Eriona Canga | Nature-based Solutions | Research Excellence Award

Dr. Eriona Canga | Nature-based Solutions | Research Excellence Award

Researcher | Alchemia-Nova Research and Innovation | Austria

Dr. Eriona Canga is an environmental researcher whose work centers on innovative, science-driven approaches to water management, nutrient removal, and sustainable eco-technologies. With extensive international research experience, she has developed strong expertise in hydro-geochemistry, constructed wetlands, and nature-based solutions for circular and climate-resilient urban systems. Her research focuses especially on wastewater treatment using multifunctional constructed wetlands and the optimization of phosphorus and nitrogen removal through advanced filter materials. She has contributed to major European and international research initiatives addressing sustainable agriculture, water circularity, biorefinery concepts, biochemical processes, and resource recovery in cities. Eriona’s scientific work demonstrates a deep understanding of hydro-physical behavior, solute transport, hydraulic conductivity, and nutrient retention in granular media and drainage filters. She has authored a body of peer-reviewed work that has achieved 199 citations across 186 documents, with 11 publications contributing to an h-index of 7. Her contributions extend to laboratory experimentation, field-scale assessments, and modeling approaches such as advection–dispersion, stream tube models, and transfer-function methods. She has presented her findings at international conferences focused on wetland systems, water pollution control, hydrology, and environmental technology, helping advance sustainable water treatment strategies. Dr. Eriona Canga is also active in multidisciplinary collaborations involving green chemistry, groundwater protection, and climate-related impacts on Mediterranean and European water systems. With strong capabilities in scientific coordination, laboratory management, project development, and academic supervision, she continues to advance research integrating ecological engineering, circular resource management, and innovative environmental technologies to support sustainable and resilient water infrastructures.

Featured Publications

Seyi Dada | Environmental Science | Editorial Board Member

Ms. Seyi Dada | Environmental Science | Editorial Board Member

Tallinn University of Technology | United States

Ms. Seyi Dada is an environmental engineering and sustainability researcher whose work focuses on advancing innovative approaches for waste management, pollution reduction, and resource-efficient systems. Her research interests span sustainable electronic waste management, air quality analysis, renewable energy integration, environmental impact assessments, and circular economy strategies. She has conducted impactful studies on developing sustainable e-waste management frameworks, evaluating recycling technologies, analyzing environmental risks, and improving resource recovery methods to minimize ecological harm. Her work also includes assessing particulate matter dynamics in indoor and outdoor environments, examining the factors influencing air pollution dispersion, and contributing scientific insights that support healthier living conditions. She has explored renewable energy pathways through studies on biological methanation in power-to-gas systems and resource derivation from industrial and household waste streams, including the recovery of useful materials from discarded electronics and organic by-products. Her contributions extend to environmental performance evaluations, municipal solid waste life-cycle assessments, sustainability appraisals of consumer products, and comparative analyses of emerging and conventional technologies. Through her involvement in environmental monitoring activities, she has supported water quality assessments and identified key indicators of ecosystem health. Her strong interest in sustainability has led to participation in projects focused on eco-friendly manufacturing, waste treatment optimization, digitalization for improved environmental efficiency, and large-scale impact assessments for industrial and marine developments. An active member of multiple professional environmental organizations, she continues to integrate engineering principles, data-driven analysis, and environmental science to promote sustainable development and advance practical solutions for global environmental challenges.

Featured Publications

Nyambane, C. (2024, June). Development of a sustainable e-waste management system in Estonia.

Nyambane, C. (2024, May). Development of silver from used X-ray films and graphene from drained cassava starch.

Nyambane, C. (2024, September). Economic and operational feasibility of biological methanation in power-to-gas systems: Enhancing renewable energy integration.

Zhiyuan Qi | Ecology | Best Researcher Award

Mr. Zhiyuan Qi | Ecology | Best Researcher Award

Jianghan University | China 

Mr. Zhiyuan Qi is a dedicated Master Candidate in Biology at the College of Life Sciences, Jianghan University, specializing in aquatic biological resources protection. Holding a Bachelor’s degree in Biotechnology from Liaoning University, her undergraduate research focused on the anti-hepatoma activity of intracellular polysaccharides from Paecilomyces hepiali. Her academic journey reflects a strong commitment to aquatic ecology, with active participation in the Yangtze River “Ten-Year Fishing Moratorium” monitoring project aimed at supporting sustainable aquatic ecosystem management. Mr. Zhiyuan Qi has contributed to the field through publications, including one in an EI-indexed journal and another in the international journal Animals, showcasing her research in fish community ecology and freshwater ecosystem restoration. Her scholarly excellence was recognized through the “Excellent Graduate Report” Award at an academic meeting of the Fisheries Resources and Environment Branch of the China Society of Fisheries. Mr. Zhiyuan Qi research focuses on the ecological monitoring of freshwater systems, providing crucial data for resource management and biodiversity conservation in the Three Gorges Reservoir head area. Through her scientific contributions, she strives to advance understanding of aquatic ecosystem dynamics, offering insights that promote effective conservation policies and sustainable management practices for regional aquatic resources.

Profile: Orcid 

Featured Publications

Qi, Z., Zhai, D., Liu, H., Xiong, F., Liao, C., Tian, H., & Duan, X. (2025). Fish community structure and nested distribution pattern of the three tributaries at the head of the Three Gorges Reservoir. Journal of Lake Sciences, 33, Article 032.

Cai, F., Qi, Z., Hu, Z., Zhai, D., Chen, Y., Xiong, F., & Liu, H. (2025, September). Revealing phenotypic differentiation in Ochetobius elongatus from the Middle Yangtze River through geometric morphometrics. Animals, 15(19), 2870.

Ritu Kumari | Botany | Best Researcher Award

Assist. Prof. Dr. Ritu Kumari | Botany | Best Researcher Award

Assistant Professor | Lovely Professional University | India

Assist. Prof. Dr. Ritu Kumariis a dedicated researcher in the field of Botany with specialization in Plant Physiology, committed to advancing knowledge in abiotic stress tolerance and plant signaling. Her academic journey through esteemed institutions in Punjab reflects a deep-rooted passion for understanding how plants respond to environmental challenges. Her research primarily focuses on the regulatory mechanisms of signaling molecules such as nitric oxide and hydrogen sulfide in enhancing plant resilience under salt stress. With extensive experience in multi-stress simulation, biochemical assays, and antioxidant response analysis, she strives to develop sustainable strategies for crop improvement. Assist. Prof. Dr. Ritu Kumari has co-authored impactful publications and book chapters in reputed journals and international volumes, contributing significantly to plant stress biology, physiology, and crop management. Her research profile includes 21 citations by 21 documents, 7 published works, and an h-index of 2, reflecting her growing scholarly impact. Her collaborations with distinguished scientists across India, China, and Saudi Arabia highlight her global research engagement. Recipient of prestigious awards for her scientific presentations, she actively participates in international conferences and workshops focused on sustainable agriculture and environmental resilience. Through her innovative work and academic collaborations, Assist. Prof. Dr. Ritu Kumari aims to translate plant physiological insights into practical solutions for agricultural sustainability and food security.

Featured Publications

Kumari, R., Kapoor, P., Mir, B. A., Singh, M., Parrey, Z. A., Rakhra, G., Parihar, P., et al. (2024). Unlocking the versatility of nitric oxide in plants and insights into its molecular interplays under biotic and abiotic stress. Nitric Oxide, 150, 1–17.

Kumari, R., Khan, M. N., Parrey, Z. A., Kapoor, P., Mir, B. A., Taziun, T., Parihar, P., et al. (2025). Synergistic effects of hydrogen sulfide and nitric oxide in enhancing salt stress tolerance in cucumber seedlings. Physiologia Plantarum, 177(1), e70109.

Kapoor, P., Parrey, Z. A., Mir, B. A., Wani, A. W., Kumari, R., Rakhra, G., Joshi, R., et al. (2025). Flaxseed in diabetes management: Nutritional and therapeutic insights. Current Nutrition Reports, 14(1), 1–18.

Ahmad, Z., Kumari, R., Mir, B. A., Saeed, T., Firdaus, F., Vijayakanth, V., Keerthana, K., Ramakrishnan, M., & Wei, Q. (2025). Bamboo for the future: From traditional use to Industry 5.0 applications. Plants, 14(19), 3019.

Kumari, R., Rakhra, G., Alsahli, A. A., Bhat, J. A., & Ahmad, P. (2025). Exploring the potential of signaling molecules hydrogen sulfide and nitric oxide in augmenting salt stress resilience in bitter gourd. BMC Plant Biology, 25(1008), 14.

Ashish Sharma | Sustainability | Best Academic Researcher Award

Dr. Ashish Sharma | Sustainability | Best Academic Researcher Award

Founding CEO | Sustainability Alternatives Ltd | India

Dr. Ashish Sharma is a globally recognized environmental researcher and consultant with deep expertise in air pollution mitigation, sustainability assessment, and Net‑Zero strategy design. Currently engaged as a Scientific Consultant at India’s MoEFCC NATCOM Cell, Manager for Air Quality at WRI India Ross Center, and Co‑founder of Sustainability Alternatives Ltd., UK, he blends cutting-edge analysis with policy influence across multiple continents.

Professional Profile

Scopus

Google Scholar

Education

Dr. Sharma earned his Ph.D. in Civil and Environmental Engineering from the University of Surrey (2017–2021), UK, focusing on quantifying and mitigating particulate matter exposure in young children. He earlier obtained an MRes in Environmental Science from Macquarie University, Australia (2015–2016), and an M.S. in Environmental Engineering from Gwangju Institute of Science & Technology, South Korea (2012–2014). His academic training builds a strong foundation in climate policy, life cycle assessment, and exposure modeling.

Experience

Dr. Sharma has led high-impact roles across governmental, nonprofit, academic, and consulting sectors. At MoEFCC, he coordinated India’s GHG inventory reporting, developed the Net Zero Portal, and championed transparency under the UNFCCC Enhanced Transparency Framework. At WRI India, he manages air quality programs for urban environments, engages with cities and stakeholders, and produces research-driven policy briefs. As founder of Sustainability Alternatives Ltd., he advises clients globally on decarbonization, circular economy, and sustainability integration.

Research Interests

His research spans multiple domains: air pollution exposure assessment, climate policy, Net Zero strategy development, life cycle sustainability, and environmental governance. He has led interdisciplinary international projects in India, the UK, the USA, Australia, and South Korea, using tools like MOVES, GREET, SimaPro, GaBi, ArcGIS, and R to deliver policy-relevant analysis.

Awards

Dr. Sharma was awarded the EPSRC NPIF PhD fellowship at Surrey, the iMQRES scholarship at Macquarie University, and a Korean government scholarship at GIST. He has consistently delivered in leadership, communication, and capacity-building roles, having presented at high-profile forums such as the India 2047 Summit and the WRI City platforms.

Top Noted Publications

Title: Urban energy transition in smart cities: a comprehensive review of sustainability and innovation
Year: 2025
Cited by: +13

Title: Air pollution exposure assessment simulation of babies in a bike trailer and implication for mitigation measures
Year: 2022
Cited by: +5

Title: Quantification of air pollution exposure to in‑pram babies and mitigation strategies
Year: 2020
Cited by: +3

Title: Navigating the impact of climate change in India: a perspective on SDG11 & 13
Year: 2023
Cited by: +6

Conclusion

On balance, Dr. Ashish Sharma is highly qualified for a Best Academic Researcher Award. His strengths in high-impact research, cross-sectoral leadership, technical excellence, and policy engagement align well with the criteria of research excellence and real-world impact.

Yiping Tai | Ecology and Conservation | Best Researcher Award

Assoc. Prof. Dr. Yiping Tai | Ecology and Conservation | Best Researcher Award 

Associate Professor, at Jinan University, China.

Dr. Yiping Tai is an Associate Researcher and Master’s Supervisor at Jinan University’s Research Center of Hydrobiology. With a Ph.D. in Ecology from the University of Chinese Academy of Sciences, Dr. Tai specializes in the theory and applied technology of near-natural restoration for urban aquatic ecosystems. His research addresses critical pollution challenges from nitrogen/phosphorus nutrients, heavy metals, antibiotics, pesticides, microplastics, and perfluorinated compounds in urban rivers and estuaries. By developing innovative ecological engineering techniques such as constructed wetlands, rhizosphere remediation, and plant diversity restoration, he aims to create sustainable, self-regulating urban aquatic environments. Dr. Tai has published nearly 30 SCI-indexed papers and holds over 10 patents, contributing significantly to environmental science and engineering in China and internationally. 🌿💧

Professional Profile

Scopus

🎓 Education

Dr. Yiping Tai completed his Ph.D. in Ecology at the University of Chinese Academy of Sciences, one of China’s premier institutions for environmental research and scientific training. His doctoral research focused on urban aquatic ecosystem restoration and pollutant mitigation strategies, which laid a foundation for his interdisciplinary approach combining ecology and engineering. During his academic journey, he gained expertise in hydrobiology, contaminant hydrogeochemistry, and ecological engineering, equipping him to tackle complex urban water pollution challenges. His education emphasizes both theoretical ecological frameworks and practical environmental solutions, fostering a deep understanding of nature-based restoration technologies. Tai’s academic training has been instrumental in his contributions to near-natural restoration science, positioning him as a leader in the ecological rehabilitation of urban water systems. 📚🎓

💼 Experience

With several years of research experience, Dr. Tai has served as an Associate Researcher and Master’s Supervisor at Jinan University’s Department of Ecology. His work spans collaborative projects with top universities and institutes, including the Chinese Academy of Sciences, South China Botanical Garden, Tongji University, and international partners in Europe. He leads applied research on constructing wetlands, rhizosphere bioaugmentation, and phytodiversity restoration to remediate urban water bodies. Dr. Tai has actively contributed to consultancy projects and ecological engineering innovations aimed at mitigating multi-pollutant sources from non-point urban runoff. His extensive fieldwork and lab research underpin his practical and theoretical contributions to hydrobiology and environmental science. This diverse experience ensures impactful advancements in urban aquatic ecosystem restoration techniques. 🔬🌊

🔬 Research Interests

Dr. Tai’s research focuses on the near-natural restoration of urban aquatic ecosystems, particularly targeting pollution from nutrients, heavy metals, antibiotics, pesticides, microplastics, and perfluorinated compounds. He pioneers nature-based solutions (NBS) by integrating ecological theory with applied environmental engineering. His innovations include multi-pollutant mitigation frameworks and scalable plant-microbe-soil systems such as constructed wetlands and rhizosphere remediation. Dr. Tai investigates ecological resilience through phytodiversity and develops modular assemblages that enhance habitat complexity and functional redundancy. His work bridges hydrobiology, contaminant hydrogeochemistry, and ecological engineering to achieve sustainable, self-regulating urban water environments. 🌱🌏

🏆 Awards

Dr. Yiping Tai’s impactful research has earned prestigious accolades, including the First Prize of the Guangdong Environmental Protection Technology Award (HBKJ2021-1-G08), recognizing his innovative contributions to pollution control technology. He also received the Second Prize of the Guangdong Science & Technology Progress Award (J19-2-04-R09) for his advances in ecological engineering. More recently, Tai was honored with the First Prize of the Guangdong Wetland Association Science & Technology Award (GWCA-2024-K1-01-R06), underscoring his leadership in urban aquatic ecosystem restoration. These awards highlight his excellence and dedication to sustainable environmental solutions in urban water management. 🏅🎖️

📚 Top Noted Publications

Dr. Tai has published nearly 30 papers in top-tier journals addressing urban aquatic ecosystem restoration, constructed wetlands, phytoremediation, and pollutant mitigation. Key recent publications include:

📜 Tai, Y. et al. (2024). “Advanced constructed wetlands for multi-pollutant removal in urban rivers.”
Journal: Water Research
Summary: This study investigates the role of advanced constructed wetlands in treating complex urban river pollution. Tai and colleagues focus on the synergistic removal of multiple pollutants (including nutrients, heavy metals, and organic compounds) through integrated design and functional plants. The paper emphasizes sustainable approaches for urban water management and highlights key engineering strategies and ecological considerations.
🔗 Read here — cited by 25 articles.

🌿 Tai, Y. et al. (2024). “Phytodiversity-driven ecological restoration of urban waters.”
Journal: Environmental Science & Technology
Summary: This article explores how enhancing phytodiversity (plant diversity) can promote ecosystem restoration in urban aquatic systems. By evaluating ecological parameters and the interactions between plant species and pollutants, the authors provide insights into nature-based solutions for urban water resilience. This work advances urban ecology research by linking biodiversity directly to ecosystem function recovery.
🔗 Read here — cited by 18 articles.

🌱 Tai, Y. et al. (2025). “Rhizosphere bioaugmentation for degradation of recalcitrant compounds.”
Journal: Chemical Engineering Journal
Summary: Focusing on the potential of rhizosphere bioaugmentation, this paper investigates the co-cultivation of specialized microbial consortia and target plants to break down stubborn contaminants in aquatic environments. The results demonstrate significant pollutant removal rates and underscore the promise of engineered rhizosphere systems for sustainable water treatment.
🔗 Read here — cited by 12 articles.

Conclusion

Yiping Tai is a highly deserving candidate for the Best Researcher Award, given his pioneering work in urban aquatic ecosystem restoration, demonstrated innovation, significant publication record, and recognition through patents and regional awards. His contributions bridge theory and practical applications, directly impacting environmental management and sustainability. Addressing suggested areas for growth could propel his work onto a larger global stage. Overall, Tai exemplifies excellence in research with a clear trajectory for continued leadership.

Amélie Saunier | Environmental Science | Best Researcher Award

Dr. Amélie Saunier | Environmental Science | Best Researcher Award

Junior Scientist, IMBE, France

Amélie Saunier is a Junior Scientist at Aix-Marseille University (AMU), working within the Mediterranean Institute of Biodiversity and Ecology (IMBE) in France 🇫🇷. With a passion for plant ecophysiology and atmospheric chemistry, her interdisciplinary research explores how plants respond to environmental stresses through the production of specialized metabolites 🌿🔬. Her work bridges ecology and chemistry, offering key insights into how ecosystems may adapt and evolve under global change 🌍.

Profile

Orcid

🎓 Education

Dr. Amélie Saunier earned her Ph.D. in 2017, focusing on the role of specialized plant metabolites in response to abiotic and biotic stresses 🌱📚. Her academic training integrates both ecological and chemical sciences, equipping her with a strong foundation to investigate the complex interactions between plant emissions and environmental change 🧪🌾.

💼 Experience

Since completing her Ph.D., Amélie has been actively contributing as a researcher at IMBE under Aix-Marseille University 🏫🔍. She has participated in 8 research projects, building collaborations across France, Finland, Vietnam, and Tunisia 🤝🌐. Her professional work is deeply rooted in studying plant-environment interactions to improve ecosystem predictions under climate stress ☀️🌧️.

🔬 Research Interests

Her main research interests include vegetal ecophysiology, atmospheric chemistry, and chemical ecology 🌬️🌿. Amélie investigates volatile organic compounds (BVOCs) and their ecological functions, especially in the context of pollination, pollution, and climate change. She focuses on how these emissions mediate biotic interactions and contribute to overall ecosystem dynamics 🔎🌺.

🏅 Awards & Recognition

Although she holds no official membership or industrial consultancy roles, Amélie Saunier’s academic contributions have been widely recognized 📈. With an H-index of 12 and 573 citations, her research has influenced the fields of plant biology, ecology, and atmospheric science 📑✨. She also served as a guest editor for BMC Ecology and Evolution, showcasing her growing role in academic leadership 📘🔬.

📚 Publications

Biogenic volatile organic compounds (BVOCs) and oak forest resistance under droughtJournal of Ecology, 2022. (Cited by: 34 articles)

Pollination under air pollution: BVOC mediation in stressed environmentsEnvironmental Chemistry Letters, 2021. (Cited by: 48 articles)

Diurnal emissions of BVOCs in Mediterranean seagrassesMarine Environmental Research, 2023. (Cited by: 26 articles)

Functional roles of plant volatiles in response to abiotic stressPlant Science Today, 2020. (Cited by: 59 articles)

Chemical ecology of coastal ecosystems: A case study in the MediterraneanEcological Indicators, 2019. (Cited by: 41 articles)

🏆 Conclusion

Amélie Saunier is an outstanding candidate for the Best Researcher Award. Her innovative and interdisciplinary work on the ecological and atmospheric impacts of plant volatiles contributes significantly to understanding ecosystem dynamics under climate stress. With a strong publication record, respected international collaborations, and a growing citation footprint, she clearly demonstrates excellence in research and academic leadership. Strengthening her profile with memberships or applied collaborations could further boost her competitive edge.

 

Lamia Krichen | genetic diversity | Best Researcher Award

Assoc. Prof. Dr Lamia Krichen | genetic diversity | Best Researcher Award

Associate Professor, ISSBAT, Tunisia 

Lamia Krichen is an Associate Professor at the High Institute of Applied Biotechnology of Tunis (ISSBAT), specializing in plant biological sciences 🌱. With a background in soft skills, communication, and employability skills training, she is also an expert in academic and professional development 📚. Lamia has contributed significantly to the field of genetics, focusing on apricot species and plant biotechnology 🔬. She has worked on multiple projects in Tunisia and internationally, collaborating with renowned institutions such as INRA Montpellier and CIRAD.

Profile

Google Scholar

Education

Lamia Krichen holds an Habilitation universitaire à diriger les recherches (HDR) in plant biological sciences (2014) from the High Institute of Applied Biological Sciences of Tunis (ISSBAT) 🌿. She completed her PhD in biology (2007), focusing on genetic resources of apricot in Tunisia at the National Agronomic Institute of Tunis 🌍. Lamia also earned her undergraduate degree in agronomy and plant breeding (2001), specializing in autochthonous apricot varieties from Tunisia 🍑.

Experience

Since March 2016, Lamia has been serving as an Associate Professor at ISSBAT, where she teaches plant biology and conducts research 🏫. Previously, she worked as an Assistant Professor at the Faculty of Sciences of Gafsa from 2007 to 2011 🌱. Lamia’s postdoctoral experience includes a project at INRA Montpellier (2014-2015) on the genetic and molecular control of apple tree tolerance to soil water stress 🌳.

Research Interests

Lamia’s research interests lie in plant genetics and biotechnology, particularly the genetic diversity and phylogeny of apricot species 🍒. Her work also focuses on plant conservation, with an emphasis on Mediterranean biodiversity 🌿. She is deeply involved in studying plant biological activities to enhance agricultural practices and genetic improvement 🌱.

Awards

Lamia Krichen has received numerous certifications and training awards related to soft skills, leadership, and entrepreneurship 🌟. Some notable certifications include Global Career Counselor Facilitator (2022) from USAID-Tunisia JOBS, NLP Practitioner (2022), and various leadership and entrepreneurship training courses 🏅.

Publications Top Notes

Lamia Krichen has published extensively on plant genetic resources and conservation, including her notable work on Prunus armeniaca L. 🌸. Her research contributions are recognized in various scientific journals and cited globally. For more details on her work, visit her Google Scholar profile 🌐.

Published Year: 2014
Title: Prunus armeniaca L.: Genetic Diversity, Phylogeny, and Conservation
Journal: Journal of Plant Biology 📘
Cited by: 50+ articles.

Conclusion

In conclusion, Lamia Krichen stands out as a highly qualified candidate for the Best Researcher Award. Her contributions to plant biology, dedication to education, and continuous professional development in various scientific and leadership areas are commendable. While there are opportunities for her to expand her international academic presence, her current work and future potential position her as a leading researcher deserving of this recognition.

Agnieszka Iwan | Environmental Science | Best Researcher Award

Prof. Dr. Agnieszka Iwan | Environmental Science | Best Researcher Award

professor, General Tadeusz Kosciuszko Military University of Land Forces, Poland

Agnieszka Iwan is a distinguished professor at both the Akademia Wojsk Lądowych imienia Generala Tadeusza Kościuszki and the Wojskowy Instytut Techniki Inżynieryjnej, Wrocław, Poland. She has been contributing to scientific advancements since 2016, specializing in photovoltaic technology and energy storage systems. Dr. Iwan holds several significant research grants funded by the National Centre for Research and Development in Poland. She is known for her groundbreaking work on perovskite solar cells, polymer-based photovoltaic cells, and hybrid energy storage systems, aiming to innovate and optimize sustainable energy solutions. 🌞🔬

Publication Profile

ORCID

Education

Dr. Agnieszka Iwan has earned her academic credentials from leading institutions, and she is actively involved in teaching and mentoring future engineers and researchers in the fields of photovoltaics and energy systems. 📚🎓

Experience

With extensive experience, Agnieszka Iwan has been a faculty member in the fields of security and safety research and engineering at two prestigious institutions in Wrocław. Her research spans cutting-edge energy solutions and sustainable technologies, making significant contributions to the academic and industrial landscapes. 💼🌍

Research Interests

Her primary research interests include photovoltaic technology, perovskite solar cells, organic solar cells, energy storage systems, and the integration of renewable energy sources with advanced materials like supercapacitors. Dr. Iwan’s work is essential in pushing the boundaries of clean energy solutions. ⚡🌱

Awards

Dr. Iwan’s innovative research has earned her multiple grants and awards from Poland’s National Centre for Research and Development, recognizing her pioneering work in renewable energy and sustainable technology. 🏅🌟

Publications

Photovoltaic Cells and Scintillators Towards Carbon Footprint Reduction: Advantages and Challenges for Ecological Safety
Materials, 2024-12-03
DOI: 10.3390/ma17235909
Cited by: 0

On the Feasibility of an LCD-Based Real-Time Converter for Ionizing Radiation Imaging
Materials, 2024-07-04
DOI: 10.3390/ma17133320
Cited by: 0

Influence of imine symmetry and triphenylamine moieties on photovoltaic properties of BHJ organic solar cells
Materials Science and Engineering: B, 2023-10
DOI: 10.1016/j.mseb.2023.116701
Cited by: 0

Solar chargers based on new dye-based photovoltaic modules and new supercapacitors
Bulletin of the Polish Academy of Sciences Technical Sciences, 2023-06-23
DOI: 10.24425/bpasts.2023.146452
Cited by: 0