the development of new optical sensors for cation sensing. Her education reflects a strong foundation in both theoretical and practical aspects of chemistry, complemented by international research experience, which has significantly influenced her subsequent contributions to the field of analytical chemistry.

Professional Experience

Ms. Kadriye Ertekin is a distinguished academic professional with extensive experience in the field of analytical chemistry. Since 2003, she has been a professor in the Chemistry Department at Dokuz Eylül University, where she focuses on chemical sensors and risk analysis. Her academic journey includes significant roles, such as serving as the Director of The Institution at Dokuz Eylül University from 2017 to 2020, and as the Farabi Program Institutional Coordinator from 2012 to 2015. She has also contributed as a member of the Academic Incentive Evaluation Commission since 2022. Ms. Ertekin’s research expertise encompasses developing chemical sensors for CO2, O2, and pH measurements, and she has over 60 SCI-indexed publications and more than 1,000 citations. Her work extends into teaching, where she supervises both postgraduate and doctoral students, advising on topics like optical sensors and chemical safety.

Research Interest

Prof. Kadriye Ertekin’s research interests lie primarily in the development and application of advanced chemical sensors and materials. Her work focuses on creating innovative optical sensors for detecting gases such as carbon dioxide and oxygen, as well as monitoring cation concentrations. Prof. Ertekin is particularly interested in fiber optic sensors and fluorescence-based analysis, exploring the integration of nanomaterials to enhance sensor performance. Her research extends to the study of phosphors and nanoscale functional materials, aiming to improve their optical properties and stability. Additionally, she investigates chemical safety risks in industrial environments, contributing to safer workplace practices through her work on chemical risk assessment and mitigation. Her contributions significantly advance the fields of analytical chemistry and material science, combining theoretical knowledge with practical applications to address contemporary challenges in chemical sensing and safety.

Research Skills

Prof. Kadriye Ertekin is a distinguished researcher with a robust skill set in analytical and chemical sensor development. Her expertise spans a range of advanced techniques including the development of optical sensors for detecting cations, carbon dioxide, and pH levels. Prof. Ertekin excels in designing and fabricating fiber optic sensors and nanosensors, employing her deep knowledge of fluorescence and phosphorescence-based analyses. Her proficiency extends to the manipulation of optical properties in nanoscale materials, which is critical for applications in environmental monitoring and industrial safety. Additionally, she is skilled in employing various spectroscopic and chromatographic methods to analyze and quantify chemical substances. Prof. Ertekin’s extensive experience in the synthesis and characterization of novel materials, coupled with her ability to integrate these materials into functional sensor systems, underscores her significant contributions to the field of analytical chemistry and sensor technology.

Awards and Recognition

Prof. Dr. Kadriye Ertekin has earned significant recognition for her contributions to the field of analytical chemistry. Her extensive research, particularly in developing optical sensors and studying chemical risk management, has been acknowledged through numerous awards and distinctions. Notably, she received the Dokuz Eylül University Academic Incentive Award for her outstanding research achievements. Her work has been recognized in the scientific community with multiple awards from national and international conferences, reflecting the impact of her innovative research on chemical sensors and nanomaterials. In addition to her academic honors, Prof. Ertekin has been appointed as a member of various scientific committees, underscoring her role as a leading expert in her field. Her dedication to advancing chemical sensor technologies and ensuring safety in chemical processes has established her as a prominent figure in analytical chemistry research.

Conclusion

Prof. Dr. Kadriye Ertekin is a distinguished academic and researcher in the field of analytical chemistry, with a notable focus on chemical and optical sensors. Her extensive education includes a Doctorate from Ege University and research experience at Regensburg University in Germany. She has contributed significantly to her field with over 60 published articles and numerous conference presentations. Her research interests encompass the development of sensors for detecting carbon dioxide, oxygen, and pH, as well as advancements in fiber optic sensors and nanomaterials. Prof. Ertekin’s work is highly regarded, as evidenced by her numerous citations and publications in SCI-indexed journals. At Dokuz Eylül University, she has held various significant academic and administrative roles, including serving as a member of the Academic Incentive Evaluation Commission and as Director of The Institution. Her dedication to research, teaching, and service underscores her profound impact on the field and her institution.

Publications Top Notes

  • “Emission-based sensing of cobalt (II) and vitamin B12 via a bis-indole derivative”
    • Authors: Mumcu, T., Oncuoglu, S., Hizliates, C.G., Ertekin, K.
    • Journal: Luminescence
    • Year: 2024
    • Volume: 39
    • Issue: 8
    • Article Number: e4863
  • “Quantification of Airborne Concentrations of Nanoscale Dusts by Particle Gravimetry Using Ionic-Liquid Modified Polymeric Electrospun Fibers”
    • Authors: Tok, Z., Ertekin, K.
    • Journal: Macromolecular Materials and Engineering
    • Year: 2024
    • Volume: 309
    • Issue: 7
    • Article Number: 2400062
  • “An emission based optical CO2 sensor fabricated on grating-like TiO2 substrates using HPTS”
    • Authors: Yilmaz, O., Ebeoglugil, F., Aydin, I., Dalmis, R., Ertekin, K.
    • Journal: Spectrochimica Acta – Part A: Molecular and Biomolecular Spectroscopy
    • Year: 2024
    • Volume: 305
    • Article Number: 123502
    • Citations: 2
  • “Enhanced luminescence of a silica-nitride phosphor; La3Si6N11 + by using Cr3+-activated TiO2 nanoparticles”
    • Authors: Aydin, I., Ertekin, K., Azem, F.A., Delice, T.K., Birlik, I.
    • Journal: International Journal of Ceramic Engineering and Science
    • Year: 2024
    • Volume: 6
    • Issue: 1
    • Article Number: e10198
  • “Quantification of airborne concentrations of micro-scale and submicron phosphors in the manufacturing environment by spectrofluorometric method”
    • Authors: Deniz, F., Ertekin, K., Ulucan, U.
    • Journal: Chemical Papers
    • Year: 2022
    • Volume: 76
    • Issue: 12
    • Pages: 7633–7646
  • “Investigation of TiO2 and Ce3+-activated TiO2 particles on optical properties of the PMMA embedded YAG: Ce3+ and LuAG: Ce3+”
    • Authors: Yildirim, B., Keskin, O.Y., Dalmis, R., Azem, F.A., Ertekin, K.
    • Journal: Optical Materials
    • Year: 2022
    • Volume: 133
    • Article Number: 112905
    • Citations: 2
  • “Enhancement of optical properties of Lu3Al5O12+ and Ca-α-SiAlON + by quinine sulphate”
    • Authors: Ulucan, U., Ertekin, K., Oğuzlar, S.
    • Journal: Journal of Materials Science: Materials in Electronics
    • Year: 2021
    • Volume: 32
    • Issue: 24
    • Pages: 28176–28191
    • Citations: 1
  • “Manipulation of brightness and decay kinetics of LuAG: Ce3+ and YAG: Ce3+ by simple metal oxides in polymeric matrices”
    • Authors: Yildirim, B., Yasin Keskin, O., Oguzlar, S., Ak Azem, F., Ertekin, K.
    • Journal: Optics and Laser Technology
    • Year: 2021
    • Volume: 142
    • Article Number: 107226
    • Citations: 7
  • “Investigation of light induced interactions between ZnO nano-particles and red emitting phosphor blends of Eu2+/Dy3+ doped strontium aluminate and Eu2+ doped Ca-α-Sialon”
    • Authors: Oguzlar, S., Zeyrek Ongun, M., Ertekin, K.
    • Journal: Journal of Luminescence
    • Year: 2021
    • Volume: 238
    • Article Number: 118236
    • Citations: 7
  • “Structural and luminescent properties of Er3+ and Tb3+-doped sol–gel-based bioactive glass powders and electrospun nanofibers”
    • Authors: Deliormanlı, A.M., Rahman, B., Oguzlar, S., Ertekin, K.
    • Journal: Journal of Materials Science
    • Year: 2021
    • Volume: 56
    • Issue: 26
    • Pages: 14487–14504
    • Citations: 15