Liu Xiaolu | Chemistry and Materials Science | Best Researcher Award

Liu Xiaolu | Chemistry and Materials Science | Best Researcher Award

Ms Liu Xiaolu, North China Electric Power University, China

🎓 Ms. Liu Xiaolu is a dedicated researcher pursuing her Ph.D. at North China Electric Power University (2022–present), after earning her Master’s (2019–2022) and Bachelor’s (2015–2019) degrees from the same university and Yanshan University, respectively. 🧪 Her research focuses on functional porous nanomaterials and radionuclide separation. 🌍 She has authored 17 papers in prestigious journals like Nat. Commun., Adv. Sci., and Langmuir. 📚 Liu actively participates in global conferences, including ACS Spring 2024. Her groundbreaking work on MOFs, COFs, and electrocatalysis is shaping innovations in energy and environmental applications. ⚡🌱

Publication Profile

Scopus

Education

Ms. Liu Xiaolu 🎓 began her academic journey at Yanshan University, earning her Bachelor’s degree between September 2015 and June 2019 📚. Driven by a passion for further knowledge, she pursued her Master’s degree at North China Electric Power University from September 2019 to June 2022 ⚡. Continuing her academic excellence, she is currently a dedicated Doctoral candidate at the same university since September 2022 📝. Her commitment to education and research showcases her strong determination and academic growth 🌟.

Research Achievement

Ms. Liu Xiaolu is a prolific researcher with 17 first-author publications in prestigious journals like Nature Communications 🌍, Advanced Science 🚀, Langmuir 🌊, and Innovation 💡. Her representative works include papers in Nat. Commun. (2024, 15, 7736), Adv. Sci. (2022, 9, 2201735; 2023, 10, 2303536), J. Mater. Chem. A (2021, 9, 21051-6), and Crit. Rev. Env. Sci. Tec. (2021, 51, 751-790; 2023, 53, 1289-1309) 📚. She has significantly contributed to Environmental Pollution 🌿, Sci. China. Chem. 🧪, and EEH 🔬. Her research showcases innovation and scientific excellence, reflecting her dedication to impactful discoveries. ✨

Academic Conference

Ms. Liu Xiaolu has actively participated in several prestigious conferences, showcasing her expertise in environmental and radiochemistry. 🌍 She attended the 1st Conference of Carbon Research in Guangzhou, China (March 24–26, 2023) and the 12th National Conference on Environmental Chemistry in Wuhan, China (November 17–21, 2023). 🧪 Additionally, she contributed to the Conference of National Radiochemistry Development Strategy and Academic Exchange in Nanchang (October 20–23, 2023). ⚛️ Expanding her global reach, Ms. Liu joined the ACS Spring 2024 Meeting held online from New Orleans (March 17–21, 2024), reflecting her dedication to scientific growth and collaboration. 🌐

Research Interest

Ms. Liu Xiaolu specializes in the design and synthesis of functional porous nanomaterials 🧪, focusing on creating advanced materials with unique structures and properties. Her research also delves into the separation and extraction of radionuclides ⚛️, aiming to enhance techniques for environmental protection and nuclear waste management 🌍. By combining innovative nanotechnology with efficient separation methods, she contributes to sustainable solutions in energy and environmental sciences 💡. Her work bridges the gap between material science and nuclear chemistry, paving the way for safer and cleaner technologies in the future 🚀.

Research Focus

Ms. Liu Xiaolu’s research focuses on advanced materials like Metal-Organic Frameworks (MOFs), Covalent Organic Frameworks (COFs), and their derivatives for energy and environmental applications 🌱⚡. Her work explores innovative approaches to electrocatalytic CO₂ reduction, enhancing photocatalytic performance, and piezocatalytic techniques for pollutant degradation 🌍🔬. By modulating the coordination environment of atomically dispersed metals, she aims to improve efficiency in low-overpotential and industrial-scale processes ⚡⚗️. Her research contributes to sustainable solutions for clean energy and environmental remediation, addressing global challenges in pollution control and renewable energy 🌊🌞.

Publication Top Notes

Emerging MOFs, COFs, and their derivatives for energy and environmental applications

Modulating the Coordination Environment of Atomically Dispersed Nickel for Efficient Electrocatalytic CO2 Reduction at Low Overpotentials and Industrial Current Densities

Rational Design of 3D Space Connected Donor–Acceptor System in Covalent Organic Frameworks for Enhanced Photocatalytic Performance

Piezocatalytic techniques and materials for degradation of organic pollutants from aqueous solution

Conclusion

Ms. Liu Xiaolu is a distinguished researcher known for her outstanding publication record 📚, innovative research in environmental and energy applications 🌍⚡, and active participation in international conferences 🌐🎤. Her groundbreaking work contributes significantly to sustainable solutions, addressing global environmental challenges with creativity and expertise 🌱🔬. Ms. Liu’s dedication to advancing knowledge and her impactful presence in the research community make her a highly suitable candidate for the Best Researcher Award 🏆🎓. Her passion for scientific excellence and commitment to global sustainability continue to inspire peers and future researchers alike 🌟💡.

 

 

 

Salwa Bouabdallah | Biology and Life Sciences | Best Researcher Award

Salwa Bouabdallah | Biology and Life Sciences | Best Researcher Award

Dr salwa Bouabdallah, Faculty of science of bizerta, Tunisia

Dr. Salwa Bouabdallah is a distinguished researcher in Biological Sciences, earning her Ph.D. with distinction from the University of Carthage, Tunisia. With postdoctoral experience in Romania, she teaches biochemistry, neurophysiology, and biostatistics across several universities. Her innovative research focuses on behavioral neurophysiology and the therapeutic potential of natural compounds, including the health effects of Tribulus terrestris and its relevance to Alzheimer’s disease. Recognized with awards like the First Prize at the International Congress on Bioactive Molecules, Dr. Bouabdallah is dedicated to advancing scientific knowledge and mentoring future researchers. 🌱📚🔬🏆

Publication Profile

Orcid

University Degrees

Dr. Salwa Bouabdallah has a distinguished academic background in biological sciences. She earned her Ph.D. with distinction in Biological Sciences from the University of Carthage, Tunisia (2013-2016). Prior to that, she obtained a Master’s Degree in Research in Molecular and Cellular Plant Physiology from the University of Tunis El Manar (2010-2012) and another Master’s Degree in Life Sciences from the Virtual University of Tunis (2004-2009). Her educational journey began with a Higher Technician Diploma in Public Health (1991-1993) and a Baccalaureate Diploma in Mathematics and Science (1990). Her extensive qualifications highlight her commitment to advancing scientific knowledge. 🎓🌱🔬

Professional Experience

Dr. Salwa Bouabdallah has held numerous prestigious research and teaching positions from 2017 to 2024, including postdoctoral researcher roles at the Faculty of Science of Bizerta and Hospital HC-N. She has been an adjunct lecturer, teaching biochemistry, neurophysiology, and biostatistics, while also developing teaching materials and supervising Master’s and PhD students in Biology. With a strong background in public health, Dr. Bouabdallah worked as a Senior Technician in Medical Imaging from 1995 to 2008, training students in MRI applications. Her commitment to education is further highlighted by her participation in scientific events and training on digital pedagogy. 🎓🧬🩺📚

Awards and Honors

Dr. Salwa Bouabdallah has received significant recognition for her contributions to the field of biological sciences. In 2014, she was awarded the First Prize at the 1st International Congress on Bioactive Molecules, Functional Foods, and Oxidative Stress-Related Diseases held in Hammamet, showcasing her outstanding research impact. Additionally, she was honored as a Eugen UNESCO Fellowship Laureate for her postdoctoral work from 2022 to 2023, further emphasizing her commitment to advancing scientific knowledge. These accolades highlight her dedication and excellence in research, making her a prominent figure in her field. 🏆🌱📚🌍

Technical and Professional Skills

Dr. Salwa Bouabdallah has extensive expertise in behavioral neurophysiology, employing zebrafish models for various tests, including Y-maze, Novel Tank Test, and T-maze assessments. Her research focuses on identifying theranostic biomarkers for innovative and personalized therapies and utilizing molecular docking modeling to explore interactions between physiological receptors and bioactive natural substances. She is skilled in in vitro cell culture and cytotoxic testing, measuring oxidative stress biomarkers, and extracting DNA and RNA from various tissues. Additionally, Dr. Bouabdallah is proficient in characterizing and valorizing bioactive molecules from Tunisian flora using advanced techniques like HPLC and GC-MS. 🧬🌿🔬📊🌱

Research Focus

Dr. Salwa Bouabdallah’s research focuses on the intersection of natural compounds and their therapeutic potential, particularly in neuropharmacology and cancer treatment. She explores the bioactive properties of plants like Tribulus terrestris, examining their effects on neurological disorders such as Alzheimer’s and their anticancer activities. Her work includes behavioral neurophysiology testing in zebrafish, molecular docking studies, and the identification of theranostic biomarkers for personalized therapies. Additionally, Dr. Bouabdallah investigates the chemical profiles and health benefits of natural products, contributing significantly to the fields of molecular plant physiology, public health, and phytochemistry. 🌿🔬📚🧬💊

Publication Top Notes

Efficacy of Tribulus terrestris on diabetes and sexual disorders: A narrative review

Important Antihistaminic Plants and Their Potential Role in Health.

Sustainable Extraction, Chemical Profile, Cytotoxic and Antileishmanial Activities In-Vitro of Some <i>Citrus</i> Species Leaves Essential Oils

Separation and evaluation of natural antileishmanial potential against Leishmania major and infuntum isolated from the Tunisia strains

Current approaches and challenges for chemical characterization of inhibitory effect against cancer cell line isolated from Gokshur extract

Conclusion

Given her impressive track record of achievements, commitment to research and education, and significant contributions to her field, Dr. Salwa Bouabdallah is highly deserving of the Best Researcher Award.

 

Kangchun Lee | Chemistry and Materials Science | Best Researcher Award

Kangchun Lee | Chemistry and Materials Science | Best Researcher Award

Prof Kangchun Lee, KyonggiUniversity, South Korea

Based on the information provided, Prof. Kangchun Lee appears to be a strong candidate for the Best Researcher Award due to his significant achievements and contributions in his field. Here’s a summary of why he stands out.

Publication profile

google scholar

Education and Professional Background

Prof. Kangchun Lee holds a Ph.D. in Energy Engineering from Hanyang University (2020) and a B.S. in Materials Science and Engineering from the same institution (2014). His career began as a Staff Engineer at Samsung Electronics’ Semiconductor R&D Center, where he worked from September 2020 to February 2023. He is currently an Assistant Professor in the Department of Electronic Engineering at Kyonggi University, starting in March 2023. His experience includes comprehensive work on GAA-based semiconductor processes and advanced process development for sub-3nm and sub-2nm semiconductor integration.

Academic and Professional Contributions

Prof. Lee has actively participated in various academic committees and roles, including the International Conference on Planarization/CMP Technology (ICPT) program committee, Korea CMP User Group Meeting (CMPUGM) committee, and as a Topical Advisory Panel Member for Applied Sciences. His involvement in the Early Career Scholars Program and as a Guest Editor for Applied Sciences further highlights his engagement with the academic community.

Awards and Recognition

Prof. Lee has received several prestigious awards, including the Best Paper Award in 2022 from Samsung Electronics and scholarship awards from the Korea Semiconductor Industry Association (2019) and Korea Ceramic Society (2013). These accolades underscore his impactful research and recognition within the industry.

Publications and Research Impact

Prof. Lee’s research has been widely published, with notable contributions to journals such as ECS Journal of Solid State Science and Technology, Materials Science in Semiconductor Processing, and Applied Surface Science. His work covers critical topics such as CMP performance enhancement, advanced CMP slurry compositions, and eco-friendly chemical mechanical planarization techniques. His research is highly cited, reflecting its significance and influence in the field.

Summary

Prof. Kangchun Lee’s educational background, professional experience, active academic involvement, and prestigious awards make him a compelling candidate for the Best Researcher Award. His extensive research output and contributions to semiconductor technology and materials science demonstrate his excellence and impact in his field.

Publication top notes

Tailored electronic structure of Ir in high entropy alloy for highly active and durable bi‐functional electrocatalyst for water splitting under acidic environment

Role of the oxidation state of cerium on the ceria surfaces for silicate adsorption

Fenton-like reaction between copper ions and hydrogen peroxide for high removal rate of tungsten in chemical mechanical planarization

Ce3+-enriched core–shell ceria nanoparticles for silicate adsorption

Highly reversible cycling with Dendrite-Free lithium deposition enabled by robust SEI layer with low charge transfer activation energy

Galvanic corrosion inhibition from aspect of bonding orbital theory in Cu/Ru barrier CMP

Preparation and characterization of slurry for CMP

Synergistic Effect of Mixed Particle Size on W CMP Process: Optimization Using Experimental Design

Optimizing a blend of a mixture slurry in chemical mechanical planarization for advanced semiconductor manufacturing using a posterior preference articulation approach to dual …

Suppression of Dissolution Rate via Coordination Complex in Tungsten Chemical Mechanical Planarization

Margarida Marques | Educational Innovation in Science | Best Researcher Award

Margarida Marques | Educational Innovation in Science | Best Researcher Award

Dr Margarida Marques, University of Aveiro, Portugal

Dr. Margarida Marques appears to be a strong candidate for the Best Researcher Award based on her impressive credentials and contributions.

Publication profile

google scholar

Research Focus

Dr. Margarida Marques specializes in Social Sciences and Education, with a focus on innovative teaching and learning methodologies. Her recent projects include developing smart educational environments and combating misinformation through educational initiatives.

Achievements

Research Roles: Dr. Marques has been a researcher at the Universidade de Aveiro since 2015, focusing on didactics and technology in teacher training. She has led several high-impact projects funded by Erasmus Plus and the Fundação para a Ciência e a Tecnologia. Educational Contributions: She has designed and implemented multiple training programs and workshops for teachers, emphasizing critical thinking, online learning, and digital education tools. Publications & Presentations: She has presented her work at international conferences and published in notable journals, contributing significantly to the field of educational technology and teacher training.

Additional Contributions

Editorial Work: Dr. Marques serves as a reviewer for prominent journals in education and technology, including MDPI’s Games and Sustainability. Leadership: She is actively involved in coordinating significant research projects and educational programs, such as the Smart Knowledge Garden and the Open Education Smart Campus.

Current Research Projects

Margarida is currently co-principal investigator of the EduCITY project and contributes to several other significant projects, including CURIOSOIL, OpenUS4ALL, School FaN, MEREVIA, and VaBioLa. Her involvement in these diverse projects demonstrates her extensive engagement in advancing educational technologies and science literacy.

Professional Background and Recognition

Margarida’s professional journey includes roles as a research fellow and teacher in various projects and institutions. Her experience spans from her doctoral studies to recent research endeavors, showcasing a consistent and impactful career in educational research. Her awards and contributions to knowledge dissemination further affirm her suitability for the Best Researcher Award.

Conclusion

Margarida M. Marques’ combination of innovative research, impactful projects, and prestigious recognitions aligns well with the criteria for the Best Researcher Award, making her an excellent candidate.

Publication top notes

Climate literacy: a systematic review and model integration

MOOC success factors: Proposal of an analysis framework

The potential educational value of mobile augmented reality games: The case of EduPARK app

The Impact of Teacher Training Using Mobile Augmented Reality Games on Their Professional Development

Marker-based augmented reality application for mobile learning in an urban park: Steps to make it real under the EduPARK project

Improving students’ learning with a mobile augmented reality approach–the EduPARK game

Evaluation of a Mobile Augmented Reality Game Application as an Outdoor Learning Tool

The EduPARK Mobile Augmented Reality Game: Learning Value and Usability.

Augmented Reality and Mobile Learning in a Smart Urban Park: Pupils’ Perceptions of the EduPARK Game

The dynamics of an online community of practice involving teachers and researchers

 

 

Cristina Marcu | Environmental Science | Best Researcher Award

Cristina Marcu | Environmental Science | Best Researcher Award

Dr Cristina Marcu, National Institute for Research and Development of Isotopic and Molecular Technologies, Romania

Cristina Marcu, a dedicated chemist 🧪, specializes in adsorption studies using anion exchange resins. Her research, conducted at PIM Cluj-Napoca 🏛️, Romania, focuses on kinetics and thermodynamics of U(VI), Fe(III), and Cr(VI) adsorption. She has contributed significantly to understanding chemical exchange reactions and catalytic processes, presenting her findings at national and international conferences 🌍. Marcu’s work underscores her expertise in environmental chemistry and sustainable technologies, notably in uranium isotope enrichment and pollutant removal from aqueous solutions. Her collaborations with Damian Axente and Ancuţa Balla highlight her impactful contributions to the field. 📊

Publication profile

Scopus

Research focus

Based on the published papers, Cristina Marcu’s research focus revolves around environmental chemistry and chemical engineering, with a specialization in adsorption processes and oxidation reactions. Her work includes investigating adsorption isotherms and kinetics for various contaminants like chromium (VI) and uranium (VI), using materials such as anion exchange resins and Dowex-Marathon resin. Additionally, she explores the catalytic oxidation of carbon monoxide and processes related to isotope production and nitrogen separation. 🌿🔬 Her studies contribute to environmental management and industrial processes involving chemical reactions and materials science.

Publication top notes

Compensation Effect in Catalytic Oxidation of Carbon Monoxide

INVESTIGATION OF CARBON MONOXIDE (CO) OXIDATION PROCESS FOR CONVERTING 13CO TO 13CO2

Adsorption Isotherms and Thermodynamics for Chromium (VI) Using an Anion Exchange Resin

Adsorption Kinetics of Chromium (VI) from Aqueous Solution Using an Anion Exchange Resin

Determination of nitrogen losses in the sulfuric acid solution, waste of the 15N separation plant

The production of the isotope 15N by isotopic exchange in nitrox system at pressure

The calculus of the operation parameters at pressure of the primary separation column of the 15n production plant

The energy consumptions for thermo-catalytic conversion of sulphuric acid into sulfphur dioxide for its recycling in the 15N production plant

Study of Fe(III) adsorption onto Dowex-Marathon resin, as a rate determining step of the U(IV) oxidation in 235U enrichment column

Kinetic and thermodynamic studies of U(VI) adsorption using Dowex-Marathon resin