Mahsa fakharpour | Nanostructure | Best Researcher Award

Assoc Prof Dr. Mahsa fakharpour | Nanostructure | Best Researcher Award

Assoc Prof Dr at Islamic Azad University of Meybod Branch, Meybod, Iran

Mahsa Fakharpour is an Associate Professor in the Department of Physics and Nanophysics at Islamic Azad University of Maybod Branch, Iran. She has extensive teaching experience and has contributed significantly to research in solid-state physics and nanostructures, focusing on the design and fabrication of nano-sculptured thin films.

profile

Scholar

Education šŸŽ“

Mahsa earned her PhD in Physics Science (Solid State and Nanostructures) from Islamic Azad University, Tehran (2011-2016). She also holds an MSc in Physics Science (Solid State) from Yazd University (2003-2006) and a BSc in Physics Science from Yazd University (1993-1998).

Experience šŸ’¼

Mahsa has served as an Assistant Professor in the Departments of Material Engineering and Civil Engineering at Islamic Azad University (2000-2019) and has held various teaching roles in physics, mechanics, and material analysis. Currently, she is an Associate Professor in the Physics Department at Central Tehran Branch.

Awards and Honors šŸ†

Mahsa received the First Rank of Top Researcher in Islamic Azad University, Iran, in 2020, highlighting her research excellence. Her work has been recognized in various academic circles, reflecting her commitment to advancing scientific knowledge.

Research Focus šŸ”¬

Mahsa’s research focuses on solid-state physics and nanostructures, including the design and fabrication of nano-sculptured thin films and their properties. She employs theoretical and experimental methods to explore optical, electrical, and mechanical characteristics of advanced materials.

Publications Top Notes:

  • Nano-structure and Optical Properties (Plasmonic) of Graded Helical Square Tower-like (Terraced) Mn Sculptured Thin Films
    • Journal: Applied Surface Science
    • Year: 2017
    • Cited by: 23

 

  • Electromagnetic Wave Absorption Properties of MWCNTs-COOH/Cement Composites with Different Shapes of Chiral, Armchair, and Zigzag
    • Journal: Fullerenes, Nanotubes and Carbon Nanostructures
    • Year: 2021
    • Cited by: 17

 

  • Effect of Temperature on Bioleaching of Iron Impurities from Kaolin by Aspergillus Niger Fungal
    • Journal: Journal of Asian Ceramic Societies
    • Year: 2019
    • Cited by: 16

 

  • Engineering Mn as Tetragonal-like Helical Sculptured Thin Film for Broadband Absorption
    • Journal: Plasmonics
    • Year: 2016
    • Cited by: 9

 

  • Self-Cleaning Surfaces with Superhydrophobicity of Agā€“TiO2 Nanofilms on the Floor Ceramic Tiles
    • Journal: Glass Physics and Chemistry
    • Year: 2022
    • Cited by: 8

 

  • The Energy Band Gap of the Manganese Oxide Pyramidal Nanostructures
    • Journal: Journal of Modern Optics
    • Year: 2022
    • Cited by: 7

 

  • Fabrication of Al Zigzag Thin Films and Evaluation of Mechanical and Hydrophobic Properties
    • Journal: Applied Physics A
    • Year: 2020
    • Cited by: 7

 

  • Fabrication and Characterization of Al/Glass Zig-Zag Thin Film, Comparing to the Discrete Dipole Approximation Results
    • Journal: The European Physical Journal B
    • Year: 2020
    • Cited by: 7

 

  • Effect of Three MWCNTs-COOH (Chiral, Zigzag, and Armchair) on the Mechanical Properties and Water Absorption of Cement-based Composites
    • Journal: Fullerenes, Nanotubes and Carbon Nanostructures
    • Year: 2023
    • Cited by: 6

 

  • Electrical Characterization of Zig-Zag Aluminum Thin Films Using Experimental and Theoretical Methods
    • Journal: Journal of Optoelectronical Nanostructures
    • Year: 2021
    • Cited by: 5

šŸ“ Conclusion

Dr. Mahsa Fakharpour exemplifies the qualities of an outstanding researcher with her extensive publication record, innovative research projects, and recognized contributions to the field of nano-physics and materials science. Her strengths position her as a strong candidate for the Best Researcher Award. Addressing areas for improvement, such as expanding her research scope and enhancing public engagement, could further amplify her impact in the scientific community. Her continued dedication to research and academic excellence will undoubtedly contribute to advancing knowledge and addressing societal challenges in the future.

Sara Salatin| Nanotechnology | Best Researcher Award

Dr. Sara Salatin| Nanotechnology | Best Researcher Award

Dr at Tabriz University of Medical Sciences,Ā  Iran

Dr. Sara Salatin is a distinguished researcher in pharmaceutical nanotechnology, holding a Ph.D. from Tabriz University of Medical Sciences, Iran (2013-2018). Recognized as one of the world’s top 2% scientists by Stanford University and ISC, she has made significant contributions to drug delivery systems, including her postdoctoral work on cephalexin-loaded nanohydrogels. With numerous publications and book chapters in esteemed journals, her research encompasses nanocarriers, topical delivery systems, and mucoadhesive films. Dr. Salatin served as the Research and Development Director at BSD Company and is an active member of the Iranian Society of Nanomedicine.

Publication profile

šŸŽ“ Education:

  • PhD in Pharmaceutical Nanotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Iran (2013-2018).

šŸ† Awards:

  • Distinguished PhD Student Researcher of the Country (2020)
  • Recognized among the worldā€™s top 2% scientists by Stanford University and Elsevier (2021-2023).

šŸ”¬ Research Projects:

  • Focus on formulation and evaluation of nanocarriers for drug delivery, including cephalexin-loaded systems and various nanoparticles.

šŸ“– Publications:

  • Over 50 publications in high-impact journals, covering topics such as drug delivery systems, nanomedicine, and pharmaceutical formulations.

šŸ‘©ā€šŸ« Teaching Experience:

  • Collaborated with the Department of Pharmaceutics at Tabriz University of Medical Sciences (2013-2018).

šŸ’¼ Work Experience:

  • Research and Development Director, BSD Company, Iran (2021-2023).

šŸŒ Memberships:

  • Member of the Iranian Society of Nanomedicine.

Publication

1. Effect of the Surface Modification, Size, and Shape on Cellular Uptake of Nanoparticles
  • Authors: S Salatin, S Maleki Dizaj, A Yari Khosroushahi
  • Journal: Cell Biology International
  • Volume: 39
  • Issue: 8
  • Pages: 881-890
  • Year: 2015
2. Overviews on the Cellular Uptake Mechanism of Polysaccharide Colloidal Nanoparticles
  • Authors: S Salatin, A Yari Khosroushahi
  • Journal: Journal of Cellular and Molecular Medicine
  • Volume: 21
  • Issue: 9
  • Pages: 1668-1686
  • Year: 2017
3. Development of a Nanoprecipitation Method for the Entrapment of a Very Water Soluble Drug into Eudragit RL Nanoparticles
  • Authors: S Salatin, J Barar, M Barzegar-Jalali, K Adibkia, F Kiafar, M Jelvehgari
  • Journal: Research in Pharmaceutical Sciences
  • Volume: 12
  • Issue: 1
  • Pages: 1-14
  • Year: 2017
4. Nanosizing of Drugs: Effect on Dissolution Rate
  • Authors: SM Dizaj, Z Vazifehasl, S Salatin, K Adibkia, Y Javadzadeh
  • Journal: Research in Pharmaceutical Sciences
  • Volume: 10
  • Issue: 2
  • Pages: 95-108
  • Year: 2015
5. The Use of Nanomaterials in Tissue Engineering for Cartilage Regeneration; Current Approaches and Future Perspectives
  • Authors: A Eftekhari, S Maleki Dizaj, S Sharifi, S Salatin, Y Rahbar Saadat, …
  • Journal: International Journal of Molecular Sciences
  • Volume: 21
  • Issue: 2
  • Article Number: 536
  • Year: 2020
6. Hydrogel Nanoparticles and Nanocomposites for Nasal Drug/Vaccine Delivery
  • Authors: S Salatin, J Barar, M Barzegar-Jalali, K Adibkia, MA Milani, M Jelvehgari
  • Journal: Archives of Pharmacal Research
  • Volume: 39
  • Pages: 1181-1192
  • Year: 2016
7. Bioaerogels: Synthesis Approaches, Cellular Uptake, and the Biomedical Applications
  • Authors: FP Soorbaghi, M Isanejad, S Salatin, M Ghorbani, S Jafari, …
  • Journal: Biomedicine & Pharmacotherapy
  • Volume: 111
  • Pages: 964-975
  • Year: 2019
8. Nanozyme Antioxidants as Emerging Alternatives for Natural Antioxidants: Achievements and Challenges in Perspective
  • Authors: M Ghorbani, H Derakhshankhah, S Jafari, S Salatin, M Dehghanian, …
  • Journal: Nano Today
  • Volume: 29
  • Article Number: 100775
  • Year: 2019
9. Current Analytical Approaches in Diagnosis of Melanoma
  • Authors: A Eftekhari, E Ahmadian, S Salatin, S Sharifi, SM Dizaj, R Khalilov, …
  • Journal: TrAC Trends in Analytical Chemistry
  • Volume: 116
  • Pages: 122-135
  • Year: 2019
10. Freeze-Thaw-Induced Cross-Linked PVA/Chitosan for Oxytetracycline-Loaded Wound Dressing: The Experimental Design and Optimization
  • Authors: F Lotfipour, M Alami-Milani, S Salatin, A Hadavi, M Jelvehgari, Mitra
  • Journal: Research in Pharmaceutical Sciences
  • Volume: 14
  • Issue: 2
  • Article Number: 175
  • Year: 2019

Conclusion:

Sara Salatin is a remarkable candidate for the Best Researcher Award, demonstrating a profound commitment to advancing pharmaceutical nanotechnology through her research, innovative projects, and teaching. Her recognition as a top scientist underscores her impact within the field. By addressing areas for improvement, particularly in collaboration and public engagement, she could amplify her influence and contribute even more significantly to the scientific community. Her blend of academic excellence and industry experience positions her as a leader in her field, making her a worthy recipient of this prestigious award.

Timothy Amangdam Anemana | Environmental Chemistry | Best Researcher Award

Dr Timothy Amangdam Anemana | Environmental Chemistry | Best Researcher Award

Dr Timothy Amangdam Anemana, Council for Scientific and Industrial Research, Soil Research Institute, Ghana

Dr. Timothy Amangdam Anemana is an accomplished Environmental Chemist with a deep passion for soil and water remediation. Holding a Ph.D. in Environmental Science from Eƶtvƶs LorƔnd University, Hungary, he specializes in reducing arsenate and inorganic chromium mobility in soils. With a strong academic foundation and extensive experience in research and environmental consulting, Dr. Anemana has contributed significantly to the fields of biochar production, environmental risk assessment, and soil nutrient mapping. Currently serving as a Research Scientist at the CSIR-Soil Research Institute in Ghana, he leads projects aimed at developing sustainable agricultural practices and environmental conservation methods. Dr. Anemana is known for his dedication to advancing environmental science through innovative research, technical expertise, and community engagement.

Publication Profile

Google Scholar

Strengths for the Award

  • Extensive Research Background: Dr. Anemana holds a Ph.D. in Environmental Science, with a focus on Environmental Chemistry. His research spans critical areas such as soil remediation, biochar production, and environmental impact assessments. This demonstrates a solid foundation in both theoretical and applied environmental research.
  • Diverse Employment Experience: His roles as a Research Scientist, Environmental Chemist, and Ph.D. Research Fellow have equipped him with a broad skill set, including laboratory management, fieldwork, and the application of modern analytical techniques (e.g., ICP-MS, FTIR, LC-MS). His experience with the CSIR-Soil Research Institute and the Environmental Protection Agency in Ghana underlines his practical contributions to both academia and industry.
  • Publications and Academic Contributions: Dr. Anemana has published research in reputable journals, showcasing his ability to contribute original research to the scientific community. His work on biochar and soil nutrient mapping highlights his expertise in sustainable agricultural practices.
  • Mentorship and Teaching: His role as a lecturer and supervisor at the CSIR College of Science and Technology demonstrates his commitment to education and mentorship, further contributing to his suitability for the award.

Areas for Improvement

  • Broader Impact of Research: While Dr. Anemanaā€™s research is highly specialized, expanding the application and impact of his findings to address global environmental challenges could enhance his profile. A stronger emphasis on how his work influences policy, industry standards, or large-scale environmental solutions could be beneficial.
  • Increased Publication and Citation: Although he has published several papers, increasing the volume of high-impact publications and ensuring they are widely cited would strengthen his candidacy. Collaborations with international researchers could also broaden the scope and impact of his research.
  • Leadership in Large-Scale Projects: Taking on leadership roles in larger, multidisciplinary research projects could further demonstrate his ability to lead and innovate in the environmental sciences.

EducationĀ 

Dr. Timothy Amangdam Anemana has a diverse and rigorous academic background that laid the foundation for his expertise in Environmental Chemistry. He earned his Ph.D. in Environmental Science (with a major in Environmental Chemistry) from Eƶtvƶs LorĆ”nd University, Budapest, Hungary, in 2020, where he conducted groundbreaking research on reducing arsenate and inorganic trivalent chromium mobility in soils. Prior to this, he obtained an MSc. in Chemistry (Environmental Chemistry major) from Patrice Lumumba Peoplesā€™ Friendship University of Russia in 2013, focusing on the complex formation of azo derivatives with metal salts. He also holds a Diploma in Education from the University of Education, Winneba-Kumasi, and an Advanced Certificate in Energy Policy and Planning from Kwame Nkrumah University of Science and Technology. His academic journey began with a BSc. in Agriculture Technology from the University for Development Studies, Tamale, Ghana, where he investigated water and land use quality assessment.

ExperienceĀ 

Dr. Timothy Amangdam Anemana has a rich professional history in environmental research, consulting, and education. He currently serves as a Research Scientist at the CSIR-Soil Research Institute in Ghana, where he is involved in cutting-edge projects on soil nutrient mapping, biochar production, and environmental risk assessments. His previous role as an Environmental Chemist at the Environmental Protection Agency, Ghana, honed his skills in environmental impact assessments, biochar application for remediation, and air quality monitoring. Dr. Anemana’s experience also includes a Ph.D. Research Fellowship at Eƶtvƶs LorĆ”nd University, Hungary, where he contributed to advanced research on contaminated soils and innovative remediation techniques. Earlier in his career, he worked as a Postgraduate Research Assistant at Patrice Lumumba Peoplesā€™ Friendship University of Russia, focusing on laboratory instruction and environmental research. His extensive experience underscores his expertise in environmental chemistry and sustainable agricultural practices.

Awards and HonorsĀ 

Dr. Timothy Amangdam Anemana has been recognized for his outstanding contributions to environmental science and research. He graduated with a Ph.D. in Environmental Science from Eƶtvƶs LorƔnd University, Hungary, with the highest honor, summa cum laude. His work on the reduction of arsenate and inorganic trivalent chromium mobility in soils has been widely acclaimed. Dr. Anemana has also been acknowledged for his innovative research on biochar production and its application in soil and water remediation. Throughout his academic and professional journey, he has received numerous accolades for his dedication to environmental conservation and sustainable agricultural practices. His research publications have been featured in reputable international journals, and he continues to be a leading voice in environmental chemistry, contributing to the advancement of knowledge and practical solutions in this critical field.

Research Focus

Dr. Timothy Amangdam Anemana’s research is centered on the intersection of environmental chemistry and sustainable agricultural practices. His primary focus is on the development of innovative solutions for soil and water remediation, particularly the reduction of arsenate and inorganic trivalent chromium mobility in soils. He is deeply involved in the production and application of biochar and activated charcoal from biowaste materials, aiming to enhance soil fertility and mitigate environmental pollution. Dr. Anemana’s current projects at the CSIR-Soil Research Institute in Ghana include the development of an alternative triple super phosphate fertilizer from oyster shells, which are abundant in Ghana. His research also extends to environmental risk assessments, soil nutrient mapping, and the application of modern analytical instrumentation to solve complex environmental challenges. Through his work, Dr. Anemana seeks to contribute to sustainable development and environmental conservation on both local and global scales.

Publication Top Notes

šŸ“„ Optimization of lignite particle size for stabilization of trivalent chromium in soils | T. Anemana, et al. | Soil and Sediment Contamination: An International Journal 29(3), 272-291, 2020

šŸ§Ŗ Granular activated charcoal from peanut shell as a new candidate for stabilization of arsenic in soil | T. Anemana, et al. | Microchemical Journal 149, 104030, 2019

šŸŒ Simultaneous Determination of Heavy Metals in Competitive Aqueous Solutions and Contaminated Soil Systems | T. Anemana, et al. | Kalahari Journals, 2022

šŸ§¬ Experimental and theoretical investigations of complex formation of substituted phenylazo-derivatives of methylphloroglucinol | A.T. Amangdam, et al. | Journal of Advances in Chemistry 4(1), 2013

šŸŒ± Iodide- and electrochemical assisted removal of mercury by Cirsium arvense from gold tailings in the Amansie West District, Ghana | T.A. Anemana, et al. | International Journal of Phytoremediation, 2024

 

Conclusion

Dr. Timothy Amangdam Anemana is a strong candidate for the Research for Best Researcher Award, given his extensive experience in environmental chemistry, his contributions to soil and water remediation, and his role in mentoring the next generation of scientists. To enhance his candidacy, he could focus on increasing the global impact of his research and expanding his leadership in large-scale projects. With these enhancements, Dr. Anemana’s already impressive profile would be further solidified as a leading researcher in his field.

Dr. Zamambo Mkhize | Transformation | Best Researcher Award

Dr. Zamambo Mkhize | Transformation | Best Researcher Award

Dr. Z. Mkhize’s research provides critical insights into the intersections of gender, race, and education, with a particular focus on the experiences of Black women in South African higher education and polygynous families

Profile

Scholar

Orcid

Education Qualifications šŸŽ“

Doctorate in Gender Studies
Lehigh University, Pennsylvania (2013-2014)
April 2016Certificate in Womenā€™s Studies
Fulbright Scholar (August 2013-May 2014)Master in Gender Studies
University of KwaZulu-Natal, Durban, KwaZulu-Natal (2009-2015)
2011Honors in Criminology
University of KwaZulu-Natal, Durban, KwaZulu-Natal
2009Bachelorā€™s Degree in Criminal Justice
Florida A&M University, Tallahassee, Florida (2003-2007)
Graduated Magna Cum LaudeMatric Certificate
Durban Girls College, Durban, KwaZulu-Natal (1990-2002)

Fellowships and Awards šŸ†

National Research Foundation (NRF) Thuthuka 3-year Grant (2022-2024)Research Development Grant
University of Cape Town (2022)Association of Commonwealth Universities (ACU) Early Career Academics Grant (2021)URC Building Research Active Academic Staff Grant (2020-2021)NRF Black Academic Advancement Grant (2018)
2-year sabbaticalResearch Development Grant
University of Cape Town (2018)Start-Up Grant
University of Cape Town (2018)Teaching and Learning Competitive Research Grant
University of KwaZulu-Natal (2017)Post-Doctoral Fellowship
Centre for Research on Critical Race & Identity, University of KwaZulu-Natal (2016-2017)Fulbright Scholarship
Pennsylvania, USA (2013-2014)Full Tennis Scholarship
Florida, USA (2003-2007)

Achievements šŸŒŸ

Represented South Africa in USSASA Games (2000)No 1 Tennis Player (1998-2002)
Durban Girls CollegeAwarded full athletic scholarship to Florida University (2003-2007)Nationally Ranked in the USA (2003-2007)Captain of Florida A&M Universityā€™s Womenā€™s Tennis Team (2004-2007)Chairperson of Student-Athletes at Florida A&M University (2006)All-American Tennis Team (2004-2007)Florida A&M University Honor Roll (2003-2007)Awarded Scholastic Award for highest athlete G.P.A (2006)All-American Academic Team (2003-2007)Member of Golden Key Honors SocietyGraduated with Bachelorā€™s Degree, Magna Cum Laude

Publications Top Notes šŸ“

  • Evaluation of Reaction Mechanism for Photocatalytic Degradation of Dye with Self-Sensitized TiO2 under Visible Light Irradiation
    • Journal: Open Journal of Inorganic Non-metallic Materials
    • Publication Date: 2017
    • Citations: 74

 

  • Natural Sunlight Driven Photocatalytic Removal of Toxic Textile Dyes in Water Using B-Doped ZnO/TiO2 Nanocomposites
    • Journal: Catalysts
    • Publication Date: 2022
    • Citations: 42

 

  • Mineralization of Diazinon with nanosizedāˆ’photocatalyst TiO2 in water under sunlight irradiation: optimization of degradation conditions and reaction pathway
    • Journal: Environmental Technology
    • Publication Date: 2020
    • Citations: 42

 

  • Synthesis of N-Doped ZnO Nanocomposites for Sunlight Photocatalytic Degradation of Textile Dye Pollutants
    • Journal: Journal of Composites Science
    • Publication Date: 2020
    • Citations: 41

 

  • Photocatalytic decolorization of dye with self-dye-sensitization under fluorescent light irradiation
    • Journal: ChemEngineering
    • Publication Date: 2017
    • Citations: 40

 

Md. Ashraful Islam Molla | Nanomaterials | Best Researcher Award

Prof Dr. Md. Ashraful Islam Molla | Nanomaterials | Best Researcher Award

Dr. Md. Ashraful Islam Molla is a distinguished Professor in the Department of Applied Chemistry and Chemical Engineering at the University of Dhaka, Bangladesh. With a prolific academic career spanning multiple prestigious institutions, including Ahsanullah University of Science and Technology and Mie University, Japan, he has garnered extensive expertise in nanomaterials and photocatalysis. His research focuses on developing advanced nanoparticles for environmental remediation, supported by grants from national and international bodies. Dr. Molla’s contributions are widely recognized, underscored by awards such as the Alexander von Humboldt Foundation Fellowship and the Japanese Government Scholarship. His commitment to innovative research continues to drive significant advancements in chemical engineering and environmental science.

Profile

Scholar

šŸ”¬Ā Research Interests

Novel photocatalyst synthesis using different techniques, Preparation and characterization of nanocomposites, Photocatalytic degradation of organic pollutants, Removal of organic pollutants from wastewater, Capacitive deionization (CDI) technology

šŸŽ“ Ā Academic Credentials

Doctor of Philosophy (PhD) in Engineering October 2014ā€“March 2018 Mie University, Japan Research topic: Development of Advanced Technology for Photocatalytic Degradation of Organic Pollutants in Wastewater. Master of Science (M. Sc.) in Applied Chemistry & Chemical Technology First class 2nd, University of Dhaka, Bangladesh, 2002 Research topic: Electrochemical Behavior of Pd 50at.% Ni Electrode and Its Hydrogen Evolution Reaction. Bachelor of Science (B. Sc.) in Applied Chemistry & Chemical Technology First class 1st, University of Dhaka, Bangladesh, 2001. Higher Secondary School Certificate (HSC), Science Group First Division, Rajshahi Board, Bangladesh, 1997. Secondary School Certificate (SSC), Science Group First Division, Rajshahi Board, Bangladesh, 1995

šŸ‘Øā€šŸ« Ā Professional Experiences

October 2023ā€“Present: Professor Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Bangladesh. June 2018ā€“October 2023: Associate Professor Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Bangladesh. December 2010ā€“June 2018: Assistant Professor Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Bangladesh. April 2008ā€“December 2010: Lecturer Department of Applied Chemistry and Chemical Engineering, University of Dhaka, Bangladesh. October 2006ā€“April 2008: Lecturer in Chemistry Department of Arts and Sciences, Ahsanullah University of Science and Technology, Dhaka, Bangladesh. 2008ā€“2013: Part Time Faculty (Chemistry) United International University, Dhaka, Bangladesh. 2018: Part Time Faculty (Mathematics and Physical Sciences) East West University, Dhaka, Bangladesh

Publications Top Notes šŸ“

  • Evaluation of Reaction Mechanism for Photocatalytic Degradation of Dye with Self-Sensitized TiO2 under Visible Light Irradiation
    • Journal: Open Journal of Inorganic Non-metallic Materials
    • Publication Date: 2017
    • Citations: 74

 

  • Natural Sunlight Driven Photocatalytic Removal of Toxic Textile Dyes in Water Using B-Doped ZnO/TiO2 Nanocomposites
    • Journal: Catalysts
    • Publication Date: 2022
    • Citations: 42

 

  • Mineralization of Diazinon with nanosizedāˆ’photocatalyst TiO2 in water under sunlight irradiation: optimization of degradation conditions and reaction pathway
    • Journal: Environmental Technology
    • Publication Date: 2020
    • Citations: 42

 

  • Synthesis of N-Doped ZnO Nanocomposites for Sunlight Photocatalytic Degradation of Textile Dye Pollutants
    • Journal: Journal of Composites Science
    • Publication Date: 2020
    • Citations: 41

 

  • Photocatalytic decolorization of dye with self-dye-sensitization under fluorescent light irradiation
    • Journal: ChemEngineering
    • Publication Date: 2017
    • Citations: 40

 

Sonia Siwatch | Nanomaterials | Women Researcher Award

Dr. ā€ŒSonia Siwatch |Nanomaterials| Women Researcher Award

Dr at Sonia Siwatch DST New Delhi, India

Dr. Sonia Siwatch is a skilled researcher in Material Science and Nanotechnology, holding a Ph.D. from Kurukshetra University, India. Her thesis focused on nanostructured metal oxide semiconductors for dye-sensitized solar cells. She earned her Master of Engineering in Electronics and Communication from NITTTR, Punjab University, and a Bachelor of Technology from Guru Jambheshwar University. Dr. Sonia Siwatch has attended numerous specialized workshops and courses and has received several honors, including the Women Scientist Scheme (WOS-A) award. Her research interests lie in nanomaterials synthesis, characterization, and clean energy technologies, aiming to advance sustainable solutions in these fields.

Profile

 

Academic Qualifications šŸŽ“

Ph.D. in Electronic Science Department of Electronic Science, Kurukshetra University, Haryana, India Awarded in 2021 Thesis Title: ā€œStudy of Nanostructured Metal Oxide Semiconductor as Photoanode for Dye Sensitized Solar Cellā€. Master of Engineering in Electronics and Communication Engineering NITTTR (National Institute of Technical Teachers Training and Research), Punjab University, Chandigarh, India Year of Completion: 2013 Percentage: 76.3%. Bachelor of Technology in Electronics and Communication Engineering Guru Jambeshwar University of Science and Technology, Hisar, Haryana, India Percentage: 81.39% All India Senior School Certificate Examination CBSE Board, K V Hisar Cantt, Hisar, Haryana, India Percentage: 76.4%. All India Secondary School Examination CBSE Board, K V Hisar Cantt, Hisar, Haryana, India Percentage: 75.4%

Workshops/Short Term Courses AttendedšŸ’¼

 

Materials and Processes for Advanced Engineering Applications School of Materials Science and Technology, National Institute of Technology, Kurukshetra Duration: 11-16, 2017Silicon PV Systems: Fundamentals, Design and Metrology (SPVW-2018)CSIR-National Physical Laboratory Duration: 10-14 September 2018Graphene Based Device Fabrication and Characterization Sponsored by MHRD and organised by UIET, Kurukshetra University Duration: 26th – 27th February, 2019Nanomaterials and Devices Applied Science Department, NITTTR Chandigarh Duration: 27/4/2020 to 1/5/2020Nanoelectronics Devices and Circuits Electronics and Communication Engineering Department, NITTTR Chandigarh Duration: 17/8/2020 to 21/8/2020Energy Storage Materials Applied Science Department, NITTTR Chandigarh Duration: 24/8/2020 to 28/8/2020Smart Materials and Nanotechnology Applied Science Department, NITTTR Chandigarh Duration: 31/8/2020 to 4/9/2020

Fellowship Awards and HonoursšŸ†

Selected as Women Scientist under Women Scientist Scheme (WOS-A), Department of Science and Technology, New Delhi.Received Honorable Mention award in Nanoartography Science Image competition 2019. (NanoArtography is an international science image competition sponsored by Materials Today, Nanotechnology World Association, A. J. Drexel Nanomaterials Institute, Drexel University Materials Science & Engineering Dept, IUPUI Integrated Nanosystems Development Institute).Finalist in Nanoartography Science Image competition 2020.Finalist in Nanoartography Science Image competition 2021.Topper in graduation: Received Rs. 5000/- scholarship in 1st and 5th semesters.

Areas of Interest

  • Material Science
  • Nanomaterials Synthesis and Characterization
  • Clean Energy

Publications Top Notes šŸ“

  1. Role of surfactant in optimization of 3D ZnO floret as photoanode for dye-sensitized solar cell:
    • Authors: Siwatch, S., Kundu, V., Kumar, A., Kumar, S.
    • Journal: Applied Nanoscience (Switzerland), 2020, 10(4), pp. 1035ā€“1044.
    • Summary: This study investigates the effect of surfactants on the morphology and performance of 3D ZnO florets used as photoanodes in DSSCs. The optimization of ZnO florets with surfactants aims to enhance light absorption and electron transport, leading to improved efficiency of the solar cells.
  2. Nitrogen and silver codoped one-dimensional ZnO nanostructure for optoelectronic application:
    • Authors: Kumari, M., Kundu, V.S., Kumar, S., Siwatch, S., Chauhan, N.
    • Journal: Journal of Sol-Gel Science and Technology, 2020, 93(2), pp. 302ā€“308.
    • Summary: The article explores the synthesis and characterization of nitrogen and silver codoped ZnO nanostructures. These doped nanostructures show enhanced optoelectronic properties, making them suitable for various applications, including sensors and solar cells.
  3. Effect of novel ZnO/Zn2SnO4 photoanode on the performance of dye-sensitized solar cell:
    • Authors: Siwatch, S., Kundu, V.S., Kumar, A., Chauhan, N., Kumari, M.
    • Journal: Optik, 2019, 194, 163117.
    • Summary: This paper evaluates the performance of a novel ZnO/Zn2SnO4 composite photoanode in DSSCs. The study demonstrates that the composite photoanode offers better charge separation and transport, resulting in enhanced efficiency of the solar cells.
  4. Morphology correlated efficiency of ZnO photoanode in dye-sensitized solar cell:
    • Authors: Siwatch, S., Kundu, V.S., Kumar, A., Chauhan, N., Kumari, M.
    • Journal: Materials Research Express, 2019, 6(10), 1050D3.
    • Summary: This research focuses on the correlation between the morphology of ZnO photoanodes and their efficiency in DSSCs. The findings suggest that specific morphologies of ZnO photoanodes can significantly improve the light-harvesting and electron transport properties, leading to higher cell efficiencies.
  5. Synthesis of nitrogen- and cobalt-doped rod-like mesoporous ZnO nanostructures to study their photocatalytic activity:
    • Authors: Chauhan, N., Singh, V., Kumar, S., Sirohi, K., Siwatch, S.
    • Journal: Journal of Sol-Gel Science and Technology, 2019, 91(3), pp. 567ā€“577.
    • Summary: This study synthesizes and characterizes nitrogen- and cobalt-doped mesoporous ZnO nanostructures. The doped nanostructures exhibit enhanced photocatalytic activity, which is beneficial for environmental applications such as water purification and pollutant degradation.
  6. Synthesis, characterization and dye-sensitized solar cell application of Zinc oxide based coaxial core-shell heterostructure:
    • Authors: Kumari, M., Singh Kundu, V., Kumar, S., Chauhan, N., Siwatch, S.
    • Journal: Materials Research Express, 2019, 6(8), 085050.
    • Summary: The article presents the synthesis and application of ZnO-based coaxial core-shell heterostructures in DSSCs. These structures enhance light absorption and electron transport, leading to improved performance of the solar cells
    • .
  7. Facile synthesis of novel ZnO/Cd0.5Zn0.5S photoanode for dye-sensitized solar cell:
    • Authors: Siwatch, S., Kundu, V.S., Kumar, A., Kumar, S., Kumari, M.
    • Journal: Materials Research Express, 2019, 6(8), 085029.
    • Summary: This study explores the synthesis of a novel ZnO/Cd0.5Zn0.5S composite photoanode for DSSCs. The composite material shows improved light-harvesting and charge transport properties, which contribute to higher efficiency in solar cell applications.

 

 

Emily Bonner | Environmental Chemistry | Best Researcher Award

Ms. Emily Bonner | Environmental Chemistry | Best Researcher Award

Ms, Oregon State University, United States

šŸ‘©ā€šŸ”¬Emily Bonner, MS, is a dedicated Toxicology PhD Candidate at Oregon State University with a keen focus on evaluating chemical exposures, particularly in firefighting contexts. Her research spans the use of innovative passive sampling techniques to assess firefighter and community exposures, alongside developing interventions to enhance personal protective equipment (PPE) effectiveness. With a solid foundation in analytical chemistry and statistics, Emily excels in data analysis and research translation, effectively communicating findings to diverse stakeholders. Her leadership roles in academic organizations and extensive outreach efforts underscore her commitment to advancing public health and safety.šŸŒŸ

Profile

Scopus

Orcid

Scholar

šŸ“šAcademic History

Oregon State University, Corvallis, OR 2019 ā€“ 2024 (anticipated)

  • Ph.D. in Toxicology, Statistics minor
  • Concurrent M.S., Toxicology (2021)
    Thesis: ā€œEvaluating Firefighter and Community Chemical Exposures Using Passive Samplingā€
    Advisor: Dr. Kim Anderson

Syracuse University, Syracuse, NY 2016 – 2019

  • BS, Biochemistry (with distinction), summa cum laude
  • Renee Crown University Honors Program
    Thesis: ā€œAn Exploration of Ruthenium Catalyzed Alder ene Reactionsā€
    Advisor: Dr. Nancy Totah

šŸ’¼Relevant Skills

Relevant Research Experience

  • NIEHS Ruth L. Kirschstein NRSA Pre-Doctoral Fellow, Oregon State University
  • NIEHS P42 Superfund Hazardous Substances Research Trainee, Oregon State University
  • Graduate Research Assistant, Oregon State University
  • Undergraduate Honors Researcher, Syracuse University

Oregon State University, Food Safety and Environmental Stewardship Lab

  • Doctoral Research
    • Skills: Organization of complex sampling campaigns, communication, data management, analytical chemistry techniques, community-engaged research.
    • Projects: Evaluating firefighter and community chemical exposures, characterizing exposure to polycyclic aromatic hydrocarbons in an industrial community.

Syracuse University, Totah Lab

  • Undergraduate Honors Research
    • Studied regioselectivity of the Ruthenium-catalyzed Alder ene reaction, culminating in an honors thesis.

Additional Lab/Software Skills

  • Cell culture, gel electrophoresis, PCR, protein modeling, etc.

šŸ†Grants/Awards

  • Multiple awards and grants for research excellence and dedication.

šŸŽ“ This academic history demonstrates a strong background in biochemistry and toxicology, complemented by extensive research experience and recognition for outstanding academic achievements.

Publications Top Notes šŸ“

  1. Title: Silicone passive sampling used to identify novel dermal chemical exposures of firefighters and assess PPE innovations
    • Authors: Bonner, E.M., Horn, G.P., Smith, D.L., Adams, K.T., Anderson, K.A.
    • Journal: International Journal of Hygiene and Environmental Health
    • Year: 2023
    • Volume: 248
    • Pages: 114095
    • Citations: 5

 

  1. Title: Firefighter exposures to potential endocrine disrupting chemicals measured by military-style silicone dog tags
    • Authors: Poutasse, C.M., Haddock, C.K., Poston, W.S.C., Hoffman, P.D., Anderson, K.A.
    • Journal: Environment International
    • Year: 2022
    • Volume: 158
    • Pages: 106914
    • Citations: 8

 

  1. Title: The chemistry and toxicology of vaping
    • Authors: Bonner, E., Chang, Y., Christie, E., Wilson, L.B., Tanguay, R.L.
    • Journal: Pharmacology and Therapeutics
    • Year: 2021
    • Volume: 225
    • Pages: 107837
    • Citations: 30