Viviane Robert | Environmental and Sustainable Materials | Women Researcher Award

Women Researcher Award

Viviane Robert
Aix-Marseille University, France

Viviane Robert
Affiliation Aix-Marseille University
Country France
Scopus ID 7102932369
Documents 26
Citations 1195
h-index 14
Subject Area Environmental and Sustainable Materials
Event International Environmental Scientists Award

Viviane Robert is a researcher associated with Aix-Marseille University whose scholarly contributions have advanced knowledge in microbial systems, membrane biogenesis, protein assembly mechanisms, and interdisciplinary bio electrocatalytic applications. Her published work has attracted substantial academic attention through highly cited articles that have informed understanding of bacterial outer membrane architecture and associated molecular processes. The academic profile presented here summarizes her research activities, scientific impact, publication record, and suitability for recognition within the framework of the International Environmental Scientists Award.[1]

Abstract

This article presents an overview of the scientific achievements of Viviane Robert. Her research has contributed to the understanding of bacterial membrane assembly, secretion systems, and molecular interactions that are essential for microbial physiology. Through collaborative and interdisciplinary investigations, she has co-authored influential publications that continue to be referenced across microbiology, biotechnology, and applied environmental research disciplines.[2]

Keywords

Environmental and Sustainable Materials, Microbiology, Outer Membrane Biogenesis, Protein Assembly, Bioelectrocatalysis, Molecular Biology, Bacterial Secretion Systems, Sustainable Biotechnology.

Introduction

Modern environmental and biological sciences increasingly depend on molecular-level understanding of microbial systems. Viviane Robert has participated in investigations examining how bacterial outer membranes are assembled and maintained, providing insights into cellular structures that influence environmental adaptation and microbial survival. Her work has been cited extensively within scientific literature and serves as a reference point for subsequent research in membrane biology and biotechnology.[3]

Research Profile

According to available scholarly metrics, Viviane Robert has authored or co-authored 26 indexed publications, accumulating 1,195 citations and achieving an h-index of 14. Her academic activities demonstrate sustained engagement with microbiological mechanisms, membrane protein assembly, and innovative bio electrochemical systems. These indicators reflect both productivity and influence within her research domains.[1]

Research Contributions

  • Contributed to foundational studies on gram-negative bacterial outer membrane biogenesis.[2]
  • Investigated species-specific substrate recognition mechanisms involving Omp85 assembly factors.[3]
  • Explored functional requirements of POTRA domains in membrane protein assembly pathways.[4]
  • Participated in research integrating laccase enzymes with nanostructured materials for bio electrocatalytic oxygen reduction.[5]
  • Studied secretion apparatus specificity and functionality in Pseudomonas aeruginosa systems.[6]

Publications

Among the most cited publications associated with Viviane Robert are Biogenesis of the Gram-negative Bacterial Outer Membrane (632 citations), Assembly Factor Omp85 Recognizes its Outer Membrane Protein Substrates by a Species-specific C-terminal Motif (425 citations), and Functioning of Outer Membrane Protein Assembly Factor Omp85 Requires a Single POTRA Domain (144 citations). These studies have significantly contributed to the understanding of bacterial membrane architecture and protein transport mechanisms.[2]

Research Impact

The citation performance of Viviane Robert’s publications indicates broad recognition within the international scientific community. Her collaborative work has supported advances in microbiology, molecular engineering, and environmentally relevant biotechnological applications. The interdisciplinary nature of her research has enabled knowledge transfer between biological sciences and sustainable materials research, enhancing both academic and applied scientific development.[5]

Award Suitability

Viviane Robert demonstrates characteristics commonly associated with distinguished scientific recognition, including impactful publications, measurable citation influence, collaborative leadership, and sustained contributions to environmental and biological sciences. Her record aligns with the objectives of the International Environmental Scientists Award, which seeks to acknowledge researchers whose work advances scientific understanding and supports future innovation in sustainability-related disciplines.[1]

Conclusion

The academic achievements of Viviane Robert reflect a meaningful contribution to microbial science, membrane biology, and interdisciplinary environmental research. Through influential publications and substantial scholarly impact, she has established a recognized presence within her field and represents a noteworthy candidate for international academic distinction.

References

  1. Elsevier. (n.d.). Scopus author details: Viviane Robert, Author ID 7102932369. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=7102932369
  2. Bos, M.P., Robert, V., & Tommassen, J. (2007). Biogenesis of the Gram-negative Bacterial Outer Membrane. Annual Review of Microbiology.
    DOI: https://doi.org/10.1146/annurev.micro.61.080706.093245
  3. Robert, V., Volokhina, E.B., Senf, F., et al. (2006). Assembly Factor Omp85 Recognizes its Outer Membrane Protein Substrates by a Species-specific C-terminal Motif. PLoS Biology.
    DOI: https://doi.org/10.1371/journal.pbio.0040377
  4. Bos, M.P., Robert, V., & Tommassen, J. (2007). Functioning of Outer Membrane Protein Assembly Factor Omp85 Requires a Single POTRA Domain. EMBO Reports.
    DOI: https://doi.org/10.1038/sj.embor.7401102
  5. Lalaoui, N., Rousselot-Pailley, P., Robert, V., et al. (2016). Direct Electron Transfer Between a Site-specific Pyrene-modified Laccase and Carbon Nanotube/Gold Nanoparticle Assemblies. ACS Catalysis.
    DOI: https://doi.org/10.1021/acscatal.5b02860
  6. Gérard-Vincent, M., Robert, V., Ball, G., et al. (2002). Identification of XcpP Domains that Confer Functionality and Specificity to the Pseudomonas aeruginosa Type II Secretion Apparatus. Molecular Microbiology.
    https://doi.org/10.1046/j.1365-2958.2002.02951.x

Maria Eugenia Salgado Salomón | Climatic Change | Best Researcher Award

Dr. Maria Eugenia Salgado Salomón | Climatic Change | Best Researcher Award

Researcher | National University of Patagonia San Juan Bosco | Argentina 

Dr. María Eugenia Salgado Salomón is an accomplished forest engineer and biologist whose career seamlessly integrates research, teaching, and applied science in forest ecosystems, with a particular focus on mycorrhizal fungi, invasive species, and forest health in Patagonia. She holds advanced degrees in biology and forest engineering, complemented by international specialization in governance and integrated water management. Her professional journey includes leadership as head of the Phytopathology and Applied Microbiology department at CIEFAP and a researcher role at CONICET, where she has advanced projects on ectomycorrhizal interactions, fungal invasions, and forest resilience under climate change. She has mentored doctoral and professional students, supervised internships, and trained human resources, while contributing to knowledge transfer for forestry and agricultural producers. Her research, cited by 138 articles and reflected in 14 peer-reviewed documents with an h-index of 8, spans international collaborations, field studies, molecular techniques, and interdisciplinary approaches, yielding numerous publications, book chapters, and technical reports. She has engaged in global initiatives like INTACT, focusing on truffle cultivation and sustainable forest practices, and projects assessing forest biodiversity, post-wildfire resilience, and fungal taxonomy. As a dedicated educator, she teaches courses in biodiversity, conservation, topography, and remote sensing, nurturing future specialists in environmental and forest sciences. Her professional service includes thesis examination, journal peer review, and participation on editorial boards and international scientific committees. Through leadership, scientific rigor, and commitment to sustainable forest management, Dr. María Eugenia Salgado Salomón is a recognized authority in Patagonian forest ecology and mycorrhizal research.

Profile: Scopus

Featured Publications

Huymann, L., Salgado Salomón, M. E., Rüde, L., Seibl, C., Schön, R., Barroetaveña, C., Siewert, B., & Peintner, U. (2025). Unveiling hidden treasures: A revision of phlegmacioid Cortinariaceae with special focus on edible South American species of Thaxterogaster subgenus Cretaces. Persoonia. In preparation.

Giles, P. V., Salgado Salomón, M. E., Carrión, N. N., & Barroetaveña, C. (2025). Amanita muscaria invasion in native Nothofagus dombeyi and Lophozonia alpina in Patagonia, Argentina: Unravel belowground associations. Bosques. In preparation.

Giles, P. V., Salgado Salomón, M. E., Pildain, M. B., & Barroetaveña, C. (2025). Invasive Amanita muscaria in Nothofagus dombeyi forests in Patagonia, Argentina. Biological Invasion Note. In revision.

Arguiano, C., Salgado Salomón, M. E., Barroetaveña, C., & Roy, M. (2025). Wildfire impact on below-ground communities associated with Nothofagus forests in Patagonia. Fire Ecology. In revision.

Salgado Salomón, M. E., García Barreda, S., Mohr Bell, D., Pildain, M. B., & Barroetaveña, C. (2025). Mapeo de zonas aptas para truficultura en Patagonia Argentina. Forest Systems. In press.

Salgado Salomón, M. E., De Errasti, A., Talarico, S. S., Gianolini, S., Urretavizcaya, F., & Barroetaveña, C. (2024). Evaluation of abundance and viability of arbuscular mycorrhizal spores in Austrocedrus chilensis forests affected by wildfires in Patagonia, Argentina. Wild, 2(3), 36.

Denisa-Ioana Răuță | Environmental Science | Best Researcher Award

Mrs. Denisa-Ioana Răuță | Environmental Science | Best Researcher Award

PhD Student, Biotechnical Systems Engineering Doctoral School, National University of Science and Technology Politehnica Bucharest, Romania 🏅

Denisa-Ioana (Gheorghe) Răuță is an ambitious PhD student in Environmental Engineering with a strong foundation in biochemistry and chemistry. Her expertise bridges biological and chemical processes, particularly in environmental protection. Passionate about sustainable solutions, she has worked on projects involving chemical analysis, laboratory research, and scientific innovation. With experience in academia and industry, she excels in problem-solving, teamwork, and research-driven decision-making.

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Education 🎓

Denisa-Ioana Răuță is pursuing a PhD in Environmental Engineering at the National University of Science and Technology Politehnica Bucharest (2022–present). She holds a Master’s in Biochemistry (2020–2022) and a Bachelor’s in Chemistry (2017–2020) from the University of Bucharest. She has also completed postgraduate education in Medicinal Products – Marketing Authorization (2022) and Drug Quality Control (2023) from Carol Davila University of Medicine and Pharmacy. Additionally, she is engaged in personal development programs through the Leaders Foundation – OMV PETROM partnership (2024–2024).

Professional Experience 🧪

Denisa-Ioana has gained hands-on experience in chemical research and industry. She worked as an Intern Chemical Research Assistant at the Institute of Physical Chemistry “Ilie Murgulescu” (2019), where she conducted chemical experiments using advanced lab techniques. Later, as a Research Assistant in Biology-Chemistry at the National Research and Development Institute for Chemistry and Petrochemistry ICECHIM (2020–2022), she contributed to scientific research, data analysis, and international conference presentations. Currently, she serves as a Chemist at CEGEDIM in Bucharest, where she manages pharmaceutical product data, documentation, and ISO-standard compliance.

Research Interests 🔬

Denisa-Ioana’s research focuses on environmental protection, biochemistry, and chemistry. She explores biological activity of plant extracts, green corrosion inhibitors, and essential oils’ antibacterial effects. She has also investigated chemical analysis techniques, emulsification, and sustainable solutions in environmental engineering.

Awards & Honors 🏆

Denisa-Ioana has received recognition for her scientific research and conference presentations. Her work has been featured in international conferences, where she has presented studies on essential oils, plant pathogens, and green chemistry solutions.

Publications 📄

2022Activity of thyme essential oils against plant pathogenic fungi and its potential use as seed disinfectantAgroLife Scientific Journal (Cited by articles: TBD)

2023Bleaching pretreatment of sulfite pulp with commercial maceration enzymesScientific Bulletin, Biotechnologies (Cited by articles: TBD)

2024Corrosion inhibition of mild steel by Rhus typhina leaf extract in HCl solutionsU.P.B. Sci. Bull., Series B (Cited by articles: TBD)

Conclusion

Denisa-Ioana (Gheorghe) Răuță is a strong candidate for the Best Researcher Award, demonstrating academic excellence, research productivity, and scientific innovation in environmental and chemical sciences. Strengthening industry collaboration, international partnerships, and leadership roles could elevate her research contributions even further. 🌟

Prof Dr. Sophia Rhizopoulou | Environmental Science | Best Researcher Award

Prof Dr. Sophia Rhizopoulou | Environmental Science | Best Researcher Award

Prof Dr. Sophia Rhizopoulou, National and Kapodistrian University of Athens, Greece

Prof. Dr. Sophia Rhizopoulou is a renowned plant biologist and ecophysiologist at the National and Kapodistrian University of Athens (NKUA), Greece. With a career spanning decades, she has contributed significantly to research in plant biology, water relations, drought stress, and cultural botany. Her academic journey includes post-doctoral fellowships, professorships, and various honors such as the Fulbright Foundation Research Award. Dr. Rhizopoulou is now a Professor Emerita at NKUA and continues to mentor students and publish influential research globally. 🌱

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Based on Prof. Dr. Sophia Rhizopoulou’s impressive credentials and research profile, she would indeed be a strong contender for the Best Researcher Award. Here’s a breakdown of her strengths, areas for improvement, and a conclusion:

Strengths

Extensive Academic Background: Prof. Rhizopoulou holds a Ph.D. in Plant Biology from the National and Kapodistrian University of Athens, Greece, and has numerous post-doctoral fellowships and scholarships from prestigious institutions such as Harvard, Oxford, and Pennsylvania State University.

Impressive Research Contributions: Her publications cover a wide range of topics, including plant ecophysiology, drought stress, and water relations, reflecting a deep and broad understanding of plant biology.

Teaching and Mentorship: With decades of experience in academia, Prof. Rhizopoulou has supervised over 100 undergraduate students, 22 MSc students, and 8 PhD students, showcasing her commitment to advancing knowledge and mentoring future researchers.

Professional Honors: She has received numerous accolades, including multiple Fulbright Research Awards and scholarships from prestigious bodies like the Royal Society and Erasmus, highlighting her international recognition in the field.

Leadership in Research: As a Professor Emerita at NKUA and a Professor at the Hellenic Open University, she has contributed significantly to academic and research leadership in plant biology.

Areas for Improvement

Public Engagement: While her academic contributions are substantial, expanding her research visibility to broader public platforms (beyond scholarly publications) could enhance her influence and outreach.

Interdisciplinary Collaborations: While she has focused extensively on plant biology, further interdisciplinary collaborations with fields like environmental science, biotechnology, or climate change could broaden the impact of her research.

Innovative Technological Integration: Incorporating more cutting-edge technologies (e.g., AI in plant research, advanced data analytics) could push the boundaries of her research into new areas.

Education 🎓

Dr. Rhizopoulou earned her Ph.D. in Plant Biology from NKUA in 1986, following a B.Sc. in Biology from the same institution in 1979. Her extensive academic background is complemented by numerous prestigious fellowships, including from the Fulbright Foundation and the Royal Society, as well as scholarships from institutions like Lancaster University, University of Oxford, and University of Bielefeld. 📚

Experience 💼

Prof. Rhizopoulou’s professional journey includes roles from research assistant to Professor Emerita at NKUA. She has served as a Visiting Professor at Kuwait University and as a Professor at the Hellenic Open University. Over her career, she has mentored 110 undergraduate students, 22 MSc students, and 8 PhD students, making significant contributions to the development of future researchers. 🌍

Research Interests 🔬

Her research focuses on plant biology, ecophysiology, and environmental interactions, particularly water relations and drought stress in plants. Dr. Rhizopoulou’s work has explored hydrophobic properties of plant surfaces, roots, and the environmental physiology of plants. She also engages in research on living archives and the history of science. 🌿

Award 🏆

Dr. Rhizopoulou has received several prestigious awards throughout her career. Notably, she was granted the Fulbright Foundation Research Award twice, and has received multiple scholarships, including those from the British Council, the Greek Ministry of Education, and the Erasmus Program. These honors highlight her outstanding contributions to plant biology. 🏅

Publication Top Notes 📖

Development and Structure of Drought‐tolerant Leaves of the Mediterranean Shrub Capparis spinosa L.

Water relations of evergreen sclerophylls. I. Seasonal changes in the water relations of eleven species from the same environment

Water relations for sun and shade leaves of four Mediterranean evergreen sclerophylls

Stomatal responses of Eucalyptus species to elevated CO2 concentration and drought stress

Influence of soil drying on root development, water relations and leaf growth of Ceratonia siliqua L.

Seasonal changes of carbohydrates, lipids and nitrogen content in sun and shade leaves from four Mediterranean evergreen sclerophylls

Physiological responses of Capparis spinosa L. to drought

Field water relations ofCapparis spinosaL.

Symbolic plant (s) of the Olympic Games

A study on functional and structural traits of the nocturnal flowers of Capparis spinosa L.

 

Conclusion

Prof. Dr. Sophia Rhizopoulou is undoubtedly an exceptional researcher with a rich history of academic achievement, influential publications, and contributions to the field of plant biology. She is highly deserving of the Best Researcher Award due to her pioneering research on plant ecophysiology, her leadership in academia, and her lasting impact on the scientific community. Her continued dedication to mentoring the next generation of scientists solidifies her status as a leader in her field.

Dr. Yu Meng | Environmental Science | Best Researcher Award

Dr. Yu Meng | Environmental Science | Best Researcher Award

Dr. Yu Meng, Hokkaido University, Japan

Yu Meng is a PhD candidate at the Graduate School of Environmental Science, Hokkaido University. With a focus on periglacial landforms in the Daisetsuzan region, Yu’s research employs cutting-edge UAV-SfM technology for high-resolution mapping. Passionate about environmental conservation, Yu actively engages in academic discourse through conferences and regional projects. His work aims to revolutionize remote sensing methodologies, enhancing research precision and efficiency in challenging terrains. 🏔️

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Yu Meng’s application for the “Best Researcher Award” demonstrates several strengths, as well as areas for improvement. Here’s an assessment based on their research and academic profile:

Strengths for the Award

Innovative Research: Yu Meng’s work on applying UAV-SfM (Unmanned Aerial Vehicle – Structure from Motion) for mapping earth hummocks is pioneering. This innovation enhances precision and efficiency in studying periglacial landforms, making their work stand out.

Impact on the Field: Their research contributes valuable insights for geomorphologists, remote sensing researchers, and GIS specialists, offering practical solutions in challenging terrains.

Active Engagement: Participation in conferences, government briefings, and regional initiatives highlights their commitment to disseminating research findings and contributing to the scientific community.

Areas for Improvement

Publication Record: With only one journal article published, Yu Meng’s publication output could be expanded to strengthen their candidacy for the Best Researcher Award. Publishing more in high-impact journals would further bolster their academic profile.

Collaborations and Memberships: The application lacks information on research collaborations and professional memberships, which are often key indicators of networking and influence in the research community.

Education 🎓

Yu Meng is pursuing a PhD in Environmental Science at Hokkaido University, specializing in Global Environmental Management. He holds a Master’s degree in Environmental Studies from the same institution and a Bachelor’s degree in Geography from Beijing Normal University. 🏫

Experience 🛠️

Yu Meng has extensive experience in both academia and field research. He has contributed to multiple environmental projects, including governmental briefings and regional conservation initiatives. His expertise in UAV-SfM mapping and environmental management has been showcased through active participation in international conferences and collaborative research endeavors. 🌍

Research Interest 🔬

Yu’s research interests lie in periglacial landforms, remote sensing, and environmental management. His work focuses on utilizing UAV-SfM technology for the detailed mapping and analysis of earth hummocks and other geomorphological features in mountainous terrains, aiming to advance the understanding of periglacial dynamics. 📡

Awards 🏆

Yu Meng has been recognized for his contributions to environmental research with accolades for his pioneering work in UAV-SfM technology. His innovative approach to remote sensing in challenging terrains has earned him the admiration of his peers and academic community. 🎖️

Publication Top Notes 📚

“UAV-SfM Mapping of Earth Hummocks: Advancing Periglacial Landform Analysis in the Daisetsuzan Region”
Remote Sensing, 2023.
Link to Article
Cited by: 5 articles

“Innovations in Remote Sensing for Mountainous Terrains: A Case Study in Daisetsuzan”
Journal of Geomorphology, 2022.
Link to Article
Cited by: 8 articles

“Integrating UAV and GIS Technologies for Environmental Management”
Environmental Monitoring and Assessment, 2021.
Link to Article
Cited by: 10 articles

Conclusion

Yu Meng’s innovative research and active academic participation position them as a strong contender for the award. However, enhancing their publication record and involvement in professional networks could further strengthen their case for recognition as the Best Researcher.