Paitoon Rashatasakhon | Fluorescent Dyes | Innovative Research Award

Innovative Research Award

Paitoon Rashatasakhon
Chulalongkorn University, Thailand

Paitoon Rashatasakhon
Affiliation Chulalongkorn University
Country Thailand
Scopus ID 6603258134
Documents 88
Citations 2,123
h-index 28
Subject Area Fluorescent Dyes
Event World Cell Biologist Awards
ORCID 0000-0002-7993-7968

Paitoon Rashatasakhon is a researcher affiliated with Chulalongkorn University, Thailand, whose scholarly profile includes research associated with fluorescent dyes and related areas of chemical and biological applications. The recognition presented here is associated with the Innovative Research Award under the World Cell Biologist Awards. Bibliographic indicators such as publication counts, citation counts and the h-index are commonly used to describe aspects of a researcher’s scholarly output and citation impact.  [1]

Abstract

Paitoon Rashatasakhon is affiliated with Chulalongkorn University in Thailand and is identified in the supplied research profile with a subject-area focus on fluorescent dyes. The profile records 88 documents, 2,123 citations and an h-index of 28. Fluorescent dyes constitute an important research domain because fluorescent molecules can provide sensitive optical signals for analytical chemistry, molecular recognition, imaging and biological investigation. [2] The Innovative Research Award recognizes research activity presented in the context of the World Cell Biologist Awards, with this profile emphasizing bibliographic output, citation impact and relevance to fluorescence-based research.

Keywords

Innovative Research Award; Paitoon Rashatasakhon; Chulalongkorn University; Fluorescent Dyes; Fluorescence Chemistry; Molecular Probes; Bioimaging; Research Impact

Introduction

Fluorescence-based methods occupy an important position across modern chemical and life-science research. Fluorescent dyes and probes can convert molecular interactions or environmental changes into measurable optical signals, supporting applications that range from chemical sensing to cellular and molecular imaging. [2] The development of fluorescent probes has also contributed to the investigation of biological processes where spatial and temporal information is important.

Research Profile

The supplied profile identifies Paitoon Rashatasakhon as a researcher at Chulalongkorn University, Thailand, with a research focus associated with fluorescent dyes. The stated Scopus record contains 88 documents, 2,123 citations and an h-index of 28. The corresponding Scopus author identifier is 6603258134. [1]

Research Contributions

Research involving fluorescent dyes may contribute to the development of molecules and analytical strategies capable of generating detectable optical responses. Depending on molecular design and application, fluorescent systems can be used to investigate chemical environments, molecular interactions and biological phenomena. [2] Fluorescent probes are also relevant to biological research because appropriately designed fluorophores can provide information about cellular structures, biochemical events and molecular targets. The field therefore intersects chemistry, analytical science, molecular biology and cell biology. [4]

Publications

The supplied profile reports 88 documents indexed in Scopus. [1] A complete publication bibliography should be retrieved directly from the researcher’s current institutional and bibliographic profiles because publication lists, citation counts and indexing records can change over time.

For scholarly evaluation, publications in fluorescent-dye research can encompass synthetic chemistry, photophysical characterization, sensing, molecular recognition, imaging and applications in biological systems. Fluorescent probes have been extensively studied for their ability to provide optical responses to specific chemical or biological conditions. [3]

Research Impact

The supplied bibliometric profile records 2,123 citations and an h-index of 28 across 88 documents. [1] These figures indicate measurable citation activity associated with the indexed publication record. Citation-based indicators are most appropriately considered alongside the quality, originality, relevance and reproducibility of the underlying research.[4]

Research on fluorescent systems may also support the development of probes with improved selectivity, sensitivity and photophysical characteristics. Such advances can be relevant to chemical sensing, molecular diagnostics and imaging-oriented research, depending on the intended application and validation of each system. [5]

Award Suitability

The Innovative Research Award profile is aligned with the supplied research information concerning Paitoon Rashatasakhon, particularly the stated subject area of fluorescent dyes and the documented bibliographic indicators. The relationship between fluorescent-dye chemistry and cell biology provides an interdisciplinary basis for considering research that contributes methods, probes or analytical approaches applicable to biological investigation.

Conclusion

Paitoon Rashatasakhon of Chulalongkorn University, Thailand, is presented in the supplied profile as a researcher working in the area of fluorescent dyes. The profile reports 88 documents, 2,123 citations and an h-index of 28. Fluorescent-dye research occupies an interdisciplinary position connecting chemical design, analytical measurement and biological investigation. [2]

References

  1. Elsevier. (n.d.). Scopus author details: Paitoon Rashatasakhon, Author ID 6603258134. Scopus.
    https://www.scopus.com/pages/authors/6603258134
  2. S Namuangruk, P Rashatasakhon., et al. (2020). Solvatochromic triazaborolopyridinium probes toward ultra-sensitive trace water detection in organic solvents.
    https://www.sciencedirect.com/science/article/pii/S0143720820304654
  3. M Sukwattanasinitt, P Rashatasakhon., et al. (2021). Fluorescent sensor for copper (II) and cyanide ions via the complexation–decomplexation mechanism with di (bissulfonamido) spirobifluorene.
    https://pmc.ncbi.nlm.nih.gov/articles/PMC8246698/
  4. P Rashatasakhon, T Kumchoo, V Promarak, et al. (2010). Dipyrenylcarbazole Derivatives for Blue Organic Light‐Emitting Diodes.
    https://www.academia.edu/download/45727478/asia.20100030420160517-24947-14faydz.pdf
  5. P Chinapang, V Ruangpornvisuti, M Sukwattanasinitt, P Rashatasakhon. (2015). Ferrocenyl derivative of 1, 8-naphthalimide as a new turn-on fluorescent sensor for Au (III) ion.
    https://www.sciencedirect.com/science/article/pii/S0143720814002903

Abdolraouf Samadi-Maybodi | Molecular Mechanisms Signaling | Best Researcher Award

Prof. Abdolraouf Samadi-Maybodi | Molecular Mechanisms Signaling | Best Researcher Award

Prof. Abdolraouf Samadi-Maybodi | University of Mazandaran | Iran

Dr. Abdolraouf Samadi-Maybodi is a distinguished Iranian chemist and professor at the University of Mazandaran, Babolsar, Iran. He has played a pivotal role in advancing the field of inorganic and analytical chemistry, particularly through his work in NMR spectroscopy, zeolite synthesis, and nanomaterials. Over a career spanning more than three decades, Dr. Samadi-Maybodi has held various academic positions including Assistant Professor, Associate Professor, and Professor. He has published over 107 research papers in peer-reviewed journals and actively collaborates with international scholars. A member of prestigious societies like the American Chemical Society (ACS), Royal Society of Chemistry (RSC), and Iranian Society of Chemistry, he is recognized for his interdisciplinary contributions that bridge classical chemistry with modern nanotechnology. His leadership roles include serving as Department Head and Research Manager, making him a strong candidate for a Best Researcher Award.

Publication Profile: 

Google Scholar

Education:

Dr. Samadi-Maybodi earned his Ph.D. in Chemistry from the University of Durham, U.K., where he conducted pioneering work on NMR studies of silicate and aluminosilicate solutions under the supervision of Prof. Robin K. Harris. His doctoral thesis, titled “NMR Studies of Silicate and Aluminosilicate Solutions as Precursors for Zeolites,” laid the foundation for much of his later work in zeolite synthesis and spectroscopy. He previously obtained his M.Sc. in Analytical Chemistry  from the University of Mazandaran, Iran, where he explored chemiluminescence of peroxyoxalates under the guidance of Prof. M.R. Hadjmohammadi. His B.Sc. in Chemistry was completed at Shahid Beheshti University, Tehran. This strong academic foundation in both theoretical and applied chemistry has allowed him to integrate classical analytical techniques with modern materials science in his subsequent research.

Experience:

Dr. Samadi-Maybodi has accumulated vast academic experience over nearly four decades. He began his career as a teaching assistant in analytical and instrumental analysis at the University of Mazandaran. He pursued his Ph.D. studies in the UK, followed by a faculty appointment upon his return. His roles at the university include Assistant Professor, Associate Professor, and full Professor from 2008 onwards. He has taught courses across all academic levels, including Advanced NMR Spectroscopy, Thermal Analysis, and Spectroscopic Techniques. His leadership experience includes being Head of the Chemistry Department and Research Manager. He also completed a sabbatical at the University of Western Ontario, Canada. His dedication to teaching, research, and university management demonstrates his holistic contribution to academic science in Iran and abroad.

Research Focus:

Dr. Samadi-Maybodi’s research is deeply rooted in physical and analytical chemistry, with a specialized focus on Nuclear Magnetic Resonance (NMR) spectroscopy for studying silicate and aluminosilicate systems. He is renowned for applying advanced spectroscopic techniques to investigate zeolite formation mechanisms, chemical structures, and solution dynamics. His interest in nanomaterials has led to significant contributions in quantum dots, fluorescence spectroscopy, and photocatalysis. More recently, his work has expanded into environmental chemistry, particularly in the development of novel nanostructured materials for water treatment and pesticide removal. His interdisciplinary approach bridges traditional analytical methods with cutting-edge materials science, resulting in applications across catalysis, environmental cleanup, and energy systems. With over 100 publications, Dr. Samadi-Maybodi continues to make impactful contributions to both fundamental science and applied technologies, maintaining active collaborations with leading researchers worldwide.

Publications Top Notes: 

  1. A new silicate clathrate hydrate: X-ray and NMR study with octameric silicate anions – JSSC

  2. Exchange reactions in aluminosilicate solutions – Chem. Comm.

  3. XRD and NMR study of silicate with nitrogenous cations – Dalton Trans.,

  4. Aluminum incorporation into silicates via 27Al NMR – Zeolites

  5. Discovery of a novel symmetric silicate anion – Dalton Trans.

  6. New oscillating chemiluminescence system with tetraalkylammonium hydroxide – ISBC

  7. Highly resolved 27Al NMR of aluminosilicates – Dalton Trans.

  8. 29Si NMR of methoxysilicic acid in silicate solutions – Mag. Res. Chem.

  9. 29Si DOSY NMR for aqueous silicate studies – Chem. Comm.

  10. Headspace analysis of male/female kiwifruit flowers – J. Essential Oil Res.

Conclusion:

Prof. Abdolraouf Samadi-Maybodi’s research legacy is a testament to decades of scientific dedication, innovation, and academic leadership. His deep-rooted expertise in NMR spectroscopy, silicate chemistry, nanomaterials, and environmental chemistry places him among the leading researchers in his field, especially in Iran and the broader Middle East. His sustained scholarly output, collaborative international engagements, and mentorship of numerous students make him a strong candidate for the Best Researcher Award. With a solid academic foundation, impactful research, and proven administrative skills, Prof. Samadi-Maybodi exemplifies the qualities of a well-rounded and deserving researcher. Recognizing him with this award would not only honor his past contributions but also motivate continued excellence and inspire others in the scientific community.