Assist Prof Dr. Maryam Ghiyasiyan-Arani | Authentic Leadership | Young Scientist Award

Assist Prof Dr. Maryam Ghiyasiyan-Arani | Authentic Leadership | Young Scientist Award

 

Tsinghua University, China

Profile 

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🎓 Early Academic Pursuits

Maryam Ghiyasiyan-Arani began her academic journey with a Bachelor of Science in Pure Chemistry at Kashan University (2010-2014), where she demonstrated remarkable academic prowess, ranking 1st in her class with a GPA of 18.09/20. Following this success, she pursued a Master of Science in Nanoscience and Nanotechnology (Nanochemistry) at the same institution from 2014 to 2016, again ranking 1st in her class with an even higher GPA of 19.35/20. Her interest in nanotechnology and materials science became evident during her MSc studies, where her thesis focused on the synthesis, characterization, and investigation of nanomaterials like vanadates of metals such as Copper(II), Nickel(II), and Cobalt(II) for photocatalytic and optical properties.

Continuing her academic pursuit, she earned her Ph.D. in Nanoscience and Nanotechnology from Kashan University (2016-2020), where she once again ranked at the top of her class. Her doctoral research explored the electrochemical performance of lithium-ion batteries (LIBs) and hydrogen storage materials, particularly focusing on vanadate, niobate, and spinel nanostructures. Her Ph.D. work was supported by industrial collaborations with the Power Energy Organization and Saba Battery Company, indicating her work’s relevance to real-world energy applications.

🧑‍🔬 Professional Endeavors

Dr. Ghiyasiyan-Arani is currently a faculty member at the Institute of Nanoscience and Nanotechnology, University of Kashan, where she continues her research and mentorship in nanotechnology. Her career is marked by an impressive array of projects focusing on nanomaterials for energy storage, particularly hydrogen storage and lithium-ion batteries. She has been involved in several research projects, including the synthesis of active materials for energy storage, investigation of clay as a hydrogen storage material, and the design of separators for lithium-ion batteries.

Beyond her academic roles, she is a member of several prestigious organizations, including the Iran Nanotechnology Initiative Council (INIC), Young Research and Elite Club, and Iran’s National Elites Foundation, reflecting her recognition as a leading figure in nanoscience.

🔬 Contributions and Research Focus

Dr. Ghiyasiyan-Arani has made significant contributions to the field of nanotechnology, with a strong focus on energy storage materials and environmental applications. Her research interests include:

Synthesis and Characterization of Nanomaterials: She specializes in creating nanomaterials with different morphologies using various chemical methods like precipitation, sonochemistry, microwave, hydrothermal, and sol-gel synthesis.
Electrochemical Hydrogen Storage: A major focus of her work involves improving the capacity of nanomaterials for hydrogen storage, a crucial area for clean energy technologies.
Lithium-Ion Batteries: Her work on LIBs extends to synthesizing active materials (both cathode and anode), designing battery separators, and studying the electrochemical properties of batteries through techniques like impedance spectrometry, galvanostatic charge-discharge, and cyclic voltammetry.
Water Treatment: She is also exploring photocatalytic activities of nanomaterials for water treatment, indicating her focus on environmental sustainability.

🏅 Accolades and Recognition

Dr. Ghiyasiyan-Arani has earned numerous accolades throughout her career. Some notable recognitions include:

Stanford University Top 2% Scientists Worldwide: She was listed among the Top 2% Scientists Worldwide in 2022 and 2023 by Stanford University, highlighting the global impact of her work.
Reviewer of Prestigious Journals: She serves as a reviewer for several ISI-indexed journals like Ultrasonics Sonochemistry, Journal of Alloys and Compounds, International Journal of Hydrogen Energy, and Nanoscale Advances, which reflects her expertise and standing in the academic community.
Reviewer for International Congress on Nanoscience and Nanotechnology: She has also reviewed work for major conferences such as the 7th International Congress on Nanoscience and Nanotechnology (ICNN2018), further contributing to the growth of nanoscience.

🌍 Impact and Influence

Dr. Ghiyasiyan-Arani’s work is particularly impactful in the field of clean energy. Her focus on hydrogen storage materials and lithium-ion batteries positions her research at the forefront of the global push towards sustainable energy solutions. Her publications on electrochemical hydrogen storage and battery materials have added significant insights to the scientific community, advancing the development of more efficient and environmentally friendly energy storage technologies.

Additionally, her contributions to photocatalytic water treatment show her dedication to addressing environmental issues, particularly in developing sustainable methods for cleaning water, a critical resource in a world facing climate change.

🏛️ Legacy and Future Contributions

Dr. Maryam Ghiyasiyan-Arani is poised to leave a lasting legacy in the fields of nanotechnology and energy storage. As a leading researcher in Iran and a globally recognized scientist, her continued work will likely contribute to critical advancements in renewable energy technologies and environmental sustainability. With her ongoing involvement in academia and collaborations with industrial partners, her future contributions are expected to further bridge the gap between fundamental research and practical, real-world applications.

In the coming years, she is likely to make strides in developing next-generation energy storage systems and green technologies, contributing to global efforts to combat climate change and reduce reliance on fossil fuels. Her innovative approaches to nanomaterial synthesis and energy storage position her as a key player in the ongoing evolution of sustainable energy solutions.

📝Notable Publications

Dr. Aleksandra Kravtsova | Authentic Leadership | Best Scholar Award

Dr. Aleksandra Kravtsova | Authentic Leadership | Best Scholar Award

Kutateladze Institute of Thermophysics of the Siberian Branch of the Russian Academy of Sciences, Russia

🔗 Profile

Scopus

🎓Early Academic Pursuits

Aleksandra Yu. Kravtsova embarked on her academic journey with a strong foundation in mathematics and mechanics. She graduated from Novosibirsk State University in 2008, specializing in Mathematics (Mechanics). Her early education laid the groundwork for her future research in experimental fluid mechanics, focusing on the application of optical methods such as Particle Image Velocimetry (PIV) and Particle Trekking Velocimetry (PTV). These tools became essential in her subsequent work, providing critical insights into complex fluid dynamics phenomena.

🧪Professional Endeavors 🧪

Aleksandra’s professional career began at the Center of Virology and Biotechnology “Vector” in the Novosibirsk region, where she worked as an engineer from 2004 to 2008. Her transition to the Institute of Thermophysics, Russian Academy of Science (IT SB RAS), marked a significant shift towards research in fluid mechanics. From 2009 to 2010, she served as an engineer at IT SB RAS before progressing to a post-graduate student position from 2010 to 2013. Her dedication and passion for research culminated in her earning a Ph.D. in physicomathematical sciences in 2018, with a thesis titled “Experimental investigation of cavitation flow nearest two-dimensional hydrofoils.”

Following her Ph.D., Aleksandra continued her ascent in the research field, taking on roles of increasing responsibility at IT SB RAS. She worked as a Junior Research Scientist from 2013 to 2018, and then as a Research Scientist until 2022. Concurrently, she was appointed a Senior Research Scientist at Novosibirsk State University (NSU) in 2019, and in 2022, she assumed a similar role at IT SB RAS.

🔬Contributions and Research Focus 

Aleksandra’s research has primarily focused on experimental fluid mechanics, particularly using advanced optical methods. Her work includes the study of cavitation, hydrodynamics in micro- and macroscale flow channels, and the physical processes in vortex flows, including cavitation and polyphase flow. She has coordinated several significant research projects funded by the Russian Science Foundation (RSF) and the Russian Foundation for Basic Research (RFBR). Notable among these are:

  • RSF № 19-79-10217 (2019-2024): Investigation of problems of occurrence and control of hydrodynamic cavitation at mini- and microscale.
  • RFBR №16-31-00149 (2016-2017): The study of the flow turbulent structure under external perturbation influences using PIV and Laser-Induced Fluorescence.
  • Special Federal Programme №14.132.21.1725 (2012-2013): Investigation of the influence of the scale factor on the spatial structure and dynamics of cavitation.

Aleksandra has also been a researcher on several other projects, such as the RSF grants focusing on vortex phenomena in hydraulic turbines and the development of methods for controlling heat and mass transfer processes during phase transitions and chemical reactions.

🏆Accolades and Recognition 

Aleksandra’s work has not gone unnoticed. She has received numerous awards and honors, including:

  • Gratitude of the Novosibirsk Region Government (2018): For her contributions to science.
  • Scholarship of the Russian Federation Government in the field of science and energy (2013-2018).
  • Certificate of Top Science at the International Conference “Lomonosov Readings in Altai” (2017).
  • Scholarship of the Novosibirsk Region Government, Russian Federation in the power engineering area (2013).

🌍Impact and Influence 

Aleksandra’s research has significantly influenced the field of experimental fluid mechanics. Her investigations into cavitation and hydrodynamics have provided valuable insights into optimizing fluid flow in various engineering applications. Her publications in high-impact journals, such as Physics of Fluids, Scientific Reports, and Experimental Thermal and Fluid Science, underscore her contributions to the scientific community. Her work on cavitation and flow dynamics has practical implications in industries ranging from aerospace to renewable energy.

🚀Legacy and Future Contributions 🚀

With over 40 journal publications and more than 70 other publications, Aleksandra’s academic output is impressive. Her research has achieved an H-index of 7, reflecting the high citation rate and impact of her work. Moving forward, Aleksandra is poised to continue her pioneering research, particularly in the realm of fluid mechanics at the micro and macro scales. Her ongoing projects promise to yield further advancements in understanding and controlling complex fluid dynamics, ensuring her legacy as a leading researcher in her field.

Aleksandra Yu. Kravtsova’s career is a testament to her dedication, expertise, and impact on the scientific community. Her work not only advances theoretical understanding but also offers practical solutions to real-world engineering challenges, paving the way for future innovations in fluid mechanics and related disciplines.

📚 Publications

Dr. Kalaiselvi Viswanathan | Authentic Leadership | Women Researcher Award

Dr. Kalaiselvi Viswanathan | Authentic Leadership | Women Researcher Award

Navarasam Arts and Science College for Women, Arachalur

🔗 Professional Profiles

Summary

Dr. V. Kalaiselvi is a dedicated educator and leader committed to creating a positive learning environment and providing superior learning skills. She focuses on molding the aspiring young generation by imparting knowledge, skills, and values of education to promote them as socially responsible citizens.

Education

  • Ph.D. in Physics 🧪
  • M.Sc. in Physics 📚
  • B.Sc. in Physics 🎓

Professional Experience

  • Associate Professor & Head, PG & Research Department of Physics
    Navarasam Arts and Science College for Women, Arachalur, Erode, Tamilnadu

Research Interests

  • Physics Education 🧪
  • Innovative Teaching Methods 📚
  • Educational Leadership 🌟

Contact Information

  • Office Address:
    Navarasam Arts and Science College for Women, Arachalur, Erode-638101, Tamilnadu
  • Residential Address:
    w/o Mr. N. Karthikeyan, 21, Gandhi Nagar, First Street, Kattoor Road, Chennimalai, Erode-638051, Tamilnadu
  • Mobile: 9789111334, 9894704334
  • Email: nk.arthi.kalai@gmail.com

Objective

  • Dedicated to creating a positive learning environment and providing superior learning skills.
  • Committed to molding aspiring young generations by imparting knowledge, skills, and inculcating values of education to promote them as socially responsible citizens.

Personal Profile

  • Date of Birth: March 31, 1981
  • Sex: Female
  • Nationality/Religion/Community: Indian/Hindu/BC (Kongu Vellalar)
  • Native State/District/Place: Tamil Nadu/Erode/Chennimalai
  • Marital Status: Married
  • Language Proficiency: Fluent in Tamil and English
  • Passport Status: Holder of a valid Indian Passport
  • Employment Registration Number: MDP2006F0012807

Publication Top Noted

 Paper Tittle: Synthesis and characterization of pure titanium dioxide nanoparticles by sol-gel method

  • Authors: V Vetrivel, K Rajendran, V Kalaiselvi
  • Journal: Int. J. ChemTech Res
  • Year: 2015
  • Citations : 109

 Paper Tittle: Microwave assisted green synthesis of Hydroxyapatite nanorods using Moringa oleifera flower extract and its antimicrobial applications

  • Authors: V Kalaiselvi, R Mathammal, S Vijayakumar, B Vaseeharan
  • Journal: International journal of veterinary science and medicine
  • Year: 2018
  • Citations : 85

 Paper Tittle: Green synthesis of silver doped zinc oxide nanoparticles using fresh leaf extract Morinda citrifoliaand its antioxidant potential

  • Authors: K Shreema, R Mathammal, V Kalaiselvi, S Vijayakumar, K Selvakumar, K Senthil
  • Journal: Materials Today: Proceedings
  • Year: 2021
  • Citations : 34

 Paper Tittle: Biogenic Preparation and Characterization of ZnO Nanoparticles from Natural Polysaccharide Azadirachta indica .L. (neem gum) and its Clinical Implications

  • Authors: Sekar Vijayakumar, Mani Divya, Baskaralingam Vaseeharan, Shivendu Ranjan, Viswanathan Kalaiselvi, Nandita Dasgupta, Jingdi Chen, Esteban F Durán-Lara
  • Journal: Journal of Cluster Science
  • Year: 2021
  • Citations : 29

Paper Tittle: Marine polysaccharide laminarin embedded ZnO nanoparticles and their based chitosan capped ZnO nanocomposites: Synthesis, characterization and in vitro and in vivo toxicity …

  • Authors: Sekar Vijayakumar, Jingdi Chen, Viswanathan Kalaiselvi, Kanchanlata Tungare, Mustansir Bhori, Zaira I González-Sánchez, Esteban F Durán-Lara
  • Journal: Environmental Research
  • Year: 2022
  • Citations : 21

Federico Galli-Charismatic Leadership-Best Researcher Award

Prof Dr. Federico Galli-Charismatic Leadership-Best Researcher Award

Université de Sherbrooke-Canada 

Author Profile

Early Academic Pursuits

Dr. Federico Galli's academic journey began with his Bachelor's degree in Industrial Chemistry at the Università degli Studi di Milano, where he completed his degree with a thesis focusing on the characterization of the surface acidity of doped niobium oxide catalysts. Building on this foundation, he pursued a Master's degree in Industrial Chemistry and Management, conducting research on the liquid-liquid and vapor-liquid equilibria of highly non-ideal mixtures of industrial interest.

His academic pursuits reached their pinnacle with a Doctorate in Industrial Chemistry, completed at the Università degli Studi di Milano. His doctoral research centered around the reduction of the carbon footprint of fuels and petrochemicals, utilizing vegetable oils as a starting point. Notably, his work contributed to the fields of Chemical Synthesis and Catalysis, Clean Technologies, and Chemical Processes.

Professional Endeavors

Following his academic achievements, Dr. Galli ventured into the professional realm, serving as a Postdoctoral Fellow in various prestigious institutions. His roles included responsibilities in catalyst synthesis, reactor and experiment design, and the assembly of a micro-refinery unit for natural gas conversion at École Polytechnique de Montréal. He demonstrated leadership by heading a team, co-authoring patents, and participating in Hazard and Operability (HAZOP) studies.

He continued his postdoctoral research at the Università degli Studi di Milano, focusing on the synthesis of methanol from carbon dioxide. Dr. Galli's expertise expanded to the intensification of biolubricant synthesis from vegetable oil and biodiesel, incorporating ultrasound cavitation for enhanced reaction rates.

Contributions and Research Focus

Dr. Galli transitioned to academia as an Assistant Professor at the Université de Sherbrooke, where he embarked on a tenure track focused on chemical processes and energy applications. His research specialization includes chemical engineering, catalysis, and chemistry, with a keen interest in biomass, biofuels, and advanced oxidation processes.

His diverse research experience spans the development of new catalysts, synthesis of methanol from carbon dioxide, and the study of biolubricant synthesis. Notably, he secured multiple research grants, including a Discovery Grant from the Natural Sciences and Engineering Research Council of Canada (NSERC), emphasizing cleaner production and catalysis.

Accolades and Recognition

Dr. Galli's contributions have not gone unnoticed. He received awards such as the Fausto Radici Prize for the best industrial chemistry Master thesis of 2010 and a PRIN (Progetti di Rilevante Interesse Nazionale) grant during his doctoral studies. These accolades underscore the excellence and impact of his research.

Impact and Influence on Charismatic Leadership+

Dr. Galli's impact is evident through his involvement in projects with potential industrial applications, publications in reputable journals, and the development of innovative processes, as seen in the assembly of a micro-refinery unit and the synthesis of methanol from carbon dioxide.

Charismatic leaders often demonstrate a keen understanding of emotional intelligence, connecting with the emotions of their team members and creating a supportive and inclusive atmosphere. The ability to take calculated risks and make bold decisions sets charismatic leaders apart, fostering a culture of innovation and adaptability. Additionally, these leaders are known for their personal sacrifices and willingness to put the collective interest above their own. The impact of charismatic leadership extends beyond immediate results, as it can inspire long-term loyalty and commitment from followers. While charismatic leadership can be highly effective, it is crucial for leaders to balance their charisma with ethical considerations and inclusivity, ensuring a sustainable and healthy organizational culture that promotes both individual growth and collective success.

Legacy and Future Contributions

As an Assistant Professor, Dr. Galli's legacy is unfolding through his research, teaching, and leadership roles. His future contributions are anticipated to further enrich the fields of chemical processes, catalysis, and energy applications, leaving a lasting impact on academia and industry alike.

Charismatic leadership is a captivating and influential style that centers around a leader's ability to inspire and motivate others through their magnetic personality and compelling communication. A charismatic leader possesses an innate charm that draws followers in, creating a sense of trust and admiration. These leaders are often visionary, painting a vivid picture of a compelling future that resonates with the collective aspirations of their team. Their confidence and self-assurance are contagious, instilling a belief in the team's capabilities and fostering a shared commitment to achieving ambitious goals. Effective communication is a hallmark, as charismatic leaders skillfully articulate their vision using persuasive language, emotional appeal, and relatable stories, creating a deep connection with their audience. This leadership style is not only about achieving results but also about creating a positive and engaging work environment where followers feel personally connected to the leader and the overarching mission.

Citation 

  • Citations  1502     1173
  • h-index     23         21
  • i10-index  47         40

Notable publications