Dr. Said Munir | Air Quality | Best Researcher Award

Dr. Said Munir | Air Quality | Best Researcher Award

National Center for Meteorology, Jeddah, Saudi Arabia.

Dr. Said Munir is a seasoned Air Quality and Meteorology Expert at the National Center for Meteorology in Jeddah, Saudi Arabia. With dual nationalities (British and Pakistani) and over 20 years of international experience, he has contributed significantly to the fields of air quality monitoring, emission modeling, atmospheric chemistry, and climate impact assessment. Known for his interdisciplinary research, Dr. Munir thrives in collaborative environments and utilizes machine learning, QGIS, and R to solve complex environmental problems. He has authored over 50 peer-reviewed publications and is recognized globally for his work in both academia and public policy.

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๐ŸŽ“ Education

Dr. Said Munir holds a ๐ŸŽ“ Ph.D. in Air Quality and Transport Studies from the University of Leeds, UK (2009โ€“2013), where he conducted pioneering research on the spatial-temporal analysis of traffic-related ground-level ozone ([Link to Thesis]). He previously earned a ๐ŸŒฌ๏ธ Masterโ€™s degree in Air Pollution Management and Control from the University of Birmingham, UK (2008โ€“2009), focusing his dissertation on the impact of ozone on UK agriculture. Earlier, he completed a ๐ŸŒ Masterโ€™s in Natural Resources Management at the University of Greenwich, UK (1999โ€“2000), where he assessed atmospheric pollutants using simple methodologies. Dr. Munir began his academic journey with a ๐ŸŒพ B.Sc. (Hons) in Agriculture from the Agricultural University Peshawar, Pakistan (1995โ€“1998), graduating with First Class Honours and an impressive GPA of 3.86/4.00. His multidisciplinary education reflects a deep commitment to understanding and managing environmental challenges at the intersection of air quality, transport, and agriculture.

๐Ÿ’ผ Experience

Dr. Said Munir is currently serving as an Air Quality and Meteorology Expert at the National Center for Meteorology, Saudi Arabia (2024โ€“Present), where he leads national-level projects on air quality and drought variability, employing advanced modeling techniques and machine learning. Prior to this, he was a Senior Research Fellow at the University of Leeds, UK (2021โ€“2024), contributing to high-impact EU-funded projects such as nPETS and MODALES, focused on nanoparticle emissions, transport, and climate-health policy development. From 2017 to 2021, Dr. Munir worked as a Research Associate at the University of Sheffield, UK, where he managed urban air quality sensor networks, conducted high-resolution pollution mapping, and carried out source apportionment studies, playing a key role in advancing urban environmental monitoring systems.

๐Ÿ”ฌ Research Interests

๐ŸŒซ๏ธ Air Quality Monitoring & Impact Assessment

๐Ÿ’ป Machine Learning in Environmental Science

๐ŸŒ Emission & Dispersion Modeling (ADMS-Urban, Airviro)

๐Ÿงช Atmospheric Chemistry and Receptor Modelling

๐Ÿ›ฐ๏ธ Geospatial and Statistical Analysis (QGIS, R)

โ˜€๏ธ Climate Change, Drought Indices, and Environmental Policy

๐Ÿ† Awards & Grants

Multiple national and international research grants from EU and UK agencies.

Contributor to high-impact environmental policy frameworks in Saudi Arabia and the UK.

Recognized for advancing low-cost sensor technology and nanoparticle emission mitigation.

๐Ÿ“š Selected Publications

Munir et al. (2025) โ€“ Drought variabilities in Saudi Arabia: Spatiotemporal trends โ€“ Earth Systems and Environment.
DOI: 10.1007/s41748-025-00570-w
Cited by: 2 articles

Munir et al. (2025) โ€“ PM2.5 Variability in Saudi Arabia โ€“ Atmosphere, 16, 463.
DOI: 10.3390/atmos16040463
Cited by: 4 articles

Munir et al. (2025) โ€“ Machine Learning & Source Apportionment in Saudi Arabia โ€“ Water, Soil and Air Pollution (Under Review)
Cited by: Awaiting peer review

Munir et al. (2025) โ€“ Urban Nanoparticle Emission Modeling โ€“ Atmosphere, 16(4), 417.
DOI: 10.3390/atmos16040417
Cited by: 1 article

Al-Hajji et al. (2025) โ€“ Dust Storm Climate Study in Riyadh โ€“ Int. J. of Environment and Climate Change, 15(3): 381-99.
DOI: 10.9734/ijecc/2025/v15i34780
Cited by: 3 articles

Mr. Yi Cui | Materials Science | Best Researcher Award

Mr. Yi Cui | Materials Science | Best Researcher Award

Stanford University, United States.

Mr. YI Cui is a Ph.D. candidate in Materials Science and Engineering at Stanford University. He holds a B.S. in Chemistry from the University of Science and Technology of China (USTC). YI's research delves into the cutting-edge fields of materials science, particularly focusing on phase segregation dynamics in mixed halide perovskites and twisted epitaxial growth of gold nanodiscs in 2D materials. His innovative work has earned him recognition in the field of nanotechnology and energy materials.

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Education ๐ŸŽ“

YI Cui is currently pursuing a Ph.D. in Materials Science and Engineering at Stanford University, California, under the guidance of Professors Yi Cui and Bob Sinclair (Jan. 2021 - Jun. 2025). Prior to this, he completed a Bachelor of Science in Chemistry at the University of Science and Technology of China (USTC) in Hefei, where he was part of the prestigious Special Class for the Gifted Young, Department of Chemical Physics (Aug. 2016 - Jun. 2020).

Experience ๐Ÿ’ผ

YI Cui has worked on groundbreaking research projects, including studying phase segregation dynamics in mixed halide perovskites using advanced cryo-EM techniques and pioneering twisted epitaxial growth methods for nanodiscs in 2D materials. His projects span from energy materials to nanotechnology, making significant contributions to understanding the behavior of materials at the atomic level. He has gained extensive research experience through collaborations with top professors at Stanford and USTC, focusing on the development of innovative materials for energy applications.

Research Interests ๐Ÿ”ฌ

Phase segregation dynamics in mixed halide perovskites, particularly through cryogenic electron microscopy.

Twisted epitaxial growth of gold nanodiscs within twisted bilayer 2D materials, such as molybdenum disulfide.

Investigation of advanced materials for energy storage, such as lithium metal batteries and solid-state electrolytes.

Developing novel techniques for characterizing and manipulating materials at the atomic and nanoscale.

Publications Top Notes๐Ÿ“š

Design Principles of Artificial Solid Electrolyte Interphases for Lithium-Metal Anodes, Cell Reports Physical Science, 2020
Contributors: Yu Zhiao, Cui Yi, Bao Zhenan. Link

Transient Voltammetry with Ultramicroelectrodes Reveals the Electron Transfer Kinetics of Lithium Metal Anodes, Adv. Energy Lett., 2020, Contributors: Boyle David, Kong Xian, Pei Allen, Rudnicki Paul, Shi Feifei, Huang William, Bao Zhenan, Qin Jian, Cui Yi. Link

Atomic-level insights into strain effect on p-nitrophenol reduction via Au@Pd core-shell nanocubes as an ideal platform
Journal of Catalysis, 2020-01-01, Contributors: Cui, Yi; Ma, Kaibo; Chen, Zhao; Yang, Jinlong; Geng, Zhigang; Zeng, Jie. Link

Dynamic Structure and Chemistry of the Silicon Solid-Electrolyte Interphase Visualized by Cryogenic Electron Microscopy, Matter, 2019, Contributors: Huang William, Wang Jiangyan, Braun R Michael, Zhang Zewen, Li Yuzhang, Boyle T David, McIntyre C Paul, Cui Yi. Link