Ms. Maryam Batool – Chemistry – Women Researcher Award

Ms. Maryam Batool – Chemistry – Women Researcher Award

University of Sahiwal Sahiwal Pakistan – Pakistan

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🎓 Educational Background

Ms. Batool holds a Master of Philosophy (M.Phil.) in Chemistry from the University of Sahiwal, Pakistan (2021-2023). Her thesis, titled “Efficient Photocatalytic Degradation of Crystal Violet Dye Using UV Light and ZnO − Bi₂O₃”, explores advanced photocatalytic techniques for dye degradation. She completed her Bachelor of Science (BS) in Chemistry from the University of Sahiwal (2016-2020). Her undergraduate thesis, “Exploring the Useability of Cedrus deodara Sawdust for Decontamination of Wastewater Containing Crystal Violet Dye”, focused on the development of natural adsorbents for wastewater treatment.

🔬 Research Interests

Ms. Maryam Batool has a strong passion for environmental chemistry and wastewater treatment. Her research focuses on batch and column adsorption, statistical analysis, and characterization analysis techniques. She has extensively studied the presence of pollutants such as dyes, metals, turbidity, and pathogens (E. coli) in drinking water. Additionally, her work includes the development of environment-friendly modified biosorbents and catalysts for wastewater treatment. She is also engaged in photocatalysis and composite materials for the efficient removal of pollutants. Her research in biomaterials extends to their applications across various scientific fields.

🏆 Awards and Distinctions

Ms. Batool has received multiple academic and professional honors throughout her career. She was awarded a Talented Student Award in her Matriculation. In Intermediate, she was recognized for her excellence and awarded a solar panel and laptop. During her BS Chemistry (2016-2020), she achieved first position (Gold Medal) at the University of Sahiwal. Additionally, she received the Merit and PEEF Scholarship throughout her academic journey. Beyond academia, she has completed a Professional Diploma in Regulatory Affairs of Drugs & Medical Devices from Radex Education, USA. She also earned a Certificate of Attendance from the Drug Discovery News webinar on combating multidrug-resistant bacterial infections.

🤝 Research Collaborations

Maryam Batool has collaborated with renowned international researchers to enhance her research impact in the field of environmental chemistry and material sciences. She has worked with Professor Dr. Arun Arjunan, Director of the Centre for Engineering Innovation & Research (CEIR) at the University of Wolverhampton, UK, focusing on advanced materials for wastewater treatment. Additionally, she has collaborated with Dr. Tariq Javed from the Department of Chemistry, University of Sahiwal, Pakistan, and Professor Dr. Layth Jasim Sameer Al-Hayder from the Department of Chemistry, Al-Qadisiyah University, Iraq. These interdisciplinary collaborations have strengthened her expertise in photocatalysis, adsorption techniques, and environmental remediation strategies.

Notable Publications📚

📚Applications of biodegradable polymers and ceramics for bone regeneration: a mini-review
  • Authors: Batool, M.; Abid, M.A.; Javed, T.; Haider, M.N.

  • Journal: International Journal of Polymeric Materials and Polymeric Biomaterials

  • Year: 2025

📚Investigating the interactions between dyes and porous/composite materials: A comprehensive study
  • Authors: Muhammad Zeeshan; Tariq Javed; Chandresh Kumari; Anusha Thumma; Muhammad Wasim; Muhammad Babar Taj; Ishu Sharma; Muhammad Nouman Haider; Maryam Batool

  • Journal: Sustainable Chemistry for the Environment

  • Year: 2025

📚Synthesis, characterization and adsorption properties of azo-functionalized polymeric hydrogels for R6G dye removal from water
  • Authors: Amna N. Zghair; Ziyad T. Al-Khateeb; Layth S. Jasim; Maryam Batool; MARYAM BATOOL

  • Journal: Applied Chemical Engineering

  • Year: 2025

📚Adsorption of Rhodamine B dye from solution using 3-((1-(4-((1H-benzo[d]imidazol-2-yl)amino)phenyl)ethylidene)amino)phenol (BIAPEHB)/ P(AA-co-AM) composite
  • Authors: Hayder O. Jamel; Maryam H. Jasim; Makarim A. Mahdi; Safaa H. Ganduh; Maryam Batool; Layth S. Jasim; Muhammad Nouman Haider

  • Journal: Desalination and Water Treatment

  • Year: 2025

📚Batch adsorption study of Congo Red dye using unmodified Azadirachta indica leaves: isotherms and kinetics
  • Authors: Javed, T.; Thumma, A.; Uddin, A.N.; Akhter, R.; Taj, M.B.; Zafar, S.; Baig, M.M.; Shah, S.S.A.; Wasim, M.; Abid, M.A.

  • Journal: Water Practice and Technology

  • Year: 2024

 

Assist. Prof. Dr. Ibtehaj – Chemistry – Best Researcher Award

Assist. Prof. Dr. Ibtehaj – Chemistry – Best Researcher Award

King Saud bin abdulaziz for health professionals – Saudi Arabia

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🎓 Educational Background

Dr. Ibtehaj Alshdoukhi has a strong academic foundation in organic chemistry and polymer science. She earned her Ph.D. in Organic Chemistry and Organic Electrochemistry from the Florida Institute of Technology, USA, in 2018. Prior to this, she completed an M.Sc. in Synthetic Organic Chemistry and Medicinal Chemistry at the same institution in 2017. Additionally, she holds a Master of Arts in Organic Chemistry and Functional Group Analysis from the University of Scranton, USA, obtained in 2014. Her academic journey began with a B.Sc. in Chemistry from King Saud University, Riyadh, KSA, in 2010, where she developed her early research interests.

👩‍🏫 Professional Experience

Dr. Alshdoukhi has accumulated over 14 years of experience in academia and research. Currently, she serves as an Assistant Professor of Chemistry at King Saud bin Abdulaziz University for Health Sciences, Riyadh. Since August 2024, she has also held the position of Director of Basic Sciences Department Laboratories, where she manages research projects, laboratory instruction, and curriculum development. In addition to her academic roles, she has contributed as a Research Chemist and Consultant, working on various projects in the fields of solar energy, fuel cells, and sustainable materials. Her expertise extends beyond teaching, as she has played a key role in advancing scientific knowledge and technological innovations.

🔬 Research Contributions & Interests

Dr. Alshdoukhi’s research primarily focuses on organic synthesis, polymer materials, and electrochemical applications. Her work has led to significant advancements in multiple areas, including artificial photosynthesis, where she has developed composite bipolar membranes for artificial photosynthetic devices. In polymer science, she has designed polymeric materials that enhance energy storage and membrane applications. She has also contributed to antioxidant chemistry by synthesizing zinc-containing polyphenolic acid esters aimed at improving antioxidant activity for food preservation. Additionally, she has developed innovative catalysts for electrolysis and fuel cells, as well as graphene-based materials for renewable energy solutions. Her interdisciplinary approach integrates chemistry, material science, and engineering to address contemporary challenges in sustainability and energy.

🧪 Technical Skills & Expertise

Dr. Alshdoukhi possesses extensive expertise in various analytical and spectroscopic techniques, which she applies to her research. She is proficient in UV-Vis Spectroscopy, Nuclear Magnetic Resonance (NMR), High-Performance Liquid Chromatography (HPLC), and Scanning Electron Microscopy (SEM). Additionally, she has significant experience in electrochemical potentiostat techniques and gas chromatography (GC). Beyond experimental techniques, she has expertise in computational chemistry, CFD simulations, and material characterization, making her a well-rounded researcher capable of tackling complex scientific problems.

💰 Research Grants & Funding

Dr. Alshdoukhi has successfully secured substantial research funding to support her scientific endeavors. In 2023, she received a 150,000 SAR research grant from the King Salman Center for Disability Research to investigate vitamin and mineral deficiencies among individuals with disabilities in Saudi Arabia. Additionally, she was awarded funding from the Development and Innovation Authority for a project focused on designing edible liposomal supplement formulas containing polyphenols to support cardiovascular health. These grants reflect the significance and impact of her research on public health and scientific innovation.

🏆 Awards & Recognitions

Dr. Alshdoukhi’s contributions to chemistry have earned her numerous prestigious awards and recognitions. She was the first researcher to demonstrate that anthocyanin compounds can bind to the surface of blood cells, marking a breakthrough in biomedical sciences. She has also received the Outstanding Graduate Student of the Year award from the University of Scranton in 2014 and the Alumni Graduate Student of the Year award in the same year. Her excellence in academia was recognized early on when she received the Scientific Excellence Award from King Saud University in 2010. Furthermore, she has been included multiple times on the Dean’s Honor Roll, acknowledging her consistent academic achievements.

💡 Leadership & Additional Skills

In addition to her research and teaching, Dr. Alshdoukhi is a strong leader and mentor. She has guided numerous students in general and organic chemistry, fostering their academic and research skills. Her technical expertise extends to various software and tools, including Microsoft Office, Adobe Suite, ChemDraw, Gaussian Computational Chemistry, and SciFinder. She is also skilled in project management, laboratory administration, scientific writing, and public speaking, making her a versatile professional in the field of chemistry.

🌍 Future Vision & Impact

Dr. Alshdoukhi is dedicated to pushing the boundaries of chemistry through her research and academic contributions. Her future goals include developing sustainable energy solutions, advancing polymer science applications, and pioneering innovative methodologies in organic chemistry. Her commitment to research, education, and technological advancements ensures that she will continue making a lasting impact in the field of applied chemistry.

Notable Publications📝


📝Adsorption, excitation analysis, and sensor properties of heteroatoms (S, P, Si) encapsulated gallium nitride nanotube for hexanol application: A computational approach
  • Authors: Oyo-Ita, I.; Nsofor, V.C.; Alshdoukhi, I.F.; Abdullah, H.Y.; Sfina, N.; Asuquo, B.B.; Gber, T.E.; Adeyinka, A.S.; Orosun, M.M.; Louis, H.

  • Journal: Materials Today Communications

  • Year: 2024

📝Epidemiology of Glucose-6-Phosphate Dehydrogenase Deficiency in Arab Countries: Insights from a Systematic Review
  • Authors: Alangari, A.S.; El-Metwally, A.A.; Alanazi, A.; Al Khateeb, B.F.; Al Kadri, H.M.; Alshdoukhi, I.F.; Aldubikhi, A.I.; Alruwaili, M.; Alshahrani, A.

  • Journal: Journal of Clinical Medicine

  • Year: 2023

📝Pd(II), Pt(II), Zn(II), Cd(II) and Hg(II) Complexes of the Newly Prepared 1,2-Benzoisothiazol-3(2H)-Dithiocarbamate (Bit-Dtc) Ligand
  • Authors: Alshdoukhi, I.F.; Al-Barwari, A.S.M.O.; Aziz, N.M.; Khalil, T.; Faihan, A.S.; Al-Jibori, S.A.; Al-Janabi, A.S.

  • Journal: SSRN

  • Year: 2023

📝Potentially toxic metals in irrigation water, soil, and vegetables and their health risks using Monte Carlo models
  • Authors: Orosun, M.M.; Nwabachili, S.; Alshehri, R.F.; Omeje, M.; Alshdoukhi, I.F.; Okoro, H.K.; Ogunkunle, C.O.; Louis, H.; Abdulhamid, F.A.; Osahon, S.E. et al.

  • Journal: Scientific Reports

  • Year: 2023

📝Electronic/Ionic Conducting Bipolar Membranes for Solar Fuel Production under pH Gradients
  • Authors: Ibtehaj Alshdoukhi; Michael Freund; Steen Holdcroft

  • Journal: Journal of Materials Science and Engineering B

  • Year: 2022

 

Dr. Z’hen’yan Xia – Physical Chemistry- Best Researcher Award

Dr. Z’hen’yan Xia – Physical Chemistry- Best Researcher Award

Tianjin University – China

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🏆 Academic Achievements

Dr. Xia has served as the Principal Investigator (PI) for multiple projects funded by the National Natural Science Foundation, reflecting his leadership in cutting-edge research. His work has been published in prestigious scientific journals, including Physics of Fluids, Computational Materials Science, and Colloids and Surfaces A: Physicochemical and Engineering Aspects, showcasing his contributions to the field.

🌀 Areas of Expertise

Dr. Z’hen’yan Xia specializes in Fluid Mechanics, Molecular Dynamics, Physical Analytical Chemistry, and Advanced Materials. His work combines both theoretical research and engineering applications, pushing the boundaries of fluid flow control and molecular interactions at macro and nanoscale levels.

🔬 Research Interests

Dr. Xia’s research focuses on two primary areas. The first is turbulent flow control and fluid instability, where he conducts theoretical research and engineering applications aimed at improving fluid flow efficiency in various engineering systems. His second area of focus is the molecular dynamics of fluid-micronano structures, where he explores the fundamental interactions between fluids and micronano surfaces, optimizing fluid behavior at microscopic levels.

🚀 Research Innovations

Reducing the contact time between liquid droplets and solid surfaces is a crucial challenge in many engineering applications. While extensive studies have been conducted on droplet impact mechanisms, there is still a lack of systematic research on nanodroplet behavior on superhydrophobic surfaces with square ridges. Dr. Xia’s research addresses this gap by investigating nanodroplet interactions on both superhydrophobic planes and structured surfaces. His findings reveal that when nanodroplets impact a superhydrophobic plane, the droplet contraction time determines the total contact time. However, when nanodroplets impact superhydrophobic surfaces with square ridges, the critical factor influencing contact time is the detachment time as the droplet lifts off. Additionally, his research highlights that nanodroplets exhibit stronger adhesion to solid surfaces compared to larger droplets and are also more resistant to deformation and splitting, a characteristic not commonly observed in macroscopic droplets. Dr. Xia introduces the critical rebound Weber number (We) to evaluate how square ridges enhance droplet rebound performance. His study demonstrates that a moderate increase in ridge height helps in reducing contact time, while narrower ridges are more effective in minimizing contact duration and facilitating droplet splitting.

Notable Publications📄


📄An analysis of the contact time of nanodroplets impacting superhydrophobic surfaces with square ridges
  • Authors: HuaiYing Shi, XuanQiang Hou, HaiJue Xu, YuChuan Bai, ZhenYan Xia

  • Journal: Computational Materials Science

  • Year: 2024

📄Experimental investigation of the impact of viscous droplets on superamphiphobic surfaces
  • Authors: Yaolin Tai, Haijue Xu, Yuchuan Bai, Linan Li, Shibin Wang, Zhenyan Xia

  • Journal: Physics of Fluids

  • Year: 2022

📄Research on the contact time of a bouncing microdroplet with lattice Boltzmann method
  • Authors: Yaolin Tai, Yang Zhao, Xinyu Guo, Linan Li, Shibin Wang, Zhenyan Xia

  • Journal: Physics of Fluids

  • Year: 2021