Dr. Kanwal Iqbal – 2D materials – Best Researcher Award

Dr. Kanwal Iqbal - 2D materials - Best Researcher Award

Zhejiang normal university - China 

Author Profile 

SCOPUS 

Early academic pursuits 🎓

Dr. Kanwal Iqbal embarked on her academic journey with a strong foundation in science. she completed her secondary and higher secondary education with excellent grades from the balochistan board. her passion for chemistry led her to pursue a b.sc. in zoology, statistics, and chemistry from the university of balochistan, quetta, where she secured a first division. she continued her studies with an m.sc. in inorganic chemistry from the same university, further refining her expertise in the field. her academic excellence and dedication paved the way for her doctoral studies at lanzhou university, china, where she specialized in inorganic chemistry. she successfully defended her ph.d. in 2018, demonstrating her remarkable research capabilities and deep understanding of chemical sciences.

Professional endeavors 🏛️

Dr. Kanwal Iqbal has built a distinguished career in academia, currently serving as an assistant professor in the department of chemistry at sardar bahadur khan women’s university, quetta, pakistan. her role involves mentoring students, conducting advanced research, and contributing to the development of the department. her academic journey has also taken her to china, where she was affiliated with zhejiang normal university. her extensive experience in teaching and research reflects her commitment to advancing scientific knowledge and inspiring young minds in the field of chemistry.

Contributions and research focus 🔬

Dr. Kanwal Iqbal’s research primarily focuses on inorganic chemistry, with significant contributions to nanotechnology and material science. her work explores the synthesis and 2D materials characterization of advanced materials with potential applications in various industries. her research on nanomedicine and nanotechnology has provided valuable insights into their applications in healthcare and environmental sustainability. she has also contributed to the understanding of new materials with enhanced properties, making her work highly relevant to contemporary scientific advancements. her ability to integrate theoretical knowledge with practical applications has led to groundbreaking findings in her field.

Accolades and recognition 🏅

Dr. Kanwal Iqbal’s exceptional academic and research achievements have earned her numerous accolades. in 2017, she was recognized as an outstanding international student by the chinese government, an honor that reflects her dedication and academic excellence. in 2018, she was awarded the title of excellent graduate, further cementing her reputation as a distinguished 2D materials scholar. she has also published several high-impact research papers, including three as the first author in prestigious sci journals such as the journal of material chemistry a and acs inorganic chemistry, which boast impact factors of 12. her contributions to scientific literature have significantly enhanced the understanding of inorganic chemistry and nanotechnology.

Impact and influence 🌍

Through her research and teaching, dr. kanwal iqbal has had a profound impact on the scientific community and her students. her work in inorganic chemistry and nanotechnology has 2D materials contributed to advancements in material science, with implications for various industrial and medical applications. as a dedicated educator, she has mentored numerous students, guiding them towards successful careers in chemistry. her ability to bridge the gap between theoretical research and practical applications has inspired many young researchers to explore the potential of nanotechnology and advanced materials.

Legacy and future contributions 🔮

Dr. Kanwal Iqbal’s legacy lies in her contributions to inorganic chemistry and her role as an educator and mentor. her research has opened new avenues for the development of advanced materials, and her publications continue to be referenced by scholars worldwide. looking ahead, she aims to further explore the applications of nanotechnology in medicine and environmental science, pushing the boundaries of scientific innovation. her dedication to research and teaching ensures that her impact will be felt for generations to come, inspiring future scientists to make meaningful contributions to the world of chemistry.

Notable Publications 

  • Title: Mesoporous amorphous PdP nanoparticles supported on reduced graphene oxide for voltammetric analysis of trace Hg(II) in environmental water sample
    Authors: L.M. CaiRang, La Mao, Y. Yan, Yajuan, Z. Yang, Zhidong, K. Iqbal, Kanwal, W. Ye, Weichun
    Journal: Microchemical Journal, 2025

  • Title: Advancements in MXene-based frameworks towards photocatalytic hydrogen production, carbon dioxide reduction and pollutant degradation: Current challenges and future prospects
    Authors: Z. Ajmal, Zeeshan, A. Hayat, Asif, A. Qadeer, Abdul, J. Zhou, John, T. Ben, Teng
    Journal: Coordination Chemistry Reviews, 2025

  • Title: A 2D layered fluorescent crystalline porous organic salt
    Authors: D. Sun, Danling, G. Xing, Guolong, J. Lyu, Jie, W. Zhu, Weidong, T. Ben, Teng
    Journal: Journal of Materials Chemistry A, 2024

Ms. Yue qi – Material Science – Best Researcher Award

Ms. Yue qi - Material Science - Best Researcher Award

HTW Dresden: Hochschule für Technik und Wirtschaft - Germany

Author Profile 

SCOPUS 

Early academic pursuits 🎓

Yue qi embarked on her academic journey with a strong passion for polymer science and materials engineering. her foundational studies in polymer modification laid the groundwork for her future research endeavors. with a keen interest in utilizing ionizing radiation techniques, she pursued advanced studies in polymer surface modification, crystallization behaviors, and structural alterations. her rigorous academic training equipped her with a deep understanding of polymer chemistry, paving the way for innovative research contributions in this domain.

Professional endeavors 🏢

Currently, yue qi is a research associate at technische universität dresden (tud) and hochschule für technik und wirtschaft dresden (htwd). her research focuses on the strategic modification of polymers using gamma-ray and electron beam (eb) irradiation. her work primarily revolves around surface modification, crystallization effects, and antibacterial enhancements of polymer chains. her extensive research into pre-eb-induced grafting reactions has led to notable advancements in polymer functionalization. her professional journey is marked by collaborations with esteemed researchers and contributions to internationally funded projects, including the national key research and development program of china and the m-era.net-funded project on thermoplastic elastomers.

Contributions and research focus 🔍

Yue qi’s research is centered on the application of ionizing radiation in polymer modification to enhance their industrial applications. her expertise in gamma-ray and electron beam irradiation has enabled her to alter polymer chain structures effectively, leading to improved surface properties, crystallization behaviors, and antibacterial functionalities. her publication, “graft Material Science copolymerization of hema on lldpe films activated by low-energy electrons,” has provided valuable insights into pre-irradiation grafting techniques. her work continues to contribute significantly to the development of high-performance, functionalized polymeric materials, opening new possibilities for sustainable and innovative industrial applications.

Accolades and recognition 🏅

Yue qi’s contributions to polymer science have been recognized through her involvement in pioneering research projects and patents. her innovative work led to the development of a pla  Material Science material with antibacterial properties, which was patented under china patent no. 201910833915.3. this patent highlights her role in advancing functional polymer materials for healthcare and industrial applications. her research findings have been published in esteemed scientific journals, further solidifying her reputation as a leading researcher in the field of polymer surface modification and irradiation techniques.

Impact and influence 🌍

Yue qi’s research has had a profound impact on the field of polymer science, particularly in the enhancement of polymer surfaces for diverse applications. her work on electron beam-induced grafting has opened new pathways for developing antibacterial and high-performance polymeric materials. her research not only advances scientific knowledge but also provides industrial Material Science solutions for improving polymer-based products. her collaborations with global researchers and institutions continue to push the boundaries of innovation in polymer modification techniques.

Legacy and future contributions 🔮

Yue qi’s legacy in polymer science is marked by her groundbreaking research in polymer modification and ionizing radiation techniques. her work has paved the way for future advancements in functionalized polymer materials with enhanced properties. she remains committed to exploring new methodologies that further improve polymer structures for sustainable and high-performance applications. as she continues her research endeavors, she aims to bridge the gap between scientific discoveries and practical industrial applications, leaving a lasting impact on the field of polymer engineering and material sciences.

Notable Publications 

Title: Radiation Syntheses of Modified Poly (Lactic Acid) Fabrics with Hydrophilic and Antibacterial Properties
Authors: Y. Qi, Z. Zhang, H. Ma, Y. Sha, X. Zhang
Journal: Progress in Organic Coatings, 2023

Assist Prof Dr.  Francesco Asnicar – Blastocystis – Best Researcher Award

Assist Prof Dr.  Francesco Asnicar - Blastocystis - Best Researcher Award

Department CIBIO, University of Trento, Italy - Italy

Professional Profile

SCOPUS 

ORCID 

Early Academic Pursuits

Dr. Francesco Asnicar began his academic journey with a strong foundation in computational biology and microbiology. His interest in these fields led him to pursue advanced studies, culminating in a Ph.D. at the Department of Cellular, Computational, and Integrative Biology (CIBIO) at the University of Trento, Italy. His early academic pursuits were marked by a deep interest in understanding the complexities of the human microbiome and its interactions with various environmental factors, particularly diet.

Professional Endeavors

Dr. Asnicar currently holds a tenure-track researcher position at CIBIO, University of Trento. Before this, he served as a postdoctoral fellow at the Laboratory of Computational Metagenomics under the supervision of Prof. Nicola Segata from June 2019 to April 2024. During his postdoc, Dr. Asnicar led the local operative unit of the Human Microbiome Action H2020 project, a European initiative aimed at maximizing the impact of microbiome research through harmonization and knowledge transfer. His role in this project involved fostering collaborations with leading research laboratories, including TwinsUK and the Nutritional Sciences Departments at King’s College London, as well as with ZOE Limited.

Accolades and Recognition

Throughout his career, Dr. Asnicar has supervised one Ph.D. student, six MSc students, and two BSc students, and is currently co-supervising three Ph.D. students. His work has been recognized for its impact on the field of computational metagenomics and microbiome research, Blastocystis particularly in the context of microbiome-diet interactions.

Impact and Influence

Dr. Asnicar’s contributions have had a profound impact on microbiome research, particularly in Europe. His efforts in the Human Microbiome Action H2020 project have helped harmonize research practices and facilitate knowledge transfer across the continent. His collaborations with leading institutions have provided valuable insights into microbiome-diet relationships, influencing both academic research and practical Blastocystis applications in nutritional sciences.

Legacy and Future Contributions

Dr. Francesco Asnicar continues to push the boundaries of computational microbiome research. His ongoing work is expected to yield further innovations in the field, particularly in understanding the role of the microbiome in human health and disease. His legacy is one of dedication to Blastocystis advancing the field of computational biology, mentoring the next generation of scientists, and fostering international collaborations that drive scientific progress.

NOTABLE PUBLICATIONS