Zakyeh Akrami | Analytical Chemistry | Best Researcher Award

Dr. Zakyeh Akrami | Analytical Chemistry | Best Researcher Award

Dr. Zakyeh Akrami, Farhangian University, Iran.

Zakyeh Akrami is a distinguished Assistant Professor at Farhangian University with a rich academic background in applied chemistry, electroanalytical chemistry, and nanotechnology. Her research focuses on the development of innovative electrochemical sensors using nanocomposites like ZnS/MIL-125, which significantly enhance sensor performance. She has made notable contributions to the fields of analytical chemistry, chemistry education, and nanotechnology, producing 18 SCI-indexed publications and an impressive h-index of 9. Throughout her career, she has earned recognition for her work on cost-effective and highly sensitive sensor technologies, which have applications in healthcare, environmental monitoring, and industry. Her legacy extends through her mentorship of students and ongoing contributions to scientific research and education.

 

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Early academic pursuits 📚

Zakyeh Akrami’s academic journey began with her undergraduate studies at the University of Kashan, where she earned her BSc in Applied Chemistry in 2002. Driven by a passion for chemistry, she continued her studies at the University of Yazd, completing her MSc in 2004 with excellent distinction under the guidance of Professor M.M. Ardakani. Her interest in the intricate world of chemical processes and their applications laid a strong foundation for her subsequent research career. She then pursued a PhD in Electroanalytical Chemistry at the University of Yazd, working under Professor R.K. Shervedani on the functionalization of self-assembled monolayers (SAMs) for the development of innovative electrochemical sensors.

Professional endeavors 👩‍🔬

Zakyeh Akrami is currently an Assistant Professor at Farhangian University, where she imparts her deep knowledge of analytical chemistry and its applications in sensor technology. She has built a reputation for her expertise in electrochemical systems and nanotechnology, particularly focusing on developing highly efficient sensors for detecting both inorganic and biological species. As a passionate educator, she integrates her research findings into her teaching, enriching the learning experience for her students. Beyond academia, Dr. Akrami has also contributed to consultancy projects, helping industries harness the power of electrochemical sensors for practical applications.

Contributions and research focus 🔬

Dr. Akrami’s research primarily revolves around analytical chemistry, with a focus on creating innovative electrochemical sensors. One of her notable contributions includes the development of a cost-effective and highly sensitive electrochemical sensor using a ZnS/MIL-125 nanocomposite. This research explores the synergistic effects of combining metal-organic frameworks (MOFs) with nanomaterials to enhance sensor performance, including increased sensitivity, faster response times, and improved durability. Her work also extends to exploring the potential of nanotechnology in supercapacitors, corrosion prevention, and fuel cell development, showcasing her commitment to advancing sustainable and efficient technologies in the field of chemistry.

Accolades and recognition 🏅

Throughout her career, Zakyeh Akrami has garnered significant recognition for her groundbreaking work in electroanalytical chemistry. With an impressive h-index of 9, Dr. Akrami has published 18 papers in prestigious SCI-indexed journals, solidifying her position as a leading researcher in her field. Her work on electrochemical sensors has attracted considerable attention for its innovative approach and practical applications, earning her the respect of both her peers and industry professionals. As a recognized expert, she has also served on editorial boards for scientific journals, further amplifying her influence in the academic community.

Impact and influence 🌍

Dr. Akrami’s contributions to the field of analytical chemistry have made a significant impact on both academic research and industrial applications. Her development of nanocomposite-based sensors has opened new avenues for more sensitive, cost-effective, and durable detection methods, benefiting environmental monitoring, healthcare, and industrial sectors. Moreover, her educational influence extends beyond the classroom, as she mentors the next generation of chemists and engineers, fostering a passion for research and scientific inquiry. Her work continues to inspire students and colleagues alike, reinforcing the importance of innovation and sustainability in chemistry.

Legacy and future contributions 🔮

As Zakyeh Akrami looks toward the future, her passion for research and development in electrochemical systems remains as strong as ever. Her legacy in the academic community is defined by her unwavering commitment to innovation, as well as her desire to make a tangible difference through the practical application of her research. Moving forward, Dr. Akrami aims to explore the potential of new nanomaterials and their integration into sensor technologies, with an eye toward further advancements in renewable energy and environmental sustainability. Her future contributions promise to shape the future of analytical chemistry and inspire breakthroughs in multiple industries.

📚 Publications

  • Electrocatalytic characteristics of uric acid oxidation at graphite–zeolite-modified electrode doped with iron (III)
    Authors: MM Ardakani, Z Akrami, H Kazemian, HR Zare
    Year: 2006

 

  • Nanostructure Molecular Assemblies Constructed Based on Ex-Situ and In-Situ Layer-by-Layer Ferrioxamation Characterized by Electrochemical and Scanning
    Authors: R Karimi Shervedani, Z Akrami, H Sabzyan
    Year: 2011

 

  • Gold–deferrioxamine nanometric interface for selective recognition of Fe (III) using square wave voltammetry and electrochemical impedance spectroscopy methods
    Authors: RK Shervedani, Z Akrami
    Year: 2013

 

  • Preconcentration and electroanalysis of copper at zeolite modified carbon paste electrode
    Authors: M Mazloum-Ardakani, Z Akrami, H Kazemian, HR Zare
    Year: 2009

 

  • A simple route to surface functionalization of graphene nanosheets by benzoic acid and its application toward Pb (ii) sensing
    Authors: S Rooyanian, M Bagherzadeh, Z Akrami, AN Golikand
    Year: 2018

 

  • The effectiveness of education with the STEM approach in the development of entrepreneurial thinking in chemistry students
    Author: Z Akrami
    Year: 2022

 

  • Accumulation and voltammetric determination of cobalt at zeolite-modified electrodes
    Authors: MM Ardakani, Z Akrami, H Kazemian, HR Zare
    Year: 2008

 

  • One-step synthesis of reduced graphene oxide and magnetic graphene: characterization and its application in electrochemical detection of lead (II) ions
    Authors: M Bagherzadeh, M Jabouri-Abassi, Z Akrami
    Year: 2019

 

  • Sulfate-selective electrode based on a complex of copper
    Authors: MM Ardakani, Z Akrami, M Mansournia, HR Zare
    Year: 2006

 

  • Electrochemical detection of Cr (III) and Cr (VI) in solution by using ZrO2 modified magnetic nanoparticles by redox probes
    Authors: M Bagherzadeh, Z Hadizadeh, Z Akrami, ZS Ghahfarokhi
    Year: 2021

 

Conclusion

Zakyeh Akrami’s career reflects a remarkable commitment to advancing scientific knowledge and practical applications in electrochemical sensing and nanotechnology. Her innovative research continues to make a significant impact on both academia and industry, and her educational efforts shape the future of the chemistry field. With her strong track record of publications, collaborations, and recognition, Dr. Akrami is poised to make even greater contributions in the years to come, driving advancements that will benefit various industries and inspire future generations of researchers.

 

SHAOQUAN WANG | Road Engineering | Best Researcher Award

Dr.SHAOQUAN WANG | Road Engineering | Best Researcher Award

Dr. SHAOQUAN WANG Southeast University China.

Dr. Shaoquan Wang, a PhD graduate in Engineering from Southeast University, has dedicated over 12 years to advanced studies in road engineering, combining expertise in materials science and chemical engineering. His research focuses on innovative solutions for road surface repair, particularly the development of a two-way shape memory pavement crack repair material. This technology addresses critical challenges in the field, such as the coordination of repair materials with pavement cracks and enhancing durability under varying environmental conditions.

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Academic and Professional Background 📚

Dr. Shaoquan Wang holds a PhD in Engineering from Southeast University. Over 12 years of study, he has pursued an in-depth and systematic approach to road engineering. His cross-disciplinary focus has expanded into materials and the chemical industry, keeping him well-versed in cutting-edge developments and trends, with potential for new research directions.

Research and Innovations 🔍

Completed/Ongoing Research Projects:National Natural Science Foundation of China (51878168) (Completed).Scientific Research Foundation of Graduate School of Southeast University (YBPY2159) (Completed).

Contributions 🌟

Dr. Wang is pioneering a two-way shape memory pavement crack repair material that intelligently senses temperature changes. This innovation addresses deformation coordination between repair materials and pavement cracks, enhancing durability during asphalt pavement expansion and contraction. His work offers a novel solution to longstanding issues in pavement crack repair.

📚 Publications

  • Title: A new pavement crack repair sealant with two-way shape memory effect
    Author: Shaoquan Wang et al.
    Year: 2024

 

  • Title: Effects of Periodically Changing Temperatures on the Bond Interface between Crack Sealant and Repaired Pavement
    Author: Shaoquan Wang et al.
    Year: 2024

 

  • Title: Development of a modified bond test for hot applied crack sealants by using hot-cold cycles
    Author: Shaoquan Wang et al.
    Year: 2023

 

  • Title: Dynamic behavior of crack sealant bonding interface in the asphalt pavement crack repair structure under moving vehicle load
    Author: Shaoquan Wang et al.
    Year: 2023

 

  • Title: Stiffening effect of filler on asphalt mastic composite: A new insight based on nearest surface function
    Author: Yanshun Jia et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Utilization of iron ore tailing as an alternative mineral filler in asphalt mastic: High-temperature performance and environmental aspects
    Author: Ziyao Wei et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Laboratory performance of asphalt mixture with waste tyre rubber and APAO modified asphalt binder
    Author: Kezhen Yan et al. (including Shaoquan Wang)
    Year: 2022

 

  • Title: Evaluation of the Rutting Performance of the Field Specimen Using the Hamburg Wheel‐Tracking Test and Dynamic Modulus Test
    Author: Xiongwei Dai et al. (including Shaoquan Wang)
    Year: 2020

Conclusion

Dr. Shaoquan Wang’s pioneering research in intelligent pavement materials represents a substantial advancement in road engineering. His interdisciplinary approach not only tackles long-standing issues in pavement crack repair but also opens new avenues for further exploration in material science. Given his impactful contributions, extensive experience, and innovative research, Dr. Wang is highly deserving of the Best Researcher Award. His work promises to enhance infrastructure sustainability and performance, making him a valuable asset to both academia and industry.