Kaoqi Lian | Biotechnology | Best Researcher Award

Prof. Kaoqi Lian | Biotechnology | Best Researcher Award

Prof. Kaoqi Lian | Hebei Medical University | China

Prof. Kaoqi Lian is a distinguished researcher specializing in pharmaceutical analysis, clinical chemistry, and separation science, with extensive contributions to understanding drug metabolism, degradation pathways, and clinical metabolomics. Her research focuses on the separation and analysis of in-vivo drugs and the exploration of metabolic mechanisms that influence therapeutic efficacy and safety. With a strong academic background in chemistry and environmental science, Prof. Lian has established a prominent career in public health education and scientific innovation. She has successfully led and participated in multiple projects supported by the National Natural Science Foundation, advancing analytical methodologies and clinical applications in biomedical research. Prof. Lian’s scholarly productivity is reflected in 69 scientific publications that have collectively received 1,044 citations from 1,015 citing documents, demonstrating the global relevance of her research. With an h-index of 19, her scientific influence spans the fields of analytical chemistry, pharmacology, and clinical diagnostics. As a professor at the School of Public Health, Hebei Medical University, and director of the Hebei Health Society, she continues to drive interdisciplinary collaboration, mentor emerging scientists, and enhance the integration of analytical science into healthcare innovation and public health development.

Profile: Scopus

Featured Publications

Lian, K., et al. (2025). Analysis of metabolites and metabolic pathways of troponin activator in rats using UHPLC–MS. Analytical and Bioanalytical Chemistry.

Lian, K., et al. (2025). In-situ synthesis of Fe₃O₄@TFA-TAPA-COF as a novel sorbent coupled with UPLC–MS/MS for the determination of 22 perfluorinated compounds in water and honey. Journal of Food Composition and Analysis.

Lian, K., et al. (2025). Perinatal exposure to polystyrene nanoplastics alters socioemotional behaviors via the microbiota–gut–brain axis in adult offspring mice. Brain, Behavior, and Immunity.

Lian, K., et al. (2025). Prenatal maternal stress induces increased avoidance behavior in adolescent mice offspring.

Gul Tug | Biology | Best Researcher Award

Assoc. Prof. Dr. Gul Tug | Biology | Best Researcher Award

Assoc. Prof. Dr. Gul Tug | Karadeniz Technical University | Turkey 

Dr. Gul Tug has made a notable contribution to scientific research, reflected through her 10 published documents, which have collectively received 28 citations across 16 referencing works. Her research productivity and scholarly influence are further emphasized by her h-index, which underscores the consistent impact and quality of her publications. Dr. Tug’s work demonstrates strong analytical depth and interdisciplinary relevance, addressing emerging scientific questions with innovative approaches and methodological rigor. Her research outputs have contributed to the advancement of her field by offering new insights, practical frameworks, and data-driven conclusions that support further exploration and application. The sustained academic interest shown through multiple citations highlights her growing recognition within the research community. Overall, her profile presents a balance of publication volume, citation quality, and research impact, establishing her as a promising and engaged contributor to contemporary scientific discourse.

Profiles:  Scopus | Orcid

Featured Publications

Tuğ, G., & Özdemir, Z. (2025, November). A new approach to the accretive growth of surfaces via hyperbolical kinematics. Mathematical Methods in the Applied Sciences.

Tuğ, G. (2023, January 17). Constant pseudo-angle lightlike surfaces. Communications Faculty of Science University of Ankara Series A1: Mathematics and Statistics.

Tuğ, G. (2022, December 31). Canal surfaces through a null quaternionic spine curve. Bilecik Şeyh Edebali Üniversitesi Fen Bilimleri Dergisi.

Tuğ, G. (2021). Accretive Darboux growth in Lorentz–Minkowski spacetime. Mathematical Methods in the Applied Sciences.

Tuğ, G. (2021, August 28). Minimal twist accretive growth with spatial curve evolution. Mathematical Methods in the Applied Sciences.

Tuğ, G. (2020). Accretive growth kinematics via null evolution curve. Mathematical Methods in the Applied Sciences.